Your browser doesn't support javascript.
loading
Show: 20 | 50 | 100
Results 1 - 20 de 34
Filter
1.
Biota Neotrop. (Online, Ed. ingl.) ; 22(2): e20211323, Mar 31, 2022. tab, graf
Article in English | LILACS-Express | LILACS | ID: biblio-1383929

ABSTRACT

Abstract: Achatina fulica is among the world's 100 most impactive invasive species, and is now found in almost all Brazilian states, including Sergipe. This exotic snail is known to have negative impacts, not only on the environment, due primarily to the rapid growth of its populations, but also on public health, given that it is an intermediate host of nematodes that cause zoonotic diseases. However, relatively little is known of the development of this snail, including its relative condition factor. We investigated the occurrence of A. fulica in 24 municipalities distributed in the eight subregions of the state of Sergipe in the dry and rainy season. Furthermore, we present here a predictive model for the occurrence of A. fulica based on the variation in climate and soil chemistry. This snail was more frequent on soils with a pH of 6.5-7.5. A negative correlation was found between the growth of A. fulica and the soil pH, then, the more acidic the soil, the more allometric the growth of A. fulica. The relative condition factor indicated differences in the development pattern of A. fulica among the eight subregions. The influence of rain in increasing the frequency of A. fulica showed a significant correlation. As well, higher temperatures influenced the resting behavior of A. fulica. The mathematical model used to identify the potential presence of A. fulica presented a high degree of agreement. This is the first ecological study of A. fulica to verify the association between the body mass-length relationship and the relative condition factor, and the results indicate that the development of this exotic land snail in Sergipe is influenced by climatic factors and principally, the soil pH. The predictive mathematical model provides valuable insights into the biotic and abiotic factors associated with the presence of A. fulica, and the influence of climatic variables and the chemical parameters of the soil on the occurrence of this species. These findings provide important guidelines for the development of measures for the control of A. fulica populations, which will contribute to both public and environment health.


Resumo: Achatina fulica está entre as 100 das piores espécies invasoras em todo o mundo, e no Brasil está presente em quase todos os estados, incluindo Sergipe. Este caracol exótico é conhecido por ter impactos negativos, não só no meio ambiente, devido principalmente ao rápido crescimento de suas populações, mas também na saúde pública, uma vez que é um hospedeiro intermediário de nematodeos causadores de doenças zoonóticas. No entanto, pouco se sabe a respeito do desenvolvimento dessa espécie, incluindo o fator de condição relativo. Investigamos a ocorrência de A. fulica em 24 municípios distribuídos nos oito territórios do estado de Sergipe no período seco e chuvoso. Além disso, apresentamos aqui um modelo preditivo para a ocorrência de A. fulica baseado na variação do clima e da química do solo. Esse caracol é mais frequente no solo com pH de 6,5 à 7,5, sendo esse padrão ideal para o crescimento isométrico. O crescimento alométrico de A. fulica apresentou correlação negativa com o pH do solo, quanto mais ácido for o solo, maior será o crescimento de A. fulica. O fator de condição de A. fulica, apresentou diferença no desenvolvimento nos oito Territórios. A influência da chuva na frequência de A. fulica apresentou correlação significativa. Além disso, temperaturas mais elevadas influenciaram no comportamento de repouso de A. fulica. O modelo matemático para identificar a possível presença de A. fulica apresentou uma concordância forte. Este é o primeiro estudo ecológico de A. fulica a verificar a associação entre a relação massa-comprimento e o fator de condição relativo, sendo possível evidenciar que essa espécie exótica em Sergipe sofre alterações no desenvolvimento, por fatores climáticos e principalmente pelo pH do solo. O modelo matemático preditivo fornece informações valiosas sobre os fatores bióticos e abióticos associados à presença de A. fulica e a influência de variáveis climáticas e dos parâmetros químicos do solo na ocorrência desta espécie. Esses achados fornecem importantes diretrizes para o desenvolvimento de medidas de controle de populações de A. fulica, que poderão contribuir para a saúde pública e ambiental.

2.
Bol. malariol. salud ambient ; 62(3): 591-598, 2022. ilus, tab
Article in Spanish | LILACS, LIVECS | ID: biblio-1398794

ABSTRACT

Introducción: Angiostrongylus cantonensis es reconocido como uno de los principales patógenos causantes de la meningoencefalitis eosinofílica, fue identificado en Ecuador por primera vez en 2008. Métodos: se recolectaron 1476 ejemplares de Achatina fulica con el método de captura por unidad de esfuerzo durante 30 minutos, en 3 cantones de la provincia del Napo, con el fin de establecer la prevalencia de infección por A. cantonensis Resultados: el porcentaje total de caracoles infectados fue de 46,5% (687/1476). Conclusiones: Los resultados revelan una amplia distribución de A. fulica infectado con A. cantonensis, lo que, sumado a la gran cantidad de hospederos definitivos presentes, indica que un número considerable de personas tiene riesgo de adquirir angiostrongiliasis. Se necesita intervenciones educativas comunitaria orientadas a formación sanitaria, recalcando el riesgo de adquirir la infección parasitaria, principalmente por el consumo de A. fulica, crudos y/o con cocción inadecuada, principal forma de contagio. Además, se recomienda vigilancia rigurosa y control de los hospedadores involucrados, saneamiento ambiental, haciendo insistencia en factores relacionados con los hábitos biológico del caracol gigante africano, entre ello alimentos (vegetales), suelos y derivados del caracol de uso artesanal; para prevenir la aparición de casos esporádicos y de brotes de la enfermedad(AU)


Introduction: Angiostrongylus cantonensis is recognized as one of the main pathogens that cause eosinophilic meningoencephalitis, it was identified in Ecuador for the first time in 2008. Methods: 1476 specimens of Achatina fulica were collected using the capture method per unit of effort for 30 minutes, in 3 cantons of the Napo province, in order to establish the prevalence of infection by A. cantonensis Results: the total percentage of infected snails was 46.5% (687/1476). Conclusions: The results reveal a wide distribution of A. fulica infected with A. cantonensis, which, added to the large number of definitive hosts present, indicates that a considerable number of people are at risk of acquiring angiostrongyliasis. Community educational interventions aimed at health training are needed, emphasizing the risk of acquiring parasitic infection, mainly due to the consumption of A. fulica, raw and/or inadequately cooked, the main form of contagion. In addition, rigorous surveillance and control of the hosts involved, environmental sanitation, insisting on factors related to the biological habits of the giant African snail, including food (vegetables), soil and snail derivatives for artisanal use; to prevent the appearance of sporadic cases and outbreaks of the disease(AU)


Subject(s)
Snails , Angiostrongylus cantonensis , Meningoencephalitis , Parasitic Diseases , Sanitation , Disease Outbreaks
3.
Braz. j. biol ; 80(2): 245-254, Apr.-June 2020. tab, graf
Article in English | LILACS | ID: biblio-1132370

ABSTRACT

Abstract The objective of this study was to identify the occurrence of Achatina fulica in the Great Aracaju-SE Territory. This research was developed during the months of June 2016 to May 2017. The plots methodology was used for the monthly collections, following the collection time of 20 minutes per area. The mollusks were measured and soon afterwards the parasitological analysis of the mucus and faeces was performed. Molecular identification was performed to evaluate the possible presence of Angiostrongylus sp. We observed that the occurrence of A. fulica was more representative in urban areas, especially in vacant lots with the presence of litter and decomposing materials. In the specimens of A. fulica examined were male and female nematodes of the genus Rhabditis, in the research municipalities, except in Barra dos Coqueiros. No parasites of the genus Angiostrongylus were found in the mollusks examined. The influence of the presence of litter on the plots associated with the frequency of A. fulica was statistically significant. There was a correlation between the influence of rainfall and the frequency of A. fulica. A significant relationship between moisture and frequency and nematode positivity was identified. It was also observed that the larger the mollusk, the greater the chances of being infected by nematodes. Scientific knowledge about the biology of the A. fulica species associated with human intervention such as the maintenance of land and adequate sanitary measures may be important factors for a better control of this invasive mollusk.


Resumo O objetivo deste estudo foi verificar a ocorrência de A. fulica no território da Grande Aracaju, Sergipe, avaliando a infecção destes moluscos por nematódeos, a influência das condições climáticas e das características do ambiente. Esta pesquisa foi desenvolvida durante os meses de junho de 2016 a maio de 2017. Foi utilizada a metodologia de parcelas para as coletas mensais de 20 min por área, um total de 15 parcelas distribuídas em 5 municípios. Os moluscos foram mensurados e logo em seguida realizada a análise parasitológica do muco e fezes. Foi realizada a identificação molecular para avaliar a possível presença de Angiostrongylus sp. Observamos que a ocorrência de A. fulica foi mais representativa em áreas urbanas, sobretudo em terrenos baldios com a presença de lixo e materiais em decomposição. Nos exemplares de A. fulica examinados foram encontrados nematódeos do gênero Rhabditis, nos municípios da pesquisa, exceto em Barra dos Coqueiros. Não foram encontrados parasitos do gênero Angiostrongylus nos moluscos examinados. A influência da presença de lixo nas parcelas associado à frequência da A. fulica mostrou-se estatisticamente significativa. Houve correlação entre a influência da chuva e a frequência de A. fulica. Foi identificada uma relação significativa entre a umidade e a frequência e a positividade para nematódeos. Foi também observado que quanto maior o molusco, maiores são as chances deste apresentar nematódeos. O conhecimento científico a respeito da biologia da espécie A. fulica associado à intervenção humana como, a manutenção de terrenos e medidas sanitárias adequadas podem ser fatores importantes para um controle malacológico mais adequado para esta espécie invasora.


Subject(s)
Humans , Animals , Male , Female , Gastropoda , Angiostrongylus , Snails , Brazil , Feces , Mollusca
4.
Rev. cuba. med. trop ; 72(1): e475, ene.-abr. 2020. tab, graf
Article in Spanish | LILACS, CUMED | ID: biblio-1126701

ABSTRACT

Introducción: El parásito Angiostrongylus cantonensis es el principal causante de meningitis eosinofílica. En el 2008 se reportó el primer caso en Ecuador y un estudio reciente en la Ciudad de Chone, Manabí, Ecuador determinó una alta prevalencia del parásito en el caracol africano (Achatina fulica). Objetivo: Identificar los factores de riesgo asociados a la meningitis eosinofílica causada por A. cantonensis en la ciudad de Chone. Métodos: Se entrevistaron a 500 personas residentes en la ciudad de Chone y se revisaron las historias clínicas del Hospital General de Chone. Resultados: Se observó que la población de Chone, está expuesta a los siguientes factores de riesgos: consumo de caracoles crudos (7,40 por ciento), el frecuente contacto de las personas con el caracol africano en la casa (67 por ciento), como en el trabajo (51,20 por ciento), el contacto que tienen los niños con caracoles, al jugar en el jardín (76,80 por ciento) y la incorrecta limpieza de los alimentos (54,40 por ciento). En el entorno de la población, se evidenció la presencia del caracol africano cerca de las casas en el 35,20 por ciento y las ratas, en el 50,80 por ciento. Además, el 34 por ciento de la muestra de estudio presentó sintomatología relacionada con meningitis eosinofílica. Se encontró que existía asociación entre la presencia de vectores cerca de las casas y la cantidad de síntomas manifestados por las personas. Conclusiones: Se evidenció que la población de Chone, manifiesta hábitos que exponen a la gente de esta localidad a un alto riesgo de contagio de meningitis eosinofílica(AU)


Introduction: The parasite Angiostrongylus cantonensis is the main causative agent of eosinophilic meningitis. The first case in Ecuador was reported in 2008, and a recent study conducted in the city of Chone, Manabí, Ecuador, determined a high prevalence of the parasite in the African snail (Achatina fulica). Objective: Identify the risk factors associated to eosinophilic meningitis caused by A. cantonensis in the city of Chone. Methods: Interviews were conducted with 500 residents from the city of Chone and a review was carried out of the medical records at Chone General Hospital. Results: It was found that the population of Chone is exposed to the following risk factors: eating raw snails (7.40 percent), frequent contact between people and African snails both at home (67 percent) and at work (51.20 percent), contact between children and snails while playing in gardens (76.80 percent) and washing food items incorrectly (54.40 percent). In the areas surrounding people's households the African snail was found in 35.20 percent and rats in 50.80 percent . Additionally, 34 percent of the study sample had symptoms of eosinophilic meningitis. An association was found between the presence of vectors near the houses and the number of symptoms occurring in people. Conclusions: It was evident that the population of Chone has habits which expose them to a high risk for eosinophilic meningitis(AU)


Subject(s)
Humans , Male , Female , Snails , Strongylida Infections/complications , Eosinophilia/chemically induced , Meninges/physiopathology , Ecuador
5.
Arq. bras. med. vet. zootec. (Online) ; 72(1): 273-276, Jan.-Feb. 2020. tab
Article in English | LILACS, VETINDEX | ID: biblio-1088934

ABSTRACT

Angiostrongylus cantonensis e Angiostrongylus costaricensis são nematoides parasitas que residem em roedores e usam gastrópodes como hospedeiros intermediários. Achatina fulica, conhecida como caramujo-gigante-africano, é um hospedeiro intermediário que desempenha importante papel na dispersão de A. cantonensis e A. costaricensis, patógenos zoonóticos que causam, respectivamente, meningoencefalite eosinofílica e angiostrongilíase abdominal em humanos. O objetivo deste estudo foi o de coletar caramujos (A. fulica, n=90) de oito regiões diferentes (Rudge Ramos, Baeta Neves, Planalto, Demarchi, Dos Alvarengas, Batistini, Montanhão, Rio Grande) da cidade de São Bernardo do Campo (SP) para detecção molecular de A. cantonensis ou A. costaricensis pela técnica de reação em cadeia da polimerase (PCR). As amostras foram processadas em pools (n=25) segundo a região de coleta. Com exceção da região de Baeta Neves, as demais apresentaram caramujos infectados com larvas de nematoides. Seis regiões apresentaram amostras positivas para A. cantonensis. Quatorze (56%) das 25 amostras em pool apresentaram larvas de nematoides, e 52% delas (13/25) foram positivas para A. cantonensis. Nenhuma amostra positiva para A. costaricensis foi encontrada. A presença de A. fulica naturalmente infectada por A. cantonensis deve servir como um alerta para as autoridades de saúde pública sobre o risco potencial de infecção para humanos.(AU)


Subject(s)
Animals , Snails/parasitology , Strongylida Infections/epidemiology , Angiostrongylus cantonensis , Brazil
6.
Biota Neotrop. (Online, Ed. ingl.) ; 20(3): e20201060, 2020. tab, graf
Article in English | LILACS-Express | LILACS | ID: biblio-1131925

ABSTRACT

Abstract Invasive species are one of the main causes of biodiversity loss and the knowledge of their distribution is essential for conservation efforts. The present study inventoried the land and freshwater invasive molluscs of 25 villages of Ilha Grande (Rio de Janeiro, Brazil), an island with Atlantic Rainforest remnants. Three invasive species are found: Melanoides tuberculata (Müller, 1774), Physa acuta Draparnaud, 1805, both on two localities; and Achatina fulica Bowdich, 1822, on 16 localities. Most records were done on the island continental side, in anthropic areas, probably due to ease of access. One record was inside a conservation area, that calls concern about the spread of those species on the island and possible effects.


Resumo As espécies invasoras são uma das maiores causas de perda de biodiversidade e o conhecimento acerca da sua distribuição é essencial para os esforços de conservação. O presente estudo inventariou os moluscos continentais invasores em 25 vilas da Ilha Grande (Rio de Janeiro, Brasil), uma ilha com remanescentes de Mata Atlântica. Três espécies invasoras foram encontradas: Melanoides tuberculata (Müller, 1774), Physa acuta Draparnaud, 1805, ambas em duas localidades; e Achatina fulica Bowdich, 1822, em 16 localidades. A maior parte dos registros foi no lado continental da ilha, provavelmente devido a facilidade de acesso. Um dos registros foi dentro de uma área de conservação, o que chama a atenção para a dispersão destas espécies na ilha, e seus possíveis efeitos.

7.
Braz. arch. biol. technol ; 63: e20180501, 2020. graf
Article in English | LILACS | ID: biblio-1132211

ABSTRACT

Abstract Mesenchymal stem cells and osteoblasts play important roles in bone formation. Achatina fulica mucus presented the property of osteoinduction. This study aimed to examine the effects of A. fulica mucus on human mesenchymal stem cell (hMSC) and human fetal osteoblastic cell line (HFOB) differentiation. The integrated effects of A. fulica mucus and polycaprolactone (PCL) on the differentiation of hMSCs were tested. The cell viability of hMSCs treated with A. fulica mucus was investigated by the MTT assay. The cell mineralization was observed by Alizarin Red S staining, the gene expression was investigated using RT-PCR, and the PI3K activation was studied using flow cytometry. The results indicated that A. fulica mucus induced osteogenic differentiation in hMSCs and HFOBs by upregulation of the osteogenic markers; osteopontin (OPN) and osteocalcin (OCN). The results of the Alizarin Red S staining indicated that A. fulica mucus supported mineralization in both hMSCs and HFOBs. The hMSCs cultured on PCL supplemented with A. fulica mucus showed significantly increased RUNX2 and OPN expressions. A. fulica mucus was observed to increase PI3K activation in hMSCs. The findings of this study suggested that A. fulica mucus and biomaterials could be applied together for use in bone regeneration in the future.


Subject(s)
Humans , Animals , Osteogenesis/physiology , Bone Regeneration , Mesenchymal Stem Cells/cytology , Mollusca/chemistry , Mucus/chemistry , Toxicity Tests , Reverse Transcriptase Polymerase Chain Reaction , Flow Cytometry
8.
Rev. bras. parasitol. vet ; 29(2): e000420, 2020. tab, graf
Article in English | LILACS | ID: biblio-1138065

ABSTRACT

Abstract Angiostrongylus vasorum is a pulmonary artery parasite of domestic and wild canid. On molluscs, intermediate host, first stage larvae (L1) are found after the first day of infection, in the 8th L2 and in the 30 th L3. It was evaluated L1, L2 and L3 recovered by Baermann technique from Achatina fulica infected with 1000 L1. Fifty larvae/stage were incubated with antibodies anti-β-tubulin, anti-α-tubulin, anti- α-actin, anti-β-actin and anti-collagen, and then with Alexa 633. Fifty larvae/stage were observed with picrosirius red and Oil Red O. It was also observed in the anterior region of L1 the beginning of the chitinous stems development, in the initial portion of the intestine and genital primordium. In L2 anterior region, the papillae, chitinous canes juxtaposed to the mouth and intestines bigger than L1. The L3 musculature is well defined, next to the chitinous stems, there are two round distally arranged from each other. It was observed the whole extension of the intestine genital primordium and intense cellularity in the L3 distal portion. With the picrosirius red the L1, L2 and L3 musculature could be observed, as the nerve ganglia on L3. Oil Red O revealed that L1, L2 and L3 store energy on lipid droplets.


Resumo Angiostrongylus vasorum é um parasito de artérias pulmonares dos canídeos domésticos e silvestres. Nos moluscos, hospedeiros intermediários, encontram-se no primeiro dia após a infecção, larvas de primeiro estágio (L1), ao 8° L2 e ao 30° L3. Avaliou-se L1, L2 e L3 recuperadas pela técnica de Baermann de Achatina fulica infectada com 1.000 L1. Incubou-se 50 larvas/estádio com anticorpos anti-β-tubulina, anti-α-tubulina, anti-β-actina e anti-colágeno e, em seguida, com anticorpo Alexa 633. Observaram-se também 50 larvas/estádio com picrosirius red e Oil Red O, na região anterior da L1, o início do desenvolvimento de hastes quitinosas, a porção inicial do intestino e o primórdio genital. Na região anterior de L2, papilas, bastões quitinosos justapostos à boca e ao intestino maior que em L1. A musculatura de L3 é bem desenvolvida, próximo às hastes quitinosas, há duas estruturas redondas dispostas distalmente uma da outra. Observaram-se também toda a extensão do intestino, o primórdio genital e a intensa celularidade na porção distal da L3. Com o picrosirius red observou-se a musculatura de L1, L2 e L3, assim como, gânglios nervosos na L3. Oil Red O revelou que L1, L2 e L3 armazenam energia em gotículas lipídicas.


Subject(s)
Animals , Parasitology/methods , Gastropoda/parasitology , Angiostrongylus/anatomy & histology , Larva/anatomy & histology
9.
Rev. cuba. invest. bioméd ; 38(4): e312, oct.-dic. 2019. graf
Article in English | LILACS, CUMED | ID: biblio-1093416

ABSTRACT

ABSTRACT Achatina (Lissachatina) fulica was introduced in Cuba in 2014 for african religious purposes and nowadays, mainly by human activity, it is widespread all over the country and, where besides a general nuisance for people it is a pest and also a public health concern, since it is one of the natural intermediate host of Angiostrongylus cantonensis, ethiological agent of the meningoencephalitis. As in Havana is experiencing the explosive phase of the invasion, LABCEL has been receiving samples of these molluscs for identification and search for Angiostrongylus cantonensis larvae. While examining samples of A. fulica different larvae were obtained, as strongylides found in the interior of the pallial cavity of A. fulica.This is the first report in San Miguel del Padron and Regla municipalities of the development of larvae in A. Fulica evidencing the health importance of this mollusc in the potential transmission of eosinophilic meningoencephalitis. Since the spread of A. fulica is pointed out in the literature as one of the main causative spread of the meningoencephalitis caused by A. cantonensis the authors emphasize the need of sanitary vigilance of snails and rats from vulnerable areas for A. cantonensis introduction as the port side areas like these municipalities.


RESUMEN Achatina (Lissachatina) fulica se introdujo en Cuba en 2014 con fines religiosos africanos y hoy en día, principalmente por actividad humana, está muy extendida en todo el país y, además de una molestia general para las personas, es una plaga y también un problema de salud pública, ya que es uno de los huéspedes intermedios naturales de Angiostrongylus cantonensis, agente etiológico de la meningoencefalitis. Como en La Habana está experimentando la fase explosiva de la invasión, LABCEL ha estado recibiendo muestras de estos moluscos para su identificación y búsqueda de larvas de Angiostrongylus cantonensis. Mientras se examinaban muestras de A. fulica, se obtuvieron diferentes larvas, como strongylides encontrados en el interior de la cavidad paliar de A. fulica. Este es el primer informe en los municipios de San Miguel del Padrón y Regla sobre el desarrollo de larvas en A. Fulica evidenciando La importancia para la salud de este molusco en la transmisión potencial de la meningoencefalitis eosinofílica. Dado que la propagación de A. fulica se señala en la literatura como una de las principales causas de la meningoencefalitis causada por A. cantonensis, los autores enfatizan la necesidad de vigilancia sanitaria de caracoles y ratas de áreas vulnerables para la introducción de A. cantonensis como zonas de babor como estos municipios.


Subject(s)
Humans , Snails , Health Surveillance , Research Report , Human Activities , Angiostrongylus cantonensis , Mollusca
10.
Multimed (Granma) ; 23(4): 840-853, jul.-ago. 2019. tab
Article in Spanish | LILACS-Express | LILACS | ID: biblio-1091317

ABSTRACT

RESUMEN Introducción: el caracol gigante africano (CGA) o Achatinafulica se considera una de las cien especies exóticas invasoras más dañinas del mundo. Su principal riesgo para la salud humana resulta de la posibilidad de actuar como huésped de nematodos. Desarrollo: el CGA es el hospedero intermediario de varios parásitos incluidos Aelurostrongylusabstrusus, Angiostrongyluscantonensis, Angiostrongyluscostaricensis, Schistosomamansoni, Hymenolepisspp. Y Fasciola hepática. El A. cantonesises el principal microorganismo causal de la meningitis eosinofílica (ME) y es agente trasmisor de la bacteria gramnegativa Aeromonashydrophila. Entre las manifestaciones clínicas más comunes de la ME se incluyen cefalea intensa, rigidez nucal, náuseas vómitos y parestesias. La detección de eosinófilos en el líquido cefalorraquídeo (LCR) y la sangre periférica contribuyen a su diagnóstico. El tratamiento en formas graves de la ME se basa en el uso de corticosteroides y punciones lumbares seriadas para extracción del LCR. El empleo de antihelmínticos es controversial. Conclusiones: la presencia del caracol gigante africano en Cuba eleva el riesgo de enfermedades. La aparición de manifestaciones clínicas del sistema nervioso central impone la necesidad de indagar sobre la exposición a este molusco y demanda de la búsqueda de signos y síntomas de meningitis eosinofílica. Se requiere desarrollar en el futuro estudios controlados y aleatorizados sobre la eficacia de los fármacos para el tratamiento de la enfermedad, entre ellos los antihelmínticos.


ABSTRACT Introduction: the giant African snail (CGA) or Achatinafulica is considered one of the one hundred most harmful invasive alien species in the world. Its main risk to human health results from the possibility of acting as a host of nematodes. Development: the CGA is the intermediate host of several parasites including Aelurostrongylusabstrusus, Angiostrongyluscantonensis, Angiostrongyluscostaricensis, Schistosomamansoni, Hymenolepisspp. And Fasciola hepatica. A. cantonesises is the main causative organism of eosinophilic meningitis (ME) and is a transmitting agent of the gram-negative bacterium Aeromonashydrophila. The most common clinical manifestations of ME include intense headache, nuchal rigidity, nausea, vomiting and paresthesias. The detection of eosinophils in the cerebrospinal fluid (CSF) and peripheral blood contribute to its diagnosis. Treatment in severe forms of EM is based on the use of corticosteroids and serial lumbar punctures for CSF removal. The use of anthelmintics is controversial. Conclusions: the presence of the giant African snail in Cuba increases the risk of diseases. The appearance of clinical manifestations of the central nervous system imposes the need to inquire about the exposure to this mollusk and demand the search for signs and symptoms of eosinophilic meningitis. In the future, controlled and randomized studies on the efficacy of drugs for the treatment of the disease, including anthelmintics, need to be developed.


RESUMO Introdução: o caramujo gigante africano (CGA) ou Achatinafulica é considerado uma das cem espécies exóticas invasoras mais nocivas do mundo. Seu principal risco para a saúde humana resulta da possibilidade de atuar como hospedeiro de nematóides. Desenvolvimento: A CGA é o hospedeiro intermediário de vários parasitas incluindo Aelurostrongylusabstrusus, Angiostrongylus cantonensis, Angiostrongyluscostaricensis, Schistosoma mansoni, Hymenolepisspp. E Fasciola hepatica. A. cantonesises o principal organismo causador de meningite eosinofílica (ME) e é agente de bactérias gram-negativas bactérias Aeromonas hydrophila transmissão. As manifestações clínicas mais comuns da EM incluem cefaléia intensa, rigidez de nuca, náusea, vômito e parestesias. A detecção de eosinófilos no líquido cefalorraquidiano (LCR) e no sangue periférico contribui para o seu diagnóstico. O tratamento em formas graves de EM baseia-se no uso de corticosteróides e punções lombares em série para remoção do LCR. O uso de anti-helmínticos é controverso. Conclusões: a presença do gigante caramujo africano em Cuba aumenta o risco de doenças. O aparecimento de manifestações clínicas do sistema nervoso central impõe a necessidade de investigar a exposição a este molusco e procura de sinais e sintomas de meningite eosinofílica. No futuro, estudos controlados e randomizados sobre a eficácia de medicamentos para o tratamento da doença, incluindo anti-helmínticos, precisam ser desenvolvidos.

11.
Chinese Journal of Schistosomiasis Control ; (6): 441-445, 2019.
Article in Chinese | WPRIM | ID: wpr-818966

ABSTRACT

Invasion of alien species has increasingly become a major environmental problem that damages human health, economic development and ecological security in China, which has been paid much attention. Until now, there have been 753 invasive species reported in China, and invasive medical molluscs include Pomacea canaliculata, Achatina fulica, and Biomphalaria straminea. This review summarizes the status of biologically invasive species in China, describes the species and distribution of invasive medical molluscs, analyzes the damages of the invasive medical molluscs-transmitted diseases, and proposes the preventive and control measures.

12.
Chinese Journal of Schistosomiasis Control ; (6): 441-445, 2019.
Article in Chinese | WPRIM | ID: wpr-818514

ABSTRACT

Invasion of alien species has increasingly become a major environmental problem that damages human health, economic development and ecological security in China, which has been paid much attention. Until now, there have been 753 invasive species reported in China, and invasive medical molluscs include Pomacea canaliculata, Achatina fulica, and Biomphalaria straminea. This review summarizes the status of biologically invasive species in China, describes the species and distribution of invasive medical molluscs, analyzes the damages of the invasive medical molluscs-transmitted diseases, and proposes the preventive and control measures.

15.
Arq. Inst. Biol ; 85: e0402017, 2018. ilus, graf
Article in English | LILACS, VETINDEX | ID: biblio-998431

ABSTRACT

The African snail Achatina fulica (Bowdich, 1822), originally from Africa, was introduced in Brazil and since then became an important pest, because of its resistance to abiotic conditions, hermaphroditism, polyphagia and absence of natural enemies. Considered as one of the 100 worst pests in the world, with the record of establishment in almost all Brazilian states, it causes sanitary, ecological and economic losses. In this context, the objective of this study was to determine the population dynamics and food preference of the giant snail in three areas of lettuce, located in Alagoas, Brazil. There was no statistical difference between food preference tests with and without choice among the varieties offered. To the fluctuation of the population of A. fulica, the Pearson correlation coefficients were negative only for temperature, and there was no correlation with precipitation and relative humidity.(AU)


O caramujo-africano Achatina fulica (Bowdich, 1822), originário da África, foi introduzido no Brasil e desde então se tornou uma praga importante, por sua resistência a condições abióticas, hermafroditismo, polifagia e ausência de inimigos naturais. Considerada uma das cem piores pragas do mundo, com registro de implantação em quase todos os estados brasileiros, causa perdas sanitárias, ecológicas e econômicas. Nesse contexto, o objetivo deste estudo foi determinar a dinâmica populacional e a preferência alimentar do caramujo-africano em três áreas de alface localizadas em Alagoas, Brasil. Não houve diferença estatística entre os testes de preferência alimentar com e sem escolha em meio às variedades oferecidas. Para a flutuação da população de A. fulica, os coeficientes de correlação de Pearson foram negativos apenas para a temperatura, não havendo correlação com a precipitação nem com a umidade relativa.(AU)


Subject(s)
Snails , Lactuca , Agricultural Pests , Pest Control , Gardening
16.
Rev. MVZ Córdoba ; 22(3): 6276-6286, Sep.-Dec. 2017. tab, graf
Article in English | LILACS | ID: biblio-957331

ABSTRACT

ABSTRACT Objectives. To establish the presence and prevalence of Strongylida nematode parasites in Achatina fulica in the Valle del Cauca, especially of nematodes that are potentially pathogenic for humans. Materials and methods. A. fulica individuals were collected in nine cities of the Valle del Cauca, Colombia. Direct visual examination was used to identify A. fulica parasites. Nematodes were separated from tissue or collected from mucus, washed in saline solution, and fixed in a hot AFA solution. Samples were mounted in glycerine and observed under the microscope. Results. The general nematode parasite prevalence was 35% in 2013. The city with highest prevalence during 2013 was Cartago (60%), following by Buenaventura (42.9%) and Cali (33%), while during 2014 were Cali (30%) and Buenaventura (30%). The Strongylida nematodes registered were classified in three genera: Angiostrongylus (14.7% prevalence), Aelurostrongylus (2.6%), and Strongyluris (2.6%). The city with highest positive records of Angiostrongylus was Cali during 2014 and Aelurostrongylus was Buenaventura during 2013. Strongyluris genus was recorded only in Cali during 2013, with a prevalence of 11%. Of the nine evaluated cities, five has presence of Angiostrongylus. Conclusions. Three genera of Strongylida nematode were recorded associated with A. fulicas specimens in the Valle del Cauca during 2013 and 2014. Therefore, the role that A. fulica and native mollusk species could be playing in the life cycle of these parasites at the local level should not underestimated.


RESUMEN Objetivos. Establecer la presencia y prevalencia de parásitos nematodos Strongylida en Achatina fulica en el Valle del Cauca, especialmente los nematodos que son potencialmente patogénicos para los humanos. Materiales y métodos. Individuos de A. fulica fueron colectados en nueve ciudades del Valle del Cauca, Colombia. Los nematodos fueron identificados mediante inspección directa de los individuos, estos se separaron de los tejidos y el mucus, luego, los nematodos se lavaron en solución salina, y fijaron en solución AFA caliente. Se montaron placas en glicerina para observar al microscopio. Resultados. La prevalencia general de parásitos nematodos fue 35% en 2013. La ciudad con mayor prevalencia durante 2013 fue Cartago (60%), seguido de Buenaventura (42.9%) y Cali (33%), mientras que en 2014 fue Cali (30%) y Buenaventura (30%). Los nematodos Strongylida registrados fueron clasificados en tres géneros: Angiostrongylus (prevalencia 14.7%), Aelurostrongylus (2.6%), y Strongyluris (2.6%). La ciudad con la mayor cantidad de positivos para Angiostrongylus fue Cali durante 2014 y Buenaventura con Aelurostorngylus para el 2013. El género Strongyluris solo se reportó en Cali durante 2013, con una prevalencia del 11%. En cinco de las nueves ciudades evaluadas se registró la presencia de Angiostrongylus. Conclusiones. Tres géneros de nematodos Strongylida se reportaron en individuos de A. fulica en el Valle del Cauca durante 2013 y 2014. Por lo tanto, no debe subestimarse el papel de A. fulica y las especies de moluscos nativas en el ciclo de vida de estos parásitos.

17.
An. acad. bras. ciênc ; 89(3,supl): 2181-2188, 2017. graf
Article in English | LILACS | ID: biblio-886776

ABSTRACT

ABSTRACT The objective of this study was to identify thyroid hormones and to examine their putative site of synthesis in Achatina fulica snails. For this purpose, radioimmunoassays were performed for T3 and T4 before and after long starvation with or without hemolymph deproteinization. Sodium/iodide symporter activity in vivo was analyzed through 125I administration with and without KClO4 pretreatment. Only T4 was detected, and its concentration decreased due to starvation or deproteinization. However, high-performance liquid chromatography analysis also showed the presence of T2 and T3 apart from T4, but rT3 was not detected in the A. fulica hemolymph. The sodium/iodide symporter activity was greater in cerebral ganglia than digestive gland, but KClO4 treatment did not inhibit iodide uptake in any of the tissues analyzed. Altogether, our data confirm for the first time the presence of thyroid hormones in A. fulica snails and suggest their participation in the metabolism control in this species, although the putative site of hormone biosynthesis remains to be elucidated.


Subject(s)
Animals , Snails/chemistry , Thyroxine/analysis , Thyroxine/metabolism , Biological Transport , Hemolymph , Chromatography, High Pressure Liquid , Sodium Chloride Symporters
19.
Article in English | LILACS-Express | LILACS, VETINDEX | ID: biblio-1467289

ABSTRACT

Abstract The objective of this study was to identify the occurrence of Achatina fulica in the Great Aracaju-SE Territory. This research was developed during the months of June 2016 to May 2017. The plots methodology was used for the monthly collections, following the collection time of 20 minutes per area. The mollusks were measured and soon afterwards the parasitological analysis of the mucus and faeces was performed. Molecular identification was performed to evaluate the possible presence of Angiostrongylus sp. We observed that the occurrence of A. fulica was more representative in urban areas, especially in vacant lots with the presence of litter and decomposing materials. In the specimens of A. fulica examined were male and female nematodes of the genus Rhabditis, in the research municipalities, except in Barra dos Coqueiros. No parasites of the genus Angiostrongylus were found in the mollusks examined. The influence of the presence of litter on the plots associated with the frequency of A. fulica was statistically significant. There was a correlation between the influence of rainfall and the frequency of A. fulica. A significant relationship between moisture and frequency and nematode positivity was identified. It was also observed that the larger the mollusk, the greater the chances of being infected by nematodes. Scientific knowledge about the biology of the A. fulica species associated with human intervention such as the maintenance of land and adequate sanitary measures may be important factors for a better control of this invasive mollusk.


Resumo O objetivo deste estudo foi verificar a ocorrência de A. fulica no território da Grande Aracaju, Sergipe, avaliando a infecção destes moluscos por nematódeos, a influência das condições climáticas e das características do ambiente. Esta pesquisa foi desenvolvida durante os meses de junho de 2016 a maio de 2017. Foi utilizada a metodologia de parcelas para as coletas mensais de 20 min por área, um total de 15 parcelas distribuídas em 5 municípios. Os moluscos foram mensurados e logo em seguida realizada a análise parasitológica do muco e fezes. Foi realizada a identificação molecular para avaliar a possível presença de Angiostrongylus sp. Observamos que a ocorrência de A. fulica foi mais representativa em áreas urbanas, sobretudo em terrenos baldios com a presença de lixo e materiais em decomposição. Nos exemplares de A. fulica examinados foram encontrados nematódeos do gênero Rhabditis, nos municípios da pesquisa, exceto em Barra dos Coqueiros. Não foram encontrados parasitos do gênero Angiostrongylus nos moluscos examinados. A influência da presença de lixo nas parcelas associado à frequência da A. fulica mostrou-se estatisticamente significativa. Houve correlação entre a influência da chuva e a frequência de A. fulica. Foi identificada uma relação significativa entre a umidade e a frequência e a positividade para nematódeos. Foi também observado que quanto maior o molusco, maiores são as chances deste apresentar nematódeos. O conhecimento científico a respeito da biologia da espécie A. fulica associado à intervenção humana como, a manutenção de terrenos e medidas sanitárias adequadas podem ser fatores importantes para um controle malacológico mais adequado para esta espécie invasora.

20.
Rev. Univ. Ind. Santander, Salud ; 48(2): 188-195, Mayo 6, 2016. ilus, tab
Article in Spanish | LILACS | ID: lil-784972

ABSTRACT

Introducción: El caracol gigante africano Achatina fulica es reconocido como una plaga que afecta la biodiversidad, la Salud Pública y la productividad. Sin embargo, se ha demostrado que su secreción mucosa tiene propiedades cosméticas, cicatrizantes y antimicrobianas. Objetivo: Determinar las características físico-químicas y evaluar la actividad antimicrobiana de la secreción mucosa de Achatina fulica. Metodología: Se hicieron pruebas bioquímicas para la determinación cualitativa y cuantitativa de glúcidos, proteínas y lípidos. Se determinó el contenido de Calcio, Potasio, cloruros, Sodio y Magnesio. Se midieron los parámetros de conductividad eléctrica, potencial óxido-reducción, saturación de oxígeno, oxígeno total disuelto, pH, sólidos disueltos totales. Se realizó un ensayo de actividad antibacteriana por la técnica de microdilución en caldo. Resultados: Se encontraron glúcidos en concentraciones de 582 μg/mL en la fracción soluble y de 62.1 μg/mL en la fracción de mucinas, y proteínas en concentraciones de 836 μg/mL en la fracción soluble y de 1413 μg/mL en la fracción de mucinas. Se observó actividad antimicrobiana frente a las tres cepas ensayadas. Streptococcus agalactiae alcanzó un MIC90 a una concentración de 3,6 mg/mL con la fracción de mucinas; Staphylococcus aureus resistente a meticilina tuvo un MIC50 de 3,3 mg/mL y Escherichia coli un MIC 70 de 3.8 mg/mL. Conclusiones: Se reportan por primera vez las características físicas y los oligoelementos presente en la secreción de Achatina fulica. La actividad antibacteriana obtenida frente a cepas Gram positivas y Gram negativas plantea la necesidad de realizar estudios para purificar las moléculas con dicha actividad, conocer los mecanismos de acción y establecer la inocuidad, entre otros.


Introduction: The giant African snail Achatina fulica is recognized as a scourge affecting biodiversity, public health and productivity. However, it has been shown that the mucus has cosmetic, healing and antimicrobial properties. Objective: Determine physico-chemical characteristics and evaluate the antimicrobial activity of the mucus. Methodology: Qualitative and quantitative determinations of carbohydrates, proteins and lipids were made by biochemical tests. Using multiparameter meter parameters of electrical conductivity, redox potential, oxygen saturation, the total dissolved oxygen, pH, total dissolved solids were measured. Content of Calcium, Potassium, chloride, Sodium and Magnesium was determined. Antibacterial activity assay was performed by broth microdilution method against Gram positive and Gram negative bacteria. Results: Carbohydrates were found in concentrations of 582 μg/mL in soluble fraction and 62.1 μg/mL in mucin fraction, and protein concentration of 836 μg/mL in the soluble fraction and 1413 μg/mL in mucin fraction. Antimicrobial activity was demonstrated against the three strains tested. Streptococcus agalactiae reached MIC90 at a concentration of 3.6 μg/mL with mucin fraction; Methicillin-Resistant Staphylococcus aureus had a MIC50 of 3.3 mg / mL and Escherichia coli had a MIC70 of 3.8 mg / mL. Conclusions: This is the first report of the physical and trace elements in the secretion of Achatina fulica. The antibacterial activity obtained against Gram positive and Gram negative strains raises the need for studies to purify the molecules with such activity, understanding the mechanisms of action and establish the safety, among others.


Subject(s)
Humans , Products with Antimicrobial Action , Chemical Phenomena , Mucus
SELECTION OF CITATIONS
SEARCH DETAIL