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1.
Braz. j. biol ; 81(1): 183-188, Feb. 2021. tab
Article in English | LILACS | ID: biblio-1153316

ABSTRACT

Abstract Gastrointestinal nematodes are responsible for great economic losses in sheep raising, and their control has long been carried out almost exclusively by the administration of anthelmintics, which have led to serious resistance problems. In the search for alternative control measures, phytotherapic research is highlighted. The aim of this study was to evaluate the action of Anethum graveolens (dill) essential oil on different stages of Haemonchus contortus life cycle, as well its cytotoxicity MDBK (Madin-Darby bovine kidney) cells. H. contortus larvae and eggs were obtained from infected sheep feces, and essential oil extracted from plant seeds through the Clevenger apparatus. 9.4, 4.7, 2.35, 1.17. 0.58 and 0.29 mg/mL concentrations were evaluated. The Egg Hatch Inhibition (HI), Larval Development Inhibition (LDI) and Larval Migration Inhibition (LMI) techniques were used. Thybendazole 0.025 mg/mL in HI and Levamisole 0.02 mg/mL in the LDI and LMI tests were used as positive controls, while distilled water and a Tween 80 solution were used as positive negative controls. The inhibition results obtained for the highest oil concentration were: HI 100%, LDI 98.58% and LMI 63.7%, differing (�� <0.05) from negative controls. Main A. graveolens oil components present in 95.93% of the total oil were Dihydrocarvone (39.1%), Carvone (22.24%), D-Limonene (16.84%), Apiol (10.49%) and Trans-dihydrocarvone (7.26%). Minimum A. graveolens essential oil concentrations required to inhibit 50% (IC50) of egg hatching, larval development and larval migration were 0.006 mg/mL, 2.536 mg/mL and 3.963 mg/mL, respectively. Cell viability in MDBK (Madin-Darby bovine kidney) cells, when incubated with A. graveolens essential oil, was 86% for the highest (9.4 mg/mL) and 99% for the lowest concentration (0.29 mg/mL). A. graveolens essential oil, according to the results obtained in this study, is a promising alternative in sheep gastrointestinal nematode control.


Resumo Os nematoides gastrintestinais são responsáveis ​​por grandes perdas econômicas na ovinocultura, e seu controle tem sido realizado quase exclusivamente pela administração de anti-helmínticos, que levaram a sérios problemas de resistência. Na busca de medidas alternativas de controle, destaca-se a pesquisa fitoterápica. O objetivo deste trabalho foi avaliar a ação do óleo essencial de Anethum graveolens (endro) em diferentes estágios de Haemonchus contortus, bem como testar a viabilidade celular para o óleo. Larvas e ovos de H. contortus foram obtidos de fezes de ovinos infectados e óleo essencial extraído de sementes de plantas através do aparelho de Clevenger. As concentrações avaliadas foram 9,4, 4,7, 2,35, 1,17, 0,58 e 0,29 mg/mL. Verificou-se a Inibição de eclosão dos ovos (IE), Inibição de Desenvolvimento Larval (IDL) e Inibição de Migração Larval (IML). Tiabendazol 0,025 mg/mL em IE e Levamisole 0.02 mg/mL nos testes IDL e IML foram usados ​​como controles positivos, enquanto água destilada e uma solução Tween 80 foram usados como controles negativos. Os resultados de inibição obtidos para a maior concentração de óleo foram: IE 100%, IDL 98,58% e IML 63,7%, diferindo (�� <0,05) dos controles negativos. Os principais componentes presentes em 95,93% do óleo total de A. graveolens foram Di-hidrocarvona (39,1%), Carvona (22,24%), D-Limoneno (16,84%), Apiol (10,49%) e Trans-di-hidrocarvona (7,26%). As concentrações mínimas de óleo essencial de A. graveolens necessárias para inibir 50% (IC50) de eclosão dos ovos, desenvolvimento larval e migração larval foram de 0,006 mg/mL, 2,536 mg/mL e 3,963 mg/mL, respectivamente. A viabilidade celular nas células MDBK (rim bovino Madin-Darby), quando incubadas com o óleo essencial de A. graveolens, foi de 86% para a maior (9,4 mg/mL) e 99% para a menor concentração (0,29 mg/mL). O óleo essencial de A. graveolens mostrou ser uma alternativa promissora no controle de nematoides gastrintestinais de ovinos.


Subject(s)
Animals , Oils, Volatile/pharmacology , Anethum graveolens , Haemonchus , Anthelmintics/pharmacology , Cattle , Sheep , Plant Extracts/pharmacology , Larva
2.
Braz. j. med. biol. res ; 52(2): e7773, 2019. tab, graf
Article in English | LILACS | ID: biblio-984030

ABSTRACT

The aim of this study was to evaluate the therapeutic effects of ultrasound (US)-mediated phonophoresis alone or in association with diclofenac diethylammonium (DCF) administered topically in animal models of inflammation. A pre-clinical, prospective, and randomized experimental study of quantitative and qualitative nature was carried out. Phonophoresis was performed using a therapeutic ultrasound apparatus in two distinct models of acute inflammation. Edema was induced by an intraplantar injection of carrageenan and measured by plethysmography. The Hargreaves test was used to evaluate the antinociceptive activity and investigate the action of phonophoresis on tumor necrosis factor (TNF)-α production. A histological analysis with hematoxylin-eosin was used to evaluate tissue repair, and the expression of COX-2 was determined by immunohistochemical analysis. At the peak of inflammatory activity (3 h), treatment with US, US+DCF, and DCF significantly reduced edema formation compared to the control group. Treatment with US+DCF was more effective than treatment with US alone at both analyzed times. In the analysis of the antinociceptive activity, the treatments significantly increased the latency time in response to the thermal stimulus. Histopathological analysis revealed a reduction of the inflammatory infiltrates and immunohistochemistry demonstrated that the association was effective in reducing COX-2 expression compared to the control group. The association of DCF with US produced anti-inflammatory and antinociceptive effects in rat models of inflammation, which may be associated with inhibition of COX-2 and TNF-α production.


Subject(s)
Animals , Male , Rats , Phonophoresis , Anti-Inflammatory Agents, Non-Steroidal/administration & dosage , Diclofenac/administration & dosage , Analgesics/administration & dosage , Inflammation/drug therapy , Anti-Inflammatory Agents/administration & dosage , Ultrasonic Therapy/methods , Random Allocation , Prospective Studies , Administration, Topical , Tumor Necrosis Factor-alpha , Rats, Wistar , Disease Models, Animal , Inflammation/physiopathology , Inflammation/pathology
3.
Braz. j. biol ; 78(3): 574-578, Aug. 2018. tab
Article in English | LILACS | ID: biblio-951569

ABSTRACT

Abstract Intestinal parasitic infections in immunocompromised patients can lead to serious complications when not diagnosed and treated early. This study aimed to investigate the frequency of intestinal parasites in cancer patients undergoing chemotherapy in the South of Brazil. Three fecal samples collected from each patient (73 individuals) were processed by Ritchie and Faust techniques and submitted to specific staining methods for intestinal protozoa. A 61.6% parasite and/or commensal positivity was found. Helminths identified were Ascaris lumbricoides (33.3%), Taenia spp. (6.6%), Strongyloides stercoralis (4.4%) and Trichuris trichiura (2.2%). Among protozoans, Giardia lamblia (26.6%), Cryptosporidium spp. (13.3%) and Cystoisospora belli (4.4%) were identified. The presence of Entamoeba coli, Endolimax nana and Entamoeba hartmanni was also recorded. The results obtained warn of the importance of fecal parasitological diagnosis and the use of specific staining methods for the detection of intestinal parasites in cancer patients. These exams should be regularly requested at the patient's first clinic visit, given the high prevalence found in this study and the possible severity of such conditions for these individuals.


Resumo As parasitoses intestinais em pacientes imunocomprometidos podem levar a graves complicações se não diagnosticadas e tratadas precocemente. Este estudo teve como objetivo investigar a frequência de parasitos intestinais em pacientes oncológicos submetidos ao tratamento quimioterápico. Foram coletadas três amostras de fezes de cada paciente, sendo processadas pelas técnicas de Ritchie e Faust e submetidas à métodos de coloração específicos para protozoários intestinais. Foi encontrada positividade de 61,6% para parasitos e/ou comensais. Os helmintos identificados foram Ascaris lumbricoides (33,3%), Taenia spp. (6,6%), Strongyloides stercoralis (4,4%) e Trichuris trichiura (2,2%). Dentre os protozoários, foram identificados Giardia lamblia (26,6%), Cryptosporidium spp. (13,3%) e Cystoisospora belli (4,4%). Também foi registrada presença de Entamoeba coli, Endolimax nana e Entamoeba hartmanni. Os resultados encontrados alertam para a importância do diagnóstico parasitológico de fezes junto à utilização de colorações específicas para parasitos intestinais em pacientes oncológicos, sendo que os mesmos deveriam ser requeridos como conduta já na primeira consulta clínica destes pacientes, dada à elevada prevalência aqui constatada e a possível severidade que tais moléstias podem acarretar nestes indivíduos.


Subject(s)
Animals , Male , Female , Adult , Middle Aged , Aged , Aged, 80 and over , Young Adult , Intestinal Diseases, Parasitic/epidemiology , Neoplasms/epidemiology , Brazil/epidemiology , Comorbidity , Prevalence , Giardia lamblia/isolation & purification , Cryptosporidium/isolation & purification , Entamoeba/isolation & purification , Feces/parasitology , Helminths/isolation & purification
4.
Article in English | LILACS-Express | LILACS, VETINDEX | ID: biblio-1467389

ABSTRACT

Abstract Gastrointestinal nematodes are responsible for great economic losses in sheep raising, and their control has long been carried out almost exclusively by the administration of anthelmintics, which have led to serious resistance problems. In the search for alternative control measures, phytotherapic research is highlighted. The aim of this study was to evaluate the action of Anethum graveolens (dill) essential oil on different stages of Haemonchus contortus life cycle, as well its cytotoxicity MDBK (Madin-Darby bovine kidney) cells. H. contortus larvae and eggs were obtained from infected sheep feces, and essential oil extracted from plant seeds through the Clevenger apparatus. 9.4, 4.7, 2.35, 1.17. 0.58 and 0.29 mg/mL concentrations were evaluated. The Egg Hatch Inhibition (HI), Larval Development Inhibition (LDI) and Larval Migration Inhibition (LMI) techniques were used. Thybendazole 0.025 mg/mL in HI and Levamisole 0.02 mg/mL in the LDI and LMI tests were used as positive controls, while distilled water and a Tween 80 solution were used as positive negative controls. The inhibition results obtained for the highest oil concentration were: HI 100%, LDI 98.58% and LMI 63.7%, differing ( 0.05) from negative controls. Main A. graveolens oil components present in 95.93% of the total oil were Dihydrocarvone (39.1%), Carvone (22.24%), D-Limonene (16.84%), Apiol (10.49%) and Trans-dihydrocarvone (7.26%). Minimum A. graveolens essential oil concentrations required to inhibit 50% (IC50) of egg hatching, larval development and larval migration were 0.006 mg/mL, 2.536 mg/mL and 3.963 mg/mL, respectively. Cell viability in MDBK (Madin-Darby bovine kidney) cells, when incubated with A. graveolens essential oil, was 86% for the highest (9.4 mg/mL) and 99% for the lowest concentration (0.29 mg/mL). A. graveolens essential oil, according to the results obtained in this study, is a promising alternative in sheep gastrointestinal nematode control.


Resumo Os nematoides gastrintestinais são responsáveis por grandes perdas econômicas na ovinocultura, e seu controle tem sido realizado quase exclusivamente pela administração de anti-helmínticos, que levaram a sérios problemas de resistência. Na busca de medidas alternativas de controle, destaca-se a pesquisa fitoterápica. O objetivo deste trabalho foi avaliar a ação do óleo essencial de Anethum graveolens (endro) em diferentes estágios de Haemonchus contortus, bem como testar a viabilidade celular para o óleo. Larvas e ovos de H. contortus foram obtidos de fezes de ovinos infectados e óleo essencial extraído de sementes de plantas através do aparelho de Clevenger. As concentrações avaliadas foram 9,4, 4,7, 2,35, 1,17, 0,58 e 0,29 mg/mL. Verificou-se a Inibição de eclosão dos ovos (IE), Inibição de Desenvolvimento Larval (IDL) e Inibição de Migração Larval (IML). Tiabendazol 0,025 mg/mL em IE e Levamisole 0.02 mg/mL nos testes IDL e IML foram usados como controles positivos, enquanto água destilada e uma solução Tween 80 foram usados como controles negativos. Os resultados de inibição obtidos para a maior concentração de óleo foram: IE 100%, IDL 98,58% e IML 63,7%, diferindo ( 0,05) dos controles negativos. Os principais componentes presentes em 95,93% do óleo total de A. graveolens foram Di-hidrocarvona (39,1%), Carvona (22,24%), D-Limoneno (16,84%), Apiol (10,49%) e Trans-di-hidrocarvona (7,26%). As concentrações mínimas de óleo essencial de A. graveolens necessárias para inibir 50% (IC50) de eclosão dos ovos, desenvolvimento larval e migração larval foram de 0,006 mg/mL, 2,536 mg/mL e 3,963 mg/mL, respectivamente. A viabilidade celular nas células MDBK (rim bovino Madin-Darby), quando incubadas com o óleo essencial de A. graveolens, foi de 86% para a maior (9,4 mg/mL) e 99% para a menor concentração (0,29 mg/mL). O óleo essencial de A. graveolens mostrou ser uma alternativa promissora no controle de nematoides gastrintestinais de ovinos.

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