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1.
Rev. argent. microbiol ; 53(2): 31-40, June 2021. graf
Article in English | LILACS | ID: biblio-1376405

ABSTRACT

Abstract In the present study, pentastomids belonging to the order Cephalobaenida were isolated from the lungs of Berber skinks Eumeces schneideri (Famiy: Scincidae), which were morphologically described by light and scanning electron microscopy and taxonomically justi- fied by 18s rDNA molecular analyses of the parasites. Seventeen host specimens were collected from well-vegetated wadis at high altitudes, Jizan, Saudi Arabia as new type locality; twelve specimens (70.59%) were infected. All of the recovered parasites were adults, possessed small broadly triangular cephalothorax flattened on the ventral surface and merged smoothly with a uniformly thick and squat abdomen and terminated in a pair of divergent lobes. The results obtained indicated that the parasites belong to the sharp-tipped posterior-hook Raillietiella spp. distinguished from other raillietiedids of the same group some important characteristic fea- tures including annulus number, shape and dimensions of the buccal cadre, copulatory spicules, and anterior and posterior hooks. The anterior hook of the female specimens (n = 5) had a blade length (AB) of 135±5 (110-146) ^m and shank length (BC) 158±5 (150-169) ^m while the posterior hook was much larger with AB measuring 221 ±5 (200-236) m and BC 286 ±6 (280-289) -o.m. For the male specimens (n = 5), the anterior hook had an AB of 73 ±3 (72-75) -j.m and a BC 102±5 (100-103) ^m. The posterior hook was much larger with AB 190.6±5 (190-191).


Resumen En el presente estudio se aisló un pentastómido perteneciente al orden Cephalobaenida del pulmón de un eslizón bereber (Eumeces schneideri, Familia: Scincidae). Se efectuó su descripción morfológica basada en observación por microscopía óptica y de bar rido y se justificó su ubicación taxonómica mediante análisis molecular del gen 18S del ADNr. Se recolectaron 17 especímenes del citado huésped en valles ubicados a elevadas altitudes, en la región de Jizan (Arabia Saudí); 12 de ellos (70,59%) estaban infectados. Todos los parásitos recuperados eran adultos y poseían un pequeño cefalotórax triangular, aplanado en la super ficie ventral, que se fusionaba con un abdomen abultado y terminado en un par de lóbulos divergentes. Los resultados indicaron que este parásito pertenece a Raillietiella spp., que agrupa especies con gancho posterior puntiagudo; estas se distinguen de otros miembros de la Familia Raillietiella por algunos rasgos característicos, como el número de anillos y la forma y dimensiones del cuadro bucal, las espículas copulatorias y los ganchos anterior y posterior. La caracterización morfológica demostró que el parásito recuperado era muy similar a R. aegypti, previamente aislada del mismo huésped. El alineamiento de secuencias mediante el método de probabilidad máxima basado en el análisis del gen 18s del ADNr detectó identidades del 88-95% con los géneros de pentastómidos disponibles en GenBank. Dentro del árbol filogenético se pudo incluir este parásito dentro del clado monofilético pentastómido con máxima identidad con las especies de Raillietiella. Las secuencias obtenidas fueron depositadas en GenBank, con número de acceso MK970649.1. El presente análisis molecular confirma por primera vez la posición taxonómica de Raillietiella aegypti, anteriormente aislado del mismo huésped.


Subject(s)
Animals , Female , Male , Pentastomida , Lizards , Phylogeny , DNA, Ribosomal/genetics , Pentastomida/genetics , Lizards/genetics , Lung
2.
Rev. bras. parasitol. vet ; 30(1): e015920, 2021. tab, graf
Article in English | LILACS | ID: biblio-1156210

ABSTRACT

Abstract The consumption of inadequately thermally treated fish is a public health risk due to the possible propagation of Anisakis larvae. The present study demonstrated the physiological and histopathological changes that accompanied an oral inoculation of crude extracts from fresh and thermally treated Anisakis Type II (L3) in rats. Worms were isolated from a marine fish and examined and identified using light and scanning electron microscopy. The study was performed in 6 rat groups: control (I), garlic oil (GO) inoculated (II), fresh L3 inoculated (III), thermally treated L3 inoculated (IV), fresh L3 + GO inoculated (V), and a thermally treated L3 + GO inoculated (VI) groups. Rats inoculated with fresh and thermally treated L3 showed abnormal liver and kidney functions associated with the destruction of normal architecture. GO produced a protective effect in rat groups inoculated with L3 extracts + GO via the amelioration of liver and kidney functions, which was confirmed by the marked normal structure on histology. Cooking of L3-infected fish induced severe alterations compared to uncooked fish. The administration of garlic before and after fish eating is recommended to avoid the dangerous effect of anisakids, even if they are cooked.


Resumo O consumo de peixe inadequadamente tratado termicamente representa um risco para a saúde pública, com a possibilidade da propagação de larvas de Anisakis. O presente estudo demonstrou as alterações fisiológicas e histopatológicas acompanhadas de inoculação oral de extractos brutos de Anisakis tipo II (L3) frescos e termicamente tratados em ratos. Os vermes foram isolados de um peixe marinho, examinados e identificados por microscopia de luz e eletrônica de varredura. O estudo foi conduzido em 6 grupos de ratos: controle (I), óleo de alho (GO) inoculado (II), L3 fresco inoculado (III), L3 tratado termicamente inoculado (IV), L3 fresco + GO inoculado (V), e um grupo L3 + GO tratado termicamente inoculado (VI). Observou-se que ratos inoculados com L3 fresco e tratados termicamente mostraram funções hepáticas e renais anormais, associadas à destruição da sua arquitetura normal. GO produziu um efeito protector em grupos de ratos inoculados com extractos L3 + GO através da melhoria das funções do fígado e dos rins, o que foi confirmado pela estrutura normal marcada da sua histologia. A cozedura de peixes infectados com L3 induziu alterações mais graves do que os peixes não cozidos. Recomenda-se a administração de alho antes e depois do consumo de peixe, para evitar o efeito perigoso dos anisakids, mesmo que sejam cozidos.


Subject(s)
Animals , Rats , Sulfides/pharmacology , Anisakis/drug effects , Anisakiasis/prevention & control , Anisakiasis/drug therapy , Allyl Compounds/therapeutic use , Allyl Compounds/pharmacology , Sulfides/therapeutic use , Food Parasitology , Rats, Wistar , Cooking , Fishes/parasitology , Larva , Anthelmintics/therapeutic use , Anthelmintics/pharmacology
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