175 resultados para insect bite
Resumo:
Os autores iniciam com êste, uma série de trabalhos sôbre a Dermatozoonose provocada pela picada de Culicoides, em Salvador, Bahia, Brasil. No presente, tratam das espécies de Culicoides encontradas em Salvador, baseados na coleta de 2.947 exemplares, durante os anos de 1959 a 1963. Encontraram as 4 espécies seguintes; C. (O.) paraensis (Goeldi, 1905) C. (O.) limonensis Ortiz & Leon, 1955 C. (C.) insignis Lutz, 1913 C. (C.) flavivenula Costa Lima, 1937. Não reencontraram o C. (C.) maruim, Lutz, 1913 assinalado por fox (1948) e WIRTH & BLANTON (1956) para Salvador. Dessas espécies o C. (C.) paraensis se mostrou a predominante, abrangendo 98% de exemplares coletados. Apresentam a distribuição das espécies por bairros e respectivas quantidades coletadas. Finalizando, dão as principais características morfológicas das espécies, ilustrando essas com desenhos do material por êles estudado.
Resumo:
Neste segundo trabalho da série "Dermatozoonose pela picada de Culicoides em Salvador, Bahia", os Autores apresentam dados sôbre a bionomia das espécies encontradas em Salvador, em condições naturais. Salientam que devido a localização geográfica e das condições de clima e umidade a cidade de Salvador apresenta condições ótimas para a proliferação do díptero. Cêrca de 98% dos espécimens de Culicoides coletados em tôda a cidade foi representado pelo Culicoides (O.) paraensis (Goeldi, 1903), sendo, por êsse motivo, levado em maior consideração. O C. paraensis distribui-se por tôda a cidade, descrevendo sua densidade ao nível dos mangues, onde predomina o C. flavivenula. Inicia sua atividade entre 5 e 6 horas, tendo 3 picos de maior ocorrência durante o dia: 7 horas, 12 horas e predominantemente às 15 as 17 horas. Desaparece entre 18 e 19 horas. O C. limonensis só ocorre entre 6 e 8 horas, junto ao C. paraensis. o C. paraensis incide durante o ano inteiro, tendo uma variação estacional nítida. Sua densidade máxima corresponde aos meses chuvosos e mais frios. Não foi encontrado o criadouro natural das larvas, porém os autores julgam que se criem em ambientes de alta umidade, ou em águas coletadas em tronco de árvores, lixeiras e vasilhames diversos abandonados em terrenos baldios. em relaççao aos hábitos hematófagos, salienta-se que o C. paraensis os tem acentuadamente antropófilos. Foi observado que certos indivíduos possuem uma atratividade especial para o culicoides. Em adição, a espécie tem preferências para sugar os membros inferiores. Para a explicação d~este fato, os autores julgam que o vôo rasteiro, a proteção contra aluz e correntes aéreas, e a maior exposição das pernas do hospedeiro, favoreçam uma característica específica que o C. paraensis possua para picar os membros inferiores.
Resumo:
Nesta terceira contribuiçãos os Autores apresentam os aspectos Epídemiológicos da Dermatozoonose pela picada de Culicoides em Salvador. Salientam que embora a densidade de insetos outros de hábitos antropófilos seja elevada na cidade, as seguintes evidências os conduziram a responsabilizar os Culicoides: conincidência do aparecimento de casos de Dermatozoonose após um período de maior densidade de Culicoides; maior número de casos, desde que a densidade de Culicoides aumentou nos últimos anos; proveni~encia de maior número de casos dos bairros onde há maior infestação de Culicoides. A Dermatozoonose é acentuadamente mais freqüente no sexo feminino. Houve maior número de casos entre os negros, talvez devido a maior freqüencia de negros que procuram tratamento no Hospital das Clínicas. Não há predominância acentuada para determinado grupo etário. Num levantamento que fizeram sôbre a incomodidade do Culicoides observaram que 81% de 593 residências visitadas em diferentes bairros, são incomodadas, sendo o inverno a época de maior incômodo. As horas de maior incômodo, coincidem com a ocorrência horária máxima do Culicoides. Observaram que as medidas usadas pela população para combate ao inseto são inadequadas pois, em 56% das residências não se obtém qualquer resultado. Considerando que nesses último cinco anos a densidade de Culicoides aumentou inexplicàvelmente em Salvador, julgam que os seguintes fatôres participara para que êsse fenômeno ocorresse: a extinção do Serviço de Profilaxia da Febre Amarela em 1956, o qual, indiretamente, por meio de sua "polícia de fócos" combatendo o Aedes aegypti, controlava os Culicoides; o crescimento da cidade, aumentando o número de fossas, já que não existe um sistema de esgotos adequado; e a deficiência do Serviço de Limpeza Pública da Cidade, ocasionando o acúmulo de lixo nos quintais, terrenos baldios e mesmo em logradouros públicos. Essas condições permitiram a existência de uma extensa rêde de "focos potenciais" para a proliferação dos Culicoides que agora infestam a cidade.
Resumo:
A observação de 211 pacientes com reação intensa à picada do Culicoides, que procuraram tratamento na Clínica dermatológica do Hospital das Clínicas da Universidade da Bahia, durante os anos de 1959 e 1962, permitiu o estudo clínico dessa Dermatozoonose, cujos dados são aqui apresentados. A lesão parece ser de natureza alérgica e devido ao aspecto polimorfo pelo qual se apresenta, essa Dermatose pode lembrar o Prorigo, a Escabiose, as Lesões liquenoide; quando a manifestação é mais intensa torna-se uma verdadeira eczematização; quando há infecção secundária, lembra o impetigo folicular. O estudo histológico da lesão revelou ser ela a de uma inflamação crônica, com vascularites e preivascularites dermo-epidérmica, provàvelmente de natureza alérgica. Para que haja a formação da lesão, são necessários: a substância inoculada pelo inseto e o componente alérgico do indivíduo. Não se conhece a natureza da substância inoculada pelo inseto e as seguintes hipóteses são apresentadas para explicá-la: substâncias enzimáticas ou a histamina existentes nas glândulas salivares do Culicoides. Após a picada do Culicoisdes forma-se no local uma pequena área eritematosa que logo após se transforma em pápula; as pápulas podem desaparecer ou transformarem-se em vesículas; estas ao se romperem dilaceram a superfície cutânea, descamam-na ou pode advir uma infecção secundária e transformam-se em pústulas.
Resumo:
In search of a suitable vector species for xenodiagnosis of humans and animals with chronic Chagas' disease we first investigated the reactions of different vector species to acute infection with Trypanosoma cruzi. Vector species utilized in this study were: Triatoma infestans, Rhodnius prolixus and Triatoma dimidiata, all well adapted to human habitats; Triatoma rubrovaria and Rhodnius neglectus both considered totally wild species; Panstrongylus megistus, Triatoma sordida, Triatoma pseudomaculata and Triatoma brasiliensis, all essentially sylvatic but some with domiciliary tendencies and others restricted to peridomestic biotopes with incipient colonization of human houses after successful eradication of T. infestans. Results summarized in Table IV suggest the following order of infectivity among the 9 studied vector species: P. megistus with 97.8% of infected bugs, T. rubrovaria with 95% of positive bugs a close second followed by T. Pseudomaculata with 94.3% and R. neglectus with 93.8% of infected bugs, almost identical thirds. R. prolixus, T. infestans and T. dimidiata exhibited low infection rates of 53.1%, 51.6% and 38.2% respectively, coupled with sharp decreases occuring with aging of infection (Fig. 1). The situation was intermediate in T. brasiliensis and T. sordida infection rates being 76.9% and 80% respectively. Results also point to the existence of a close correlation between prevalence and intensity of infection in that, species with high infection rates ranging from 93.8% to 97.8% exhibited relatively large proportions of insects (27.3% - 33.5%) harbouring very dense populations of T. cruzi. In species with low infection rates ranging from 38.2% to 53.1% the proportion of bugs demonstrating comparable parasite densities was at most 6%. No differences attributable to blood-meal size or to greater susceptibility of indigenous vector species to parasites of their own geographical area, as suggested in earlier...
Resumo:
Ivermectin (0.2 mg/kg body weight) caused a high mortality in nymphs and adults of Rhodnius prolixus following a single meal in mice sub-cutaneously injected with the drug. This effect was more evident in nymphs of 1st-and 2nd-instar than in older nymphs and adults. Third-instar nymphs presented a high mortality when fed on mice treated with ivermectin 24 and 48 hours previously, while mortality was significantly reduced in nymphs fed on mice treated 72 hours before. Surviving 3rd-instar nymphs did not molt. When adult females were fed once on mice treated for 24 hours with ivermectin there was a considerable reduction in egg production. This inhibition was not reversed by a second feeding on normal mice. We concluded that sub-lethal doses of ivermectin caused toxic effects interfering in the neuro-endocrine control of development and reproduction of this bloodsucking insect.
Resumo:
In order to upgrade the reliability of xenodiagnosis, attention has been directed towards population dynamics of the parasite, with particular interest for the following factors: 1. Parasite density which by itself is not a research objective, but by giving an accurate portrayal of parasite development and multiplication, has been incorporated in screening of bugs for xenodiagnosis. 2. On the assumption that food availability might increase parasite density, bugs from xenodiagnosis have been refed at biweekly intervals on chicken blood. 3. Infectivity rates and positives harbouring large parasite yields were based on gut infections, in which the parasite population comprised of all developmental forms was more abundant and easier to detect than in fecal infections, thus minimizing the probability of recording false negatives. 4. Since parasite density, low in the first 15 days of infection, increases rapidly in the following 30 days, the interval of 45 days has been adopted for routine examination of bugs from xenodiagnosis. By following the enumerated measures, all aiming to reduce false negative cases, we are getting closer to a reliable xenodiagnostic procedure. Upgrading the efficacy of xenodiagnosis is also dependent on the xenodiagnostic agent. Of 9 investigated vector species, Panstrongylus megistus deserves top priority as a xenodiagnostic agent. Its extraordinary capability to support fast development and vigorous multiplication of the few parasites, ingested from the host with chronic Chagas' disease, has been revealed by the strikingly close infectivity rates of 91.2% vs. 96.4% among bugs engorged from the same host in the chronic and acute phase of the disease respectively (Table V), the latter comporting an estimated number of 12.3 x 10[raised to the power of 3] parasites in the circulation at the time of xenodiagnosis, as reported previously by the authors (1982).
Resumo:
Lutzomyia furcata transmitted Leishmania chagasi to a hamster 10 days after being experimentally fed on an infected spleen. An individual female Psychodopygus carrerai carrerai that had fed on a hamster lesion caused by Leishmania mexicana amazonensis transmitted this parasite 6 days later to another hamster. Transmission electron microscopy of this fly's head revealed a small number of degenerate promastigotes in the foregut, but only a few were attached.
Resumo:
Experimental techniques that we have found useful during our studies of insect blood-feeding behaviour are reviewed. Some of the principal findings resulting from these techniques are discussed. Where directly applicable, the work of others is included, but no complete review of the subject has been attempted.
Resumo:
This paper continues a discussion of approaches and methodologies we have used in our studies of feeding in haematophagous insects. Described are techniques for directly monitoring behaviour: electrical recording of feeding behaviour via resistance changes in the food canal, optical methods for monitoring mouthpart activity, and a computer technique for behavioural event recording. Also described is the use of "flow charts" or "decision diagrams" to model interrelated sequences of behaviours.
Resumo:
This review takes into account primarily the work done in our laboratory with insects from the major Holometabola orders. Only the most significant data for each insect will be presented and a proposal on the evolution of Holometabola insect digstive systems will be advanced.
Resumo:
Columnar cell apical membranes (CCAM) in series with goblet cell apical membranes (GCAM) form an electroosmotic barrier separating the midgut lumen from epithelial cell cytoplasm. A unique K+ ATPase in GCAM generates three gradients across this barrier. A greater than 180 mV electrical gradient (lumen positive) drives amino acid uptake through voltage-dependent K+ symports. A greater than 1000-fold [H+] gradient (lumen alkaline) and a greater than 10-fold [K+] gradient (lumen concentrated) are adaptations to the high tannin and high K+ content, respectively, in dietary plant material. Agents which act on the apical membrane and disrupt the PD, H+, or K+ gradients are potential insecticides. Insect sensory epithelia and mammalian stria vascularis maintain similar PD and K+ gradients but would not be exposed to ingested anti-apical membrane insecticides. Following the demonstration by Sacchi et al. that Bacillus thuringiensis delta-endotoxin (Bt) induces specifically a K+ conductance increase in CCAM vesicles, we find that the K+ channel blocking agent, Ba2+, completely reverses Bt inhibition of the K+-carried short circuit current in the isolated midgut of Manduca sexta. Progress in characterizing the apical membrane includes finding that fluorosulfonylbenzoyladenosine binds specifically to certain GCAM polypeptides and that CCAM vesicles can be mass produced by Ca2+ or Mg2+ precipitation from Manduca sexta midgut.
Resumo:
In the course of their coevolution with insects, plants have learnt to protect themselves by chemical means. Semiochemical act as antifeedants or deterrents, others by disrupting growth and development. By use of the Epilachna varivestis bioassay we isolated from Azadirachta indica seed a group of triterpenoids which interfee with larval growth and development in ppm range. Main components are the azadirachtins A and B with identical biological activity. Various other azadirachtins were obtained, either as minor seed components or by chemical modification of the naturally occuring compounds. Structure vs. activity relation studies enabled us to postulate a basic structural element that should still be biologically active and with much simpler chemical structure than natural compounds. What underlies the biological activity of these insect growth inhibitors? Their interference with the hormonal regulation of development and reproduction has been studied in Locusta migratoria and Rhodnius prolixus. In addition, tritiated dihydroazadirachtin A was used. With this approach, a precise correlation between administered dose, resulting effects, and retention of the compound was established. The azadirachtins either interrupt, delay, or deviate whole developmental programs. Results from these studies provide another chemical probe for studies in insect endocrinology and physiology.
Resumo:
Monogenetic insect trypanosomatids of the genera Crithidia, Leptomonas and Herpetomonas, multiplied as in axenic cultures, for many months, in the lumen of the scent glands of the opossum Didelphis marsupialis. Specific antibodies were detected in the serum of the animals but there was no evidence of invasion of their tissues by the parasites.