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Man-biting species of Chrysops meigen, Culicoides latreille and Simulium latreille in Ethiopia, with discussion of their vector potentialities.

Human filariasis and its vectors are little known in Ethiopia. Wuchereia bancrofti is confined to the western lowlands and cannot be the aetiological agent of elephantiasis in the highlands. Onchocerca volvulus is widespread in the south-western highlands. Loa loa and Dipetalonema perstans are reported here for the first time and appear to be uncommon. Studies were conducted in 1973, mostly near Jimma in Kaffa Province, on potential vectors of all but the first of these parasites. Among Simuliidae, the only blackflies of apparent medical importance were S. woodi ethiopiense and a possibly new member of the S. damnosum complex. The former is less seasonal and much less numerous than the latter, but may be more widespread and important along smaller and higher streams. Onchocerca larvae were recovered from "damnosum", but not from the small number (46) of ethiopiense examined. In August, at the height of the rainy season, the biting-rate of ethiopiense at 1,710 m altitude on the Gilgil Ghibe river reached 9.5/man-hour at 10-1100 hours and about 12/man-hour at 14-1600 hours. At the same time and place, the attack of "damnosum" reached a midday climax of about 1,800/man-hour; this peak could be delayed or suppressed by rain. Another possibly anthropophilic blackfly, S. dentulosum, tended to become most common in December afer the rainy season had passed, but proved incompetent to bite man successfully. The only feasible loiasis vector found in Ethiopia was Chrysops streptobalius; however, this tabanid was not closely associated with man. Up to 34/man-day were caught in watermeadows by the Gojeb river (altitude 1,160 m) in October. Man-biting species of Ceratopogonidae in various parts of Ethiopia were Culicoides fulvithorax, C. grahamii, C. kingi and C. milnei. The first two of these were anthropophilic in lowlands, but apparently not so in highlands. C. milnei was extremely abundant biting man highlands. C. milnei was extremely abundant biting man and domestic animals both indoors and outdg cycle was irregular, usually displaying a succession of ill-define nocturnal peaks; sometimes it attacked in daylight. Up to 35,000 C. milnei per trap-night were caught in light traps. Most of the females entering light traps in a stable were already engorged with blood. It seemed very likely that C. milnei would prove to be of veterinary importance. No firm indication was obtained as to what may transmit D. perstans in Ethiopia.

Animals↗

Domiciliary biting frequency and blood ingestion of the Chagas's disease vector Rhodnius prolixus Ståhl (Hemiptera: Reduviidae), in Venezuela.

Demolition of a rural house in the State of Cojedes, Venezuela, provided a collection of 7.934 Rhodnius prolixus of which a random sample of 1,415 was weighed within 48 hours. The field weights, coupled with laboratory information of weight loss (in %) with time, average blood ingestion and meal size sufficient to promote moulting, were used to estimate biting rate under domiciliary conditions. The results show that in this particularly highly infested house, the R. prolixus population bites, on the average, at a rate of 58 times/person/day, draining blood at a rate of about 100 cm3/person/month; this meant a total of 1.2 litres/month from the 11 people inhabiting the house. It was found that the more advanced R. prolixus is in its development, the more aggressive it is in securing its meal: 15, 25, 30, 59 and 77% of fed insects of instar 1 through 5, respectively, were able to achieve moulting with only one meal. Applying the estimated biting rate to R. prolixus collections of other 13 demolished houses, with more typical insect population densities, an average biting rate of 9 bites/person/day was obtained; this value was, however, extremely variable, ranging from 0.2 bites/person/day (once every five days) to 33 bites/person/day.

Animals↗

Cutaneous leishmaniasis in Kenya: transmission of Leishmania major to man by the bite of a naturally infected Phlebotomus duboscqi.

One leishmanial stock was isolated from a Phlebotomus duboscqi female captured in Baringo District, Kenya, and others from papular lesions that developed at sites where this sandfly had fed on a man. When characterized by cellulose acetate electrophoresis (eight enzymes examined), these isolates proved to be identical to known Leishmania major strains from man and a rodent (Arvicanthis sp.) and different from L. donovani and L. adleri, which also occur in Baringo. This is the first case of human cutaneous leishmaniasis caused by L. major reported from Kenya.

Electrophoresis, Cellulose Acetate↗

Laboratory transmission of Leishmania infantum to Rattus rattus by the bite of experimentally infected Phlebotomus perniciosus.

The role of the sandfly species Phlebotomus perniciosus Parrot in laboratory transmission of Leishmania infantum was investigated. One of the wild reservoirs of the disease, the black rat (Rattus rattus), was used as vertebrate host. The parasite was transmitted by the bite of experimentally infected P. perniciosus to the black rat which, six months later, was infective to the same sandfly species. These experimental data confirm the role of P. perniciosus in the transmission of L. infantum, as suggested by earlier studies based on epidemiological data.

Animals↗

Studies on the biology of Simuliidae (Diptera) at the Santiago onchocerciasis focus in Ecuador, with special reference to the vectors and disease transmission.

A survey showed the presence of seven simuliid species in the onchocerciasis focus in Ecuador Simulium exiguum and S. quadrivittatum were the two most common anthropophilic species and were shown to be both experimental and natural vectors of Onchocerca volvulus. S. antillarum only occasionally bit man. Observations were made on the biology of the two vector species and it was evident that S. exiguum was the primary vector of onchocerciasis in the rainy season. The relevance of these findings to the epidemiology and control of onchocerciasis in Ecuador are discussed.

Animals↗

Factors affecting transmission of Wuchereria bancrofti by anopheline mosquitoes. 1. Uptake of microfilariae.

Ingestion of Wuchereria bancrofti microfilariae (mf) from humans by 639 Anopheles gambiae, 557 An. arabiensis, 117 An. melas and 9 An. funestus was investigated. The mf densities in blood fell into 3 groups; 0-32mf/ml, 107-122 mf/ml and 421-1140 mf/ml. In An. gambiae and An. arabiensis percentage of mosquitoes ingesting mf was strongly associated with mf density in host blood; in An. melas the association was much weaker. Mean number of mf ingested per mosquito was also strongly correlated to mf density in An. gambiae and An. arabiensis but not in An. melas. At low mf densities both An. gambiae and An. arabiensis concentrated mf, with concentration decreasing as density increased. From regression analysis, observed and expected uptake of mf would be equal at 622.9 mf/ml in An. gambiae and 391.6 mf/ml in An. arabiensis.

Adult↗

Epidemiology of poisoning.

Despite difficulties in the interpretation of available data, certain general observations can be made on the epidemiology of poisioning. Childhood poisoning is usually accidental and tends to be associated with a low morbidity and mortality. In Western Europe and North America, it is most often due to household products and pharmaceuticals; in developing countries, paraffin, traditional medicines , snakes bites and insect stings are more commonly involved. In adults, self-poisoning is usually deliberate (suicide or parasuicide) and has a higher morbidity and mortality rate. Analgesics and psychotropics predominate in Western Europe and North America as causes of admission to hospital, though carbon monoxide is responsible for most deaths (the majority of which occur outside hospital). In developing countries, accidental and deliberate pesticide poisoning is probably the commonest cause of adult deaths.

England↗

Susceptibility of African buffalo and Boran cattle to Trypanosoma congolense transmitted by Glossina morsitans centralis.

Four African buffalo (Syncerus caffer) and four Boran cattle (Bos indicus) were each exposed to the bites of 10 tsetse flies infected with Trypanosoma congolense. Although both groups of animals became infected, the buffalo showed no clinical signs of trypanosomiasis while the cattle suffered from the disease characterized by pronounced skin reactions, high parasitaemia and severe anaemia. The prepatent periods in the buffalo varied from 18 to 27 days in comparison with 11 to 14 days in the cattle. In the buffalo, skin reactions were only detectable by histological examination of skin biopsies, the peak of parasitaemia was at least a hundredfold below that in cattle and after 54 days parasites were no longer detected. In contrast, the cattle had a continuous high parasitaemia until they were treated with a trypanocidal drug 60 days after infection. Neutralizing antibody to metacyclic trypanosomes appeared in the buffalo during the prepatent period, 15-20 days after infection, whereas in cattle neutralizing antibody was not detected until 10 days after the first peak of the parasitaemia, 25-30 days after infection.

Animals↗

Biting behavior and Plasmodium infection rates of Anopheles arabiensis from Sille, Ethiopia.

The man-biting behavior and Plasmodium infection rates of anopheline mosquitoes were investigated in Sille, a hyperendemic malarious area in southern Ethiopia. Seven Anopheles species were identified from all night landing collections, conducted from 18:00 to 06:00h between October 2001 and August 2002. The predominant species was Anopheles arabiensis (55.8%), followed by Anopheles coustani (31.5%), Anopheles pharoensis (9.5%), Anopheles funestus (2.2%), Anopheles nili (0.5%), Anopheles marshallii (0.4%) and Anopheles demeilloni (0.2%). Dissection of A. arabiensis showed an average parous rate of 73.2%. A large proportion of the parous mosquitoes were caught biting in the latter part of the night. Malaria sporozoite rates were determined by ELISA for A. arabiensis, with 0.5% (4/796) infective with Plasmodium falciparum and 1.76% (14/796) with Plasmodium vivax; there were no mixed infections. From our small sample of sporozoite positives we found no association between biting behavior and sporozoite infection status.

Animals↗

A plant-based repellent protects against Tunga penetrans infestation and sand flea disease.

Tungiasis is a parasitic skin disease prevalent in impoverished populations in the tropics and associated with considerable morbidity. Treatment options are limited and prophylaxis has never been attempted. We assessed the effectiveness of a plant-based repellent to prevent infestation with Tunga penetrans and sand flea disease in an urban squatter settlement in Fortaleza, Northeast Brazil. Two cohorts were formed. One cohort started with the intervention while another served as control. The plant-based repellent Zanzarin was applied twice daily on the skin of the feet. After 4 weeks and a wash-out-phase of another 2 weeks, cross-over was performed. Study members were examined twice per week for the presence of newly embedded sand fleas. The number of viable and dead sand fleas and the total number of sand flea lesions were determined. Sentinel rats were used to assess local transmission dynamics. Outcome measures were the number of newly embedded sand fleas per individual per day, number of sand flea lesions per individual according to the stage, as well as type and degree of clinical pathology. Zanzarin applied twice daily on the feet reduced the number of newly embedded fleas by 92% (interquartile range 81-100%), the total number of lesions by 87% (81-98%) and reversed tungiasis-associated clinical pathology almost completely. In conclusion, in a setting in which tungiasis is an important health threat, the daily application of a plant-based repellent prevented the infestation with T. penetrans and sand flea disease.

Administration, Topical↗

[Mosquito bites allergy, which prevention?].

Mosquito bites may induce allergic reactions in children. Usually underestimated, these reactions are often cutaneous and difficult to distinguish from non-specific histaminic phenomena. Recently, the identification of major allergens in mosquito saliva has allowed the achievement of recombinant allergens, which should facilitate the diagnosis and treatment of allergic reactions. Preventive cares must be performed in all children with large reactions, allergic or even non-allergic. Prevention consists in cutaneous protection, the use of repellents (with special attention to their toxicity), and antihistamines. A practical sheet for patient is provided.

Allergens↗

Malaria: control strategies, chemoprophylaxis, diagnosis, and treatment.

Malaria caused by Plasmodium falciparum continues to be the principal medical threat to travelers in tropical zones. Eighty percent of malaria cases occur in sub-Saharan Africa. Prevention capacity nears 100%. In the event of infection, early diagnosis and bitherapy (treatment that includes two different active molecules) provide a nonfatal outcome. The greatest risk occurs in the weeks after returning home. The history of malaria has shown that it is important to anticipate the evolving nature of the disease and to be able to respond to it in a timely fashion. The efficiency of preventive treatments should lead toward the goal of zero malaria cases when dealing with travelers; however, virtually all empiric experience indicates that this goal rarely is reached.

Animals↗

Repellent activity of five essential oils against Culex pipiens.

Essential oils extracted from the seeds of anise (Pimpinella anisum), dried fruits of eucalyptus (Eucalyptus camaldulensis), dried foliage of mint (Mentha piperita) and basil (Ocimum basilicum) and fresh foliage of laurel (Laurus nobilis) were tested for their repellency against the adult females of Culex pipiens. All essential oils showed repellency in varying degrees, eucalyptus, basil and anise being the most active.

Animals↗

Prevention of arthropod-related disease.

Arthropods of medical importance include vespids, ticks, mosquitoes, mites, flies, and fleas. They spread illness as disease vectors, are associated with lethal allergic reactions, and produce potentially deadly toxins. Strategies for prevention of illness include avoidance, vector reduction programs, chemoprophylaxis, and repellents. Strategies must be tailored to regional risks.

Anaphylaxis↗

Ethnobotanical survey and testing of plants traditionally used against hematophagous insects in Eritrea.

An ethnobotanical study was conducted to find plants traditionally used against nuisance insects in three regions of Eritrea: highland, eastern escarpment and wet lowland. Six plants were collected, two of them were reported to be used against mosquitoes (Ocimum forskolei, Lamiaceae and Nicotiana glauca, Solanaceae), two others against fleas (Salvia shimperi, Lamiaceae and Otostegia integrifolia, Lamiaceae) and Neorautanenia mitis (Fabaceae) and Calpurnea aurea (Fabaceae) against animal lice. The effect of fresh leaves and shoots of O. forskolei hanging on walls at the head and foot of beds was tested in Eritrea against Anopheles arabiensis and 53% reduction in mean number of mosquitoes per house was achieved. Blood meals of mosquitoes collected from houses and pit shelters were analysed to determine whether biting diversion occurred due to the use of plants in the houses. No diversion of biting was observed to goats, which are abundant in the test area. Hot water distillates of N. glauca, S. schimperi and O. integrifolia were tested against An. gambiae s.s. in the laboratory using a Hemotek membrane blood feeder with pig skin replacing the parafilm membrane. The approximate doses in microl/cm(2) for 50% repellency with the extracts of S. schimperi, N. glauca and O. integrifolia were 0.97, 1.72 and 2.44, respectively. Even though the plants only achieved partial protection, they have a potential for widespread use as a complement to other control methods.

Adult↗