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1.
After inoculating inbred Lewis rats with infective larvae of Brugia pahangi, we found consistently that patent infection was established in only about two-thirds of experimental animals. To determine which aspects of the host response were responsible for this differential susceptibility to infection, we evaluated all animals with respect to blood leukocyte levels, antifilarial IgG and IgE antibody production, and specific lymphocyte responses to mitogens and filarial antigens during the first 50 weeks of infection. In the critical “prepatent” period of infection, each of these responses developed in an essentially identical fashion in the infected and resistant groups except for the production of specific IgE antibodies. While those animals destined to resist infection developed specific IgE antibodies between Weeks 5 and 8, none of the animals that became microfilaremic showed a similar IgE response. These findings suggest that the development of specific IgE antibodies played a role in protecting the animals from acquiring filarial infection.  相似文献   

2.
Eleven of 15 ferrets experimentally infected with Brugia malayi became amicrofilaremic after a brief patency; only four ferrets remained patent after 6 months of infection and two of these ferrets developed a high, persistent microfilaremia. Blastogenic responses of peripheral blood lymphocytes to antigens of microfilariae (mf), assayed in vitro, demonstrated an antigen sensitivity at prepatent, patent and postpatent periods of infection. Lymphocytes from ferrets with high microfilaremia had elevated background responses in culture which were directly correlated with the number of circulating mf. This background response was attributed to antigenic stimulation by mf present in the lymphocyte cultures; addition of mf to cultures of lymphocytes from postpatent ferrets induced responses equivalent to those observed in microfilaremic ferrets. Lymphocyte responses to the mitogen, concanavalin A, did not differ significantly among microfilaremic, amicrofilaremic and uninfected ferrets. Antibody in IgG to antigens of mf measured by ELISA and by immunoblots from SDS-PAGE showed similar patterns of response in ferrets which became amicrofilaremic and in the few ferrets which remained microfilaremic. prausnitz-Kustner tests demonstrated no consistent differences in titers to microfilarial antigens between patent and amicrofilaremic ferrets. The results suggest a high level of immune responsiveness to antigens of mf in infected ferrets with no evidence of immunosuppression associated with prolonged microfilaremia or of major changes in immune responses with development of amicrofilaremic infections.  相似文献   

3.
One hundred Brugia pahangi infective larvae (L3) caused microfilaremic (mf + ve) infection in 56% of inbred PVG rats. Adult worms were recovered consistently from infected rats but worm recovery was very low, only 1-3% of L3 inoculated survived to adulthood and the worms were dispersed in a wide range of anatomical sites. This suggested that lack of microfilaremia may be due to the low probability of male and female worms meeting in the same site and thus may be numerically and topographically based. When the number of infective larvae inoculated was increased to 500, the percentage of mf + ve infections in rats also increased to 94%, corroborating the hypothesis that lack of mf was not due to an immune response. In a further experiment all infected rats had lost both mf and adult worms by day 420. It has yet to be established whether final rejection of the parasite is due to immunity.  相似文献   

4.
To study immunological responses in chronic filarial infections, a model utilizing inbred Lewis rats infected with Brugia pahangi was developed. Microfilaria were found in the bloodstream of over 90% of the rats by 16 weeks of infection. Using in vitro lymphocyte blastogenesis, cell-mediated immune responses of blood, splenic, and mesenteric node lymphocytes were followed during 1.5 years of infection. Lymphocyte responses to antigen prepared from infective stage filarial larvae were detectable in the early weeks of infection, whereas responses to microfilarial antigen only developed late as microfilaremia waned. Lymphocyte responses to antigen from adult filaria vacillated during the infection. With the mitogens, phytohemagglutinin, pokeweed mitogen, and bacterial lipopolysaccharide, periods of B and T-cell hyporesponsiveness were demonstrable. Between 16 and 36 weeks of infection node lymphocytes from many rats were unresponsive to all mitogens and antigens. The model of B. pahangi in inbred rats offers advantages for immunological studies of filarial infections.  相似文献   

5.
Twenty male hamsters were inoculated with 95 to 150 infective larvae of B. pahangi via the subcutaneous route. Worms recovered from 19 hamsters averaged 14% (0–32) from 11 hamsters killed at 105–195 days after infection and 16% (5–19) from 8 hamsters examined at 23–45 days after infection. Approximately one-half of the worms recovered were from the lymphatic vessels of the testes, epididymis, and spermatic cord. A few were found in afferent or efferent vessels of regional lymph nodes. The remaining worms were from the heart and lungs. Low-level microfilaremias were observed in 10 of 12 hamsters held for over 100 days. The average prepatent period was 89 days (65–128). Worms were recovered for up to 3 weeks following inoculation of nine hamsters via the intraperitoneal route with 100–400 infective larvae of B. pahangi.Gross lymphatic pathologic lesions consisted of moderate to marked dilation of lymphatic vessels, enlargement of regional lymph nodes, and numerous lymphthrombi and emboli. Macroscopic changes were most consistent and severe in the lymphatic vessels of the testes, epididymis, and spermatic cord and were noted less frequently in the afferent or efferent vessels of various regional lymph nodes. Areas of reddish discoloration were observed frequently on the serosal surface of the lung in infected hamsters.  相似文献   

6.
Previous studies have shown that intradermally (ID) injected Brugia pahangi L3s migrate through various tissues and into the lymphatics of gerbils in a distinct pattern. Excretory/secretory products (ES) produced at the time of invasion of B. pahangi are likely to be important in this early migration phase of the parasite life cycle in their rodent host. Hence, early L3 ES was collected from 24 h in vitro cultures of B. pahangi L3 larvae and used in immunization experiments to investigate the effect of immunity to early L3 ES on worm migration, survival and development of B. pahangi. Immunization of gerbils with ES in RIBI adjuvant produced antibodies to numerous ES proteins eliciting a strong humoral response to ES and indirect fluorescent antibody (IFA) assay using anti-ES serum recognized the ES proteins on the surface of B. pahangi L3 larvae. Following ES immunization, gerbils were challenged either ID or intraperitoneally (IP) with 100 L3s of B. pahangi and euthanized at 3 or 106 days post inoculation (DPI). Immunization with early ES slowed the migration of ID inoculated L3 at 3 DPI and significantly altered the locations of adult worms at 106 DPI. Immunization did not induce protection in any treatment group. However, immunized animals had significantly fewer microfilariae per female worm suggesting the antigens in ES are important in microfilariae development or survival in the host. The number of lymphatic granulomas was also significantly reduced in ES immunized animals. It is important to note that microfilariae serve as a nidus in these granulomas. Our results shows immunization with early Brugia malayi L3 ES alters the worm migration, affects circulating microfilarial numbers and reduces lymphatic granulomas associated with B. pahangi infection in gerbils.  相似文献   

7.
In order to identify the eosinophil hyporesponsiveness factor in the microfilaremic host, stage-specific monoclonal antibodies against microfilariae (Mf) of Brugia pahangi were produced. One of these (MfG2a) was established for the first time as a monoclonal antibody of IgG2a isotype against Mf. MfG2a recognizes the eosinophil hyporesponsiveness factor, the 42 kDa excretory/secretory antigen of Mf. Treatment of MfG2a significantly (P < 0.05) induced eosinophil response with rapid reduction of microfilaremia in previously Mf injected mice which became amicrofilaremic within 2 weeks. Eosinophil hyporesponse was observed in the control microfilaremic mice and the microfilaremia persisted at high levels. Another monoclonal antibody, MfG1 of the IgG1 class, recognized the 64-kDa surface antigen of Mf, MfG1 was less effective in eosinophil response- or microfilaremia reduction. These data suggest that the 42-kDa microfilarial excretory/secretory antigen might be responsible for the eosinophil hyporesponsiveness in B. pahangi Mf injected mice.  相似文献   

8.
We report a comprehensive study of the infectivity of Brugia pahangi in male and female rats of eight different inbred strains. A single infection of any inbred rat strain will produce rats that become microfilaremic, have occult infection, or clear the primary infection. The proportion belonging to any category is determined by the basic susceptibility level of that strain. Patency rates (blood microfilaria+) ranged from 24% (AO rats) to 73% (WKA rats). The period for which microfilaria were in the circulation was directly related to microfilarial burden, with rats carrying less than 50 mf/ml of blood patent for 11.8 weeks +/- 12.2; for 50-499 mf/ml it was 37.6 +/- 14.8 and for 500+ mf/ml it was 63.3 +/- 34.2 weeks. Suckling rats were resistant to infection (0 patent) and weanlings were intermediate in resistance between suckling and adult rats. Female rats were highly resistant to infection. Approximately half of amicrofilaremic rats have occult infections. A high proportion of patent infections involve the testes or testicular lymphatics. In the most susceptible rat strains, more than 95% of the administered L3 or developing L4 parasites were killed within 28 days. During the course of the first 6 months, the ratio of males to females fell significantly, suggesting a shorter life span in male worms. The features of the infectivity/patency patterns in rats are compared with recognized patterns obtaining in human populations. We conclude that rats provide a valuable and underutilized model for the experimental analysis of filarial infections.  相似文献   

9.
Sixteen male hamsters were inoculated subcutaneously with 95 to 150 infective larvae of B. pahangi and were examined for histopathologic lesions at 39–109 days postinfection. The basic microscopic lesion observed was obstructive granulomatous lymphangitis. Analogous lymph node changes sometimes occurred along with lymphoreticular hyperplasia and increased numbers of eosinophils. Cellular infiltration of perivascular and perinodal tissues was common, with plasma cells and eosinophils predominating. Genital lesions included funiculitis, epididymitis, and mild orchitis. Live and dead worms were found in the testicular parenchyma. Pulmonary changes in hamsters infected more than 105 days included multiple small, granulomatous foci and periarteriolar, peribronchiolar, and subpleural cellular accumulations of plasma cells and eosinophils. Granulomatous obstruction of pulmonary arteries associated with dead worms was observed in two hamsters infected for 39–45 days and in one hamster infected for 109 days. Small liver granulomas were common. Disintegrating microfilariae occurred within giant cells in the lymph nodes, spleen, lungs, and testes.  相似文献   

10.
The relationship between mosquito vectors and lymphatic filariasis (LF) parasites can result in a range of transmission outcomes. Anophelines are generally characterized as poor vectors due to an inability to support development at low densities. However, it is important to understand the potential for transmission in natural vectors to maximize the success of elimination efforts. Primary vectors in Papua New Guinea (n = 1209) were dissected following exposure to microfilaremic blood (range 8–233 mf/20 µl). We examined density dependent and species-specific parasite prevalence, intensity and yield, barriers to parasite development as well as impacts on mosquito survival. We observed strikingly different parasite prevalence and yield among closely related species. Prevalence of infective stage larvae (L3s) ranged from 4.2% to 23.7% in An. punctulatus, 24.5% to 68.6% in An. farauti s.s. and 61.9% to 100% in An. hinesorum at low and high density exposures, respectively. Injection experiments revealed the greatest barrier to parasite development involved passage from the midgut into the hemocoel. The ratio of L3 to ingested mf at low densities was higher in An. hinesorum (yield = 1.0) and An. farauti s.s. (yield = 0.5) than has been reported in other anopheline vectors. There was a negative relationship between mosquito survival and bloodmeal mf density. In An. farauti s.s., increased parasite yield and survival at low densities suggest greater competence at low microfilaremias. In Papua New Guinea the likelihood of transmission will be strongly influenced by vector composition and changes in the mf reservoir as a result of elimination efforts. Global elimination efforts will be strengthened by the knowledge of transmission potential in the context of current control measures.  相似文献   

11.
Brugia pahangi has been found to be primarily a lymphatic-dwelling parasite in jirds when infections are induced by the subcutaneous injection of infective larvae or by allowing infected Aedes aegypti to feed.Migration to the regional lymphatics occurred as early as 1–4 days. Although some injected larvae remained in the skin for as long as 30 days and some became localized in the heart, lungs, pleural cavity, or peritoneal cavity, about three-fourths of the recovered filariae were found in the regional lymphatics. In contrast, when larvae were injected peritoneally they remained largely in the peritoneal cavity for at least 30 days.The relevant lymphatics and their drainage patterns in jirds have been described.The major pathological changes noted in jirds involved the regional lymphatic vessels and nodes, which were severely affected when they contained dead worms. Pulmonary granulomas due to dead microfilariae and occasionally to dead larvae or adult worms were noted.Observations are included on the susceptibility and course of B. pahangi infections in jirds.  相似文献   

12.
Egg-induced granulomas formed in mice with chronic Schistosoma mansoni infection are smaller than those which develop during early (8-week) infection. Adoptive transfer of spleen cells from chronically infected mice (15–25 week), which displayed modulated granulomas, to 6-week-infected recipients effectively suppressed active granuloma formation in the recipients by 8 weeks after infection. Pretreatment of these suppressive spleen cells with anti-Thy 1.2 serum and complement eliminated their suppressive capacity. Administration of cyclophosphamide (CY) (20 mg/kg, 3 times/week for 3 weeks) to 12- to 15-week-infected mice reversed modulation of granuloma formation resulting in larger granulomas at 15 weeks. This abrogation of suppression was reflected in the spleens of the CY-treated mice, as seen by the inability of their spleen cells to adoptively transfer suppression to 6-week-infected mice. This regimen of CY treatment did not significantly alter anti-schistosome egg antigen hemagglutinating antibody titers. It is reasoned that the modulation of granuloma formation observed during chronic schistosomiasis mansoni is in part dependent upon a T lymphocyte and a CY-sensitive spleen cell.  相似文献   

13.
Infective larvae of Dipetalonema gracile, which had developed in Culicoides hollensis, were inoculated into 4 laboratory-born squirrel monkeys, Saimiri sciureus. Weekly blood sampling revealed the mean prepatent period to be 297 days. All 4 monkeys developed patent infections in which peak microfilaremias were reached 13 to 18 wk after patency. Two laparotomies, performed at 27 and 64 wk, were conducted to evaluate pathological involvement and, at that later time, to recover adult parasites. Slight capsular fibrosis was observed on the spleen of 2 of the animals but fibrous adhesions were absent. Microfilaremias in the 4 monkeys ranged from 15 to 250 mf/20 mm3 of blood and the number of adult parasites recovered varied from 7 to 13. However, the level of microfilaremia did not correlate directly to the number of adult parasites recovered.  相似文献   

14.
The melanization response of Aedes trivittatus and the Rockefeller (RKF) and black-eyed Liverpool (LVP) strains of Aedes aegypti against intrathoracically inoculated Dirofilaria immitis and Brugia pahangi microfilariae (mff) was investigated. All mff of either species were melanized in A. trivittatus following Day 2 postinoculation, and the response of this species was significantly more rapid and effective than either strain of A. aegypti. The refractory RKF strain had a significantly greater response against both D. immitis and B. pahangi than the highly susceptible LVP strain, but data suggest that the increased responsiveness was due to a physiologic incompatibility in RKF A. aegypti, thereby resulting in a greater mortality and subsequent melanization of inoculated mff. Inoculation of large numbers of mff overloaded the defense capabilities of A. aegypti (LVP), but not those of A. trivittatus. The melanization response against D. immitis mff was effectively reduced for up to 4 days in A. aegypti (LVP), but for only 1 day in A. trivittatus, when mosquitoes were maintained on a 0.3 m sucrose diet containing from 0.1 to 1.0% (w/v) phenylthiourea.  相似文献   

15.
Group A rotaviruses are major pathogens causing acute gastroenteritis in children and animals. To determine if group A rotavirus replicates and induces disease in rats, antibody-negative Lewis neonatal or adult rats were inoculated orally with tissue culture-adapted human (Wa, WI61, and HAL1166), simian (rhesus rotavirus [RRV] and SA11), bovine (WC3), lapine (ALA), or porcine (OSU) rotavirus strains, wild-type murine (EC(wt)) rotavirus strain, or phosphate-buffered saline (PBS). Rotavirus infection in rats was evaluated by (i) clinical findings, (ii) virus antigen shedding or infectious virus titers in the feces or intestinal contents measured by enzyme-linked immunosorbent assay or fluorescent-focus assay, (iii) histopathological changes in the small intestine, (iv) distribution of rotavirus antigen in small-intestine sections by immunofluorescence, and (v) growth rate. Rotavirus infection of 5-day-old but not > or =21-day-old rats resulted in diarrhea that lasted from 1 to 10 days postinoculation. The severity of disease and spread of infection to naIve littermates differed depending on the virus strain used for inoculation. The duration of virus antigen shedding following infection was considerably prolonged (up to 10 days) in neonatal rats compared to that in 21-day-old rats (1 or 2 days). Based on lack of virus antigen shedding and disease induction, the murine EC(wt) rotavirus was the only strain tested that did not infect rats. Histopathological changes in the small-intestine mucosa of 5-day-old RRV-inoculated rats but not of PBS-inoculated rats was limited to extensive enterocyte vacuolation in the ileum. In RRV-inoculated neonatal rats, rotavirus antigen was detected in the epithelial cells on the upper half of the intestinal villi of the jejunum and ileum. In addition, infection of neonatal rats with RRV but not with PBS resulted in reduced weight gain. Rats infected with group A rotaviruses provide a new animal model with unique features amenable to investigate rotavirus pathogenesis and the molecular mechanisms of intestinal development, including physiological factors that may regulate age-dependent rotavirus-induced diarrhea.  相似文献   

16.
The melanization response of Aedes trivittatus and the black-eyed Liverpool (LVP) and Rocke-feller (RKF) strains of Aedes aegypti against intrathoracically inoculated Brugia pahangi microfilariae (mff) that previously had penetrated LVP, RKF, or A. trivittatus midguts in vitro was assessed at 1, 3, and 5 days postinoculation (PI). LVP and RKF midgut-derived mff almost totally avoided the melanization response and developed normally in LVP strain A. aegypti, and although over 90% of these mff died by 5 days PI in RKF mosquitoes, the majority of these were not melanized. A. aegypti midgut-derived mff also were able to avoid the response of A. trivittatus in 33–43% of the cases. Penetration through A. trivittatus midguts, however, did not significantly affect the ability of mff to avoid the melanization response in any of the mosquitoes examined. Allogeneic and xenogeneic tissue inplants were accepted by all three mosquito species examined. Data presented support the hypothesis that mff avoid immune recognition in compatible mosquitoes by coating themselves with midgut material(s) during penetration of the midgut in their migration to the hemocoel.  相似文献   

17.
Although diethylcarbamazine citrate (DEC) is successful drug in eliminating human filariasis, yet, its mode of action is still debatable. Herein, the effect of DEC to treat albino rats infected with the animal filarial parasite Setaria equina was tested. Microfilarial (mf) counts and sections from liver, lung, kidney as well as spleen were investigated at different time points after treatment by light microscopy. After 45 and 300 min of treatment, a significant decrease in blood mf was observed accompanied by adherence of degenerated mf to both kupffer cells and leukocyte in liver sections. In lung sections, loss of sheath was observed at 45 min, while degeneration was observed at later time points. In kidney sections, more mf counts and less matrix were observed in the glomeruli at all time points after treatment. Degenerated mf were observed in spleen sections only at, late time point, 480 min after treatment. In conclusion, one of the possible mechanisms by which DEC reduces blood microfilarial count is trapping larvae in organs and killing them through cellular adherence.  相似文献   

18.
Euthymic mice, athymic nude mice, and mice treated with antithymocyte serum were infected with Plasmodium yoelii and immunized 10 days postinfection with pneumococcal polysaccharide (SSSIII). As a control, uninfected mice were also immunized with SSSIII. Splenic plaque-forming cells as well as serum antibody titers to SSSIII were measured 5 days after immunization. In infected euthymic mice, both plaque-forming cells (PFC) and serum antibody were severely depressed. In contrast, plaque-forming cells and serum antibody were approximately normal in infected nude mice and in infected mice treated with antithymocyte serum. Splenic adherent cells from infected euthymic mice failed to function as accessory cells in the in vitro antibody response to a second antigen, the sheep erythrocyte. Moreover, they lacked suppressor activity when cultured with spleen cells from uninfected mice. In contrast, adherent spleen cells from infected mice treated with antithymocyte serum displayed accessory cell function.  相似文献   

19.
To address Sin Nombre (SN) virus persistence in deer mice, we sacrificed experimentally infected deer mice at eight time points from day 21 to day 217 postinoculation (p.i.) and examined their tissues for viral nucleocapsid (N) antigen expression and both negative-strand (genomic) and positive-strand (replicative/mRNA) viral S segment RNA titers. All the animals that we inoculated developed persistent infections, and SN virus could be isolated from tissues throughout the course of infection. The transition from an acute to a persistent pattern of infection appeared to occur between days 60 and 90 p.i. Beginning on day 60 p.i., the heart, brown adipose tissue (BAT), and lung retained antigen expression and genomic viral RNA the most frequently. We found a statistically significant association among the presence of replicative RNA in the heart, lung, and BAT, widespread antigen expression (in > or =5 tissues), and RNA viremia. Of these three tissues, the heart retained negative-strand RNA and viral N antigen the most consistently (in 25 of 26 animals). During persistence, there were two distinct patterns of infection: restricted versus disseminated tissue involvement. Mice with the restricted pattern exhibited N antigen expression in < or =3 tissues, an absence of viral RNA in the blood, neutralizing antibody titers of < or =1:1,280 (P = 0.01), and no replicative RNA in the heart, lung, or BAT. Those with the "disseminated" pattern showed N antigen expression in > or =5 tissues, neutralizing antibody titers of 1:160 to 1:20,480, replicative RNA in the heart, lung, and BAT at a high frequency, and RNA viremia. Virus could be isolated consistently only from mice that demonstrated the disseminated pattern. The heart, lung, and BAT are important sites for the replication and maintenance of SN virus during persistent infection.  相似文献   

20.
The chronological development of pulmonary lesions due to subperiodic Brugia malayi and related species was studied in the jird, Meriones unguiculatus. Major pathologic changes included (1) granulomas induced by larvae and adults, (2) obstructive endarteritis, and (3) chronic interstitial inflammation with degenerating microfilariae. The majority of pulmonary granulomas were initiated near the time of the final molt, about 30 days postinoculation, followed by involution and formation of residual vascular lesions over the next several months. A minority of granulomas arose about sexually mature adult worms and showed a characteristic sequence of development along the length of these worms. Ultrastructural observations suggested that within granulomas internal structures of the worm underwent an autolytic-like disintegration, while the cuticle remained intact. A material, presumably of parasitic origin, then appeared between the cuticle and adherent epitheloid and giant cells and was subsequently phagocytized by these cells. Obstructive endarteritis appeared to peak at about the time of the final molt, and became largely fibrotic by 125 days postinoculation; electron microscopy of the subintimal infiltrates revealed a variety of cells including inflammatory cells and others interpreted as modfied cells of vascular origin (smooth muscle cells and two types of endothelial cells).Parasitological data suggested that both larvae and adults migrated to the lungs and that mating occurred here, rather than in peripheral sites of development. In terms of development, reproduction and survival, the pulmonary arteries of the male jird offered a suitable alternative for the localization of these primarily lymphatic filariae; our results thus suggest that the pulmonary localization of these worms should not be considered indicative of an aberrant mode of development. The failure of female jirds to develop detectable peripheral microfilaremia was associated with a high rate of infertility among female worms, rather than pulmonary sequestration or destruction of microfilariae.  相似文献   

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