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B Fried

Publications and source records attributed to B Fried.

At least 55 records · Page 3Linked to original sources

Echinostomiasis: a common but forgotten food-borne disease.

Human echinostomiasis, endemic to southeast Asia and the Far East, is a food-borne, intestinal, zoonotic parasitosis attributed to at least 16 species of digenean trematodes transmitted by snails. Two separate life cycles of echinostomes, human and sylvatic, efficiently operate in endemic areas. Clinical symptoms of echinostomiasis include abdominal pain, violent watery diarrhea, and anorexia. The disease occurs focally and transmission is linked to fresh or brackish water habitats. Infections are associated with common sociocultural practices of eating raw or insufficiently cooked mollusks, fish, crustaceans, and amphibians, promiscuous defecation, and the use of night soil (human excrement collected from latrines) for fertilization of fish ponds. The prevalence of infection ranges from 44% in the Philippines to 5% in mainland China, and from 50% in northern Thailand to 9% in Korea. Although the patterns of other food-borne trematodiases have changed in Asia following changes in habits, cultural practices, health education, industrialization, and environmental alteration, human echinostomiasis remains a health problem. The disease is most prevalent in remote rural places among low-wage earners and in women of child bearing age. Echinostomiasis is aggravated by socioeconomic factors such as poverty, malnutrition, an explosively growing free-food market, a lack of supervised food inspection, poor or insufficient sanitation, other helminthiases, and declining economic conditions. Furthermore, World Health Organization control programs implemented for other food-borne helminthiases and sustained in endemic areas are not fully successful for echinostomiasis because these parasites display extremely broad specificity for the second intermediate host and are capable of completing the life cycle without involvement of the human host.

Amphibians↗

Comparative observations on cercariae and metacercariae of Echinostoma trivolvis and Echinoparyphium sp.

Comparative observations were made on cercariae of Echinoparyphium sp. from Physa gyrina in Charlie's pond, Stokes County, North Carolina and cercariae of Echinostoma trivolvis from Helisoma trivolvis in Northampton County, Pennsylvania. The cercaria of Echinoparyphium sp. has 43 collar spines, lacks penetration and paraesophageal glands, and has a conical tail without fin folds. The cercaria of E. trivolvis has 37 collar spines, penetration and paraesophageal glands, a finger-like process at the tip of the tail and fin folds. The length of the cercarial body and tail of E. trivolvis was significantly greater than that of Echinoparyphium sp. Cercariae of both species encysted in Biomphalaria glabrata snails in single and concurrent infections. In concurrent infections with a single cercaria of each species, 2 encysted metacercariae were adjacent to each other in the saccular kidney of the snail at 24 hr postinfection. The diameter of encysted metacercariae of E. trivolvis was significantly greater than that of Echinoparyphium sp. Echinoparyphium sp. metacercariae excysted at 39 C in an alkaline trypsin-bile salts medium used previously to excyst E. trivolvis. The length of excysted metacercariae of E. trivolvis was significantly greater than that of Echinoparyphium sp.

Animals↗

Maintenance of the life cycle of Echinostoma trivolvis (Trematoda) in dexamethasone-treated ICR mice and laboratory-raised Helisoma trivolvis (Gastropoda).

Echinostoma trivolvis is a ubiquitous 37-collar-spined echinostome found in aquatic birds and mammals and in the planorbid snail Helisoma trivolvis. This echinostome has not been cycled continuously in the laboratory. The present report provides details on the continuous life cycle of E. trivolvis in dexamethasone-treated ICR mice and laboratory-raised H. trivolvis snails. Previous attempts to obtain patent adult of E. trivolvis in mice hosts failed because of worm injection within 2 weeks of infection. ICR mice infected with encysted metacercariae and injected with 2 mg/kg dexamethasone daily for 28 days yielded gravid worms that produced 250-500 eggs/worms at 21 and 28 days postinfection (p.i.). Miracidia derived from these eggs or eggs containing fully developed miracidia were capable of infecting 3- to 5-mm shell-diameter, laboratory-reared H. trivolvis snails. These snails released cercariae by 35 days p.i. Cercariae encysted in the kidney-pericardium of the snails. Encysted metacercariae could be excysted in vitro in an alkaline trypsin-bile salts medium or in vivo when fed to domestic chicks.

Animals↗

Chemoattraction and penetration of Echinostoma trivolvis and E. caproni cercariae in the presence of Biomphalaria glabrata, Helisoma trivolvis, and Lymnaea elodes dialysate.

A petri-dish bioassay was used to study the chemoattraction and penetration of the cercariae of Echinostoma trivolvis and E. caproni in the presence of snail dialysates from Helisoma trivolvis (Pennsylvania and Colorado strains). Biomphalaria glabrata, and Lynmaea elodes. Significant chemoattraction was seen with E. trivolvis cercariae in the presence of all snail dialysates released from nonperforated dialysis sacs with a molecular-weight exclusion of 12,000. Under the same conditions, E. caproni was significantly attracted to B. glabrata and H. trivolvis (CO strain) but not to L. elodes or H. trivolvis (PA strain). Dialysis sacs were perforated with needles to allow the release of snail substances of all molecular weights into the bioassay. Cercariae of both species were significantly attracted to all snail dialysates released from perforated sacs. Moreover, cercariae entered these sacs and penetrated the snails, and 24 h later the percentage of cysts per snail species ranged from 70% to 83% for E. trivolvis and from 73% to 93% for E. caproni. Dialysates released from intact sacs were extracted in choloroform-methanol (2:1) to obtain hydrophilic and lipophilic fractions. When these extracts were placed on agar plugs in the bioassay, the lipophilic fraction, but not the hydrophilic fraction, was mainly chemoattractive.

Animals↗

Effects of diet on the lipid composition of Echinostoma caproni (Trematoda) in ICR mice.

High-performance thin-layer chromatography (HPTLC) was used to determine neutral lipids and phospholipids in the intestinal trematode Echinostoma caproni from experimentally infected ICR mice fed a high-fat diet (hen's egg yolk) as compared with worms from mice fed a standard laboratory diet. Worms were removed from the hosts at 2, 3, and 4 weeks postinfection (p.i.). Analysis by TLC-densitometry showed significantly greater amounts of triacylglycerols and free sterols at 2, 3, and 4 weeks p.i. in worms from mice on the high-fat diet as compared with worms from mice on the standard laboratory diet. Significantly greater amounts of phosphatidylcholine and phosphatidylethanolamine were found in worms from mice on the high-fat diet as compared with worms from those on the standard diet at 2 weeks p.i. but not at 3 and 4 weeks p.i. The results of this study suggest that the host diet influences the lipid content of E. caproni adults.

Animals↗

Experimental infection of Rana pipiens tadpoles with Echinostoma trivolvis cercariae.

Studies were done on laboratory-raised Rana pipiens tadpoles experimentally infected with Echinostoma trivolvis cercariae. Tadpoles exposed individually to 250 cercariae died within 24 h. They were edematous at death and their kidneys were heavily infected with metacercarial cysts. Of 20 tadpoles exposed to 100 cercariae each, 9 survived the infection, and their growth was compared for 4 weeks postinfection (p.i.) with that of 20 control tadpoles that had not been exposed to cercariae. There was a significant weekly decline in the total length and body weight of the infected versus control tadpoles. Surviving tadpoles retained their metacercarial infections in the kidneys following metamorphosis to frogs. Following exposure of tadpoles to cercariae, cercarial bodies were first seen in the kidneys by 0.5 h p.i. Metacercariae that were molding their inner and outer cyst walls were first seen at 2.3 h, and by 8.5 h the inner and outer cyst walls were clearly defined. Domestic chicks exposed to cysts aged 2.5 and 4.0 h did not become infected, whereas ovigerous adults of E. trivolvis were recovered from chicks fed 12-h-old cysts. Cercariae aged 6 to 8 h were more infective to tadpoles than were either 1- or 20-h-old cercariae. The E. trivolvis-R pipiens tadpole model is suitable for the study of host-parasite relationships of echinostome larvae in a cold-blooded vertebrate host.

Animals↗

Infectivity and growth of Echinostoma revolutum (Froelich, 1802) in the domestic chick.

Infectivity and growth studies in domestic chicks were carried out on a strain of Echinostoma revolutum isolated from Lymnaea elodes snails in Indiana, U.S.A. Of 21 chicks, each fed 40 +/- 10 cysts of Echinostoma revolutum, 16 (64%) were infected with a total of 269 (32%) worms from approximately 840 cysts. Worms were found only in the ceca and rectum at 2-14 days p.i. In vivo excysted metacercariae were obtained in the lower ileum and ceca at 4 h p.i. Excysted metacercariae averaged 0.2 mm in length and 0.02 mm2 in body area. Worm length averaged 1.3 mm on day 6, 2.3 mm on day 8 and 3.6 mm on day 14. Mean body area averaged 0.29 mm2 on day 6, 0.62 mm2 on day 8 and 1.93 mm2 on day 14. Worms first became ovigerous on day 12. Growth of E. revolutum in the chick was delayed compared to previous findings on E. trivolvis, a closely related species of 37-collar-spined echinostome in the E. revolutum complex.

Animals↗

Low molecular weight hydrophilic chemicals that attract Echinostoma trivolvis and E. caproni cercariae.

A Petri dish bioassay was used to study chemoattraction of the cercariae of Echinostoma trivolvis and E. caproni in the presence of various bench chemicals prepared as 5 mM solutions in agar. The design compared the attraction of cercariae migrating toward the plugs impregnated with chemicals compared to unimpregnated plugs (controls). Cercariae of both species were significantly attracted to an array of amino acids and to some carbohydrates. Cercariae of E. trivolvis but not E. caproni were attracted to the peptide glutathione. Cercariae of E. trivolvis and E. caproni were repelled from valeric and butyric acids, respectively. Cercariae of E. caproni but not E. trivolvis were repelled from dextrose. Although broad specificity exists for echinostome cercarial penetration in snail intermediate hosts, results of these studies suggest that there are specific differences in cercarial chemoattractants between E. trivolvis and E. caproni.

Amino Acids↗

Comparative studies on excystation and morphological features of the metacercariae of Echinostoma paraensei and E. caproni.

Studies were done to determine specific differences between the metacercariae of Echinostoma paraensei and E. caproni. The percentage of excystation of E. caproni in an alkaline trypsin-bile salts medium was about 6x greater than that of E. paraensei. The body and acetabular length of excysted metacercariae of E. caproni were significantly greater (Student's t-test, P < 0.05) than those of E. paraensei. The length and width of encysted metacercariae of E. caproni were significantly greater than those of E. paraensei. The number of excretory concretions in both encysted and excysted metacercariae of E. caproni was significantly greater than that of E. paraensei. In conclusion, in vitro excystation data and morphometric light microscopic studies were useful in determining specific differences in the metacercariae of these 2 closely related allopatric species of 37-collar-spined Echinostoma.

Animals↗

Observations on Echinostoma revolutum and Echinostoma trivolvis in single and concurrent infections in domestic chicks.

Studies were done to determine specific differences between adults of Echinostoma revolutum and Echinostoma trivolvis grown singly and concurrently in domestic chicks. Worm recovery at 10-21 days post-infection (p.i.) of E. revolutum and E. trivolvis in singly infected chicks was 21 and 17%, respectively; in concurrent infections, worm recovery for E. revolutum and E. trivolvis was 21 and 16%, respectively. The body area of E. trivolvis was 1.5-2.0 times greater than that of E. revolutum at 10-21 days p.i. Most body organ measurements of the suckers and gonads at 10, 14 and 21 days p.i. were significantly greater in E. trivolvis compared with those of E. revolutum. The mean dry weight/worm at 14 days p.i. was 2.5 mg for E. trivolvis and 1.0 mg for E. revolutum. In single infections, E. revolutum was found only in the rectum and E. trivolvis mainly in the lower ileum, and in concurrent infections worms of both species were found in the rectum. Contrary to a previous report that stated that the body size of adult worms is not a reliable taxonomic indicator between E. revolutum and E. trivolvis, the findings reported here show that body area and organ size can be used to distinguish these closely related species.

Animals↗

The expulsion of Echinostoma trivolvis: worm kinetics and intestinal reactions in C3H/HeN mice treated with dexamethasone.

C3H/HeN mice were each infected with 40 Echinostoma trivolvis metacercarial cysts on day 0, given intramuscular injections of dexamethasone (DEX) daily for 30 days, and necropsied on days 5, 8, 12, 15, 20 and 30 p. i. Control mice were each infected with 40 echinostome cysts on day 0, but were not treated with DEX and necropsied on the same days as the DEX-treated mice. DEX treatment caused an inhibition of worm expulsion and suppressed the increase in goblet cell numbers that peaked around day 12 p. i. in the untreated control mice. Increase in the number of mucosal mast cells and eosinophils in the control mice that peaked around day 15 and 12 p. i., respectively, was also suppressed by the DEX treatment. The mean body area of the worms from the DEX-treated mice was about the same as that of the control worms on day 5 p. i., and then significantly greater than the control worms on days 8 and 12 p. i. The worms in the treated mice continued to grow until the end of the experiment, on day 30 p. i. Enzyme-linked immunosorbent assay (ELISA) showed that serum IgM from the treated and control mice increased from day 12 p. i., peaked on day 15 p. i., and then decreased. An IgM titre of the treated mice was slightly higher than that of the controls. No marked rise in IgG and IgA titres occurred throughout the experiment in both groups.

Animals↗

Effect of a high protein diet on worm recovery, growth and distribution of Echinostoma caproni in ICR mice.

The effects of a high protein diet on the host-parasite relationship of Echinostoma caproni in ICR mice were studied. The customized high protein diet (CHPD) contained 64% casein as a source of protein. The control diet consisted of a standard laboratory diet containing 23% casein as a source of protein. Mice were each fed 25 cysts of E. caproni by stomach tube and necropsied 2, 3, 4 and 5 weeks postinfection. The weight of mice on the CHPD did not differ significantly from mice on the control diet. Worm recoveries were also unaffected by the high protein diet. There was a significant decline in worm dry weight, body area and uterine egg counts in worms from mice on the CHPD compared with those on the control diet. Worms from hosts on the CHPD were located more posteriad in the gut than those recovered from mice on the control diet. Changes in the mouse diet adversely affected E. caproni maturation and growth, possibly by altering the immediate host mucosal environment and making it less conducive to worm development.

Animals↗

In vitro excystation of metacercarial cysts of Echinostoma trivolvis from Rana species tadpoles.

In vitro excystation studies were done on the metacercarial cysts of Echinostoma trivolvis obtained from the kidneys of naturally infected Rana species tadpoles. Cysts were excysted in an alkaline trypsin-bile salts medium and the percentage of excystation was compared with that from previous studies done on cysts obtained from the kidneys of snails. The percentage of excystation of E. trivolvis metacercariae from tadpole kidneys was similar to that reported for previous studies on cysts obtained from experimentally infected gastropod hosts. The possible role of tadpoles as an agent for the transmission of Echinostoma and echinostomiasis to humans is discussed.

Animals↗

The occurrence and identification of Echinostoma revolutum from North American Lymnaea elodes snails.

Lymnaea elodes snails collected in northern Indiana, U.S.A., were infected with larval stages of an echinostome bearing 37 collar spines and resembling members of the Echinostoma group. The taxonomic status of this digenean was determined through experimental infections of various definitive and first-intermediate hosts. In addition, characteristics of the penetration and paraesophageal glands in cercariae from this echinostomatid were compared with those from E. revolutum and E. trivolvis. Results indicate that this recently discovered 37-collar-spined echinostome parasitizing lymnaeid snails is E. revolutum, making this the first clear report of this trematode in North America.

Animals↗

In vivo and ectopic encystment of Echinostoma revolutum and chemical excystation of the metacercariae.

In vivo and ectopic encystment of the cercariae of Echinostoma revolutum from Lymnaea elodes snails in Indiana and chemical excystation of the metacercariae were studied. In vivo encystment occurred in adults of Biomphalaria glabrata and Helisoma trivolvis (Colorado strain) snails and in neonatal and juvenile L. elodes snails. These results were expected because 37-collar-spined Echinostoma species show broad specificity in their second intermediate gastropod hosts. Encysted metacercariae of E. revolutum and Echinostoma trivolvis removed from experimentally infected snails and treated in a trypsin-bile salts excystation medium at 39 C showed 30.3% excystation for the former and 55.7% for the latter at 4 hr. The ducts and openings of the paraesophageal glands of excysted metacercariae of E. revolutum from cysts formed in snails did not stain with neutral red. Abnormal ectopic cysts with distorted outer walls and granular inner walls were obtained within 48 hr of placing E. revolutum cercariae in Locke's 1:1 plus 1% dextrose. These metacercariae excysted rapidly in the excystation medium and their paraesophageal gland ducts and openings stained with neutral red. Differences in ectopic encystment and chemical excystation in vitro can be used to distinguish these closely related species in the E. revolutum complex.

Animals↗

Effects of Echinostoma trivolvis (trematoda) infection on metallic ions in the host snail Helisoma trivolvis (gastropoda).

Flame and graphite-furnace atomic absorption spectrometry and inductively coupled plasma atomic emission spectrometry were used to study the metallic ions in the digestive gland-gonad complex (DGG) of Helisoma trivolvis snails infected with the daughter rediae of Echinostoma trivolvis and in uninfected DGG. Seven metals were found to be present in infected and uninfected DGG at concentrations above the detection limits of the analytical methods. Of these, sodium was present in significantly higher amounts (Student's t-test, confidence level of 95%) in the infected versus uninfected DGG; magnesium and manganese occurred in significantly lower amounts in the infected DGG. Our results were compared with those from a Bulgarian study in which neutron activation analysis was used to determine elements in Lymnaea stagnalis snails infected with the intramolluscan stages of the 37-collar-spined echinostome E. revolutum. The Bulgarian study also reported a significant elevation of sodium but reduction of zinc in the hepatopancreas (i.e., digestive gland) of infected snails. Other differences between the two studies are discussed.

Animals↗

Development, hatching, and infectivity of Echinostoma caproni (Trematoda) eggs, and histologic and histochemical observations on the miracidia.

Light microscopy studies were done on the eggs and miracidia of the intestinal trematode Echinostoma caproni. Eggs were obtained by homogenizing adult worms derived from ICR mice in artificial spring water (ASW). To study egg development and to obtain miracidia, eggs were incubated in ASW in either a light or a dark environment for 10 days at 28 degrees C. Egg development was characterized and staged at 2-day intervals from day 0 to day 10 postembryonation. No significant difference in development was seen in eggs maintained under conditions of light or darkness. Eggs maintained in darkness for 10 days and exposed to incandescent light produced a large synchronous hatch of miracidia within 3 h of exposure to light. As expected, miracidia used to expose Biomphalaria glabrata snails produced patent infections at 5-7 weeks postinfection (p.i.). Embryonated eggs aged from 0 to 10 days that had been fed to B. glabrata snails also produced infections within 4 weeks of infection. Miracidial longevity studies showed that 50 newly hatched miracidia maintained at either 4 degrees, 12 degrees, 22 degrees, or 38 degrees C lived for 6, 28, 14, and 5 h, respectively. Histology studies were done on whole miracidia stained in 0.01% neutral red and in Schneider's acetocarmine. Histochemistry studies of miracidia stained with alcian blue (pH 2.5) showed the presence of acid mucopolysaccharides in the epidermal plates; miracidia treated with periodic acid-Schiff plus 0.5% malt diastase showed the presence of glycogen in the body and in the epidermal/subepidermal region. Miracidia stained with Lillie's Oil Red O showed the presence of sparse neutral fat droplets in the body.

Animals↗