PubMed Health⌕ Search

SEARCH · PubMed Health

Results for “Snails”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 127 records · Page 7Linked to original sources

Snail precedes slug in the genetic cascade required for the specification and migration of the Xenopus neural crest.

The complex sequence of inductive events responsible for the generation of the neural crest at the border between the neural plate and the epidermis, triggers a genetic cascade involving several families of transcription factors. Two members of the Snail family, Snail and Slug, have both been implicated in this cascade. In chick and Xenopus, loss- and gain-of-function experiments have provided evidence that Slug plays a key role in neural crest development. However, in contrast to the chick, Snail rather than Slug is expressed in the premigratory neural crest in the mouse and, in Xenopus, Snail precedes Slug expression in this population. Thus, in order to study the function of Snail in neural crest development in Xenopus, we have carried out conditional gain- and loss-of-function experiments using different Snail constructs fused to a glucocorticoid receptor element. We show that Snail is able to induce the expression of Slug and all other neural crest markers tested (Zic5, FoxD3, Twist and Ets1) at the time of specification. This activation is observed in whole embryos and in animal caps, in the absence of neural plate and mesodermal markers. We show that Snail is required for neural crest specification and migration and that it works as a transcriptional repressor. These functions have been previously attributed to SLUG: However, Slug alone is unable to induce other neural crest markers in animal cap assays, and we show that Snail and Slug can be functionally equivalent when tested in overexpression studies. This suggests that, in Xenopus embryos, at least some of the functions previously attributed to Slug can be carried out by SNAIL: This is additionally supported by rescue experiments in embryos injected with dominant-negative constructs that indicate that Snail lies upstream of Slug in the genetic cascade leading to neural crest formation and that it plays a key role in crest development.

Animals↗

Effect of the digenean parasite Proterometra macrostoma on host morphology in the freshwater snail Elimia livescens.

Parasitism can affect size in gastropods by altering the host's growth rate, but other morphological effects of parasitism have rarely been examined. In this study, the relationship between variation in host morphology and parasitism was examined in a population of the freshwater snail Elimia livescens. Differences were found in the morphology of snails infected with the digenean Proterometra macrostoma and uninfected snails. In order to differentiate between 2 hypotheses to explain these differences in morphology, snails were experimentally infected in the laboratory and several morphological traits were measured after 180 days. One hypothesis suggests that parasite-induced changes in shell development explain differences in morphology between infected and uninfected snails. The other hypothesis suggests that selective mortality of infected hosts explains the difference. In the experiment, differences were found between infected snails and uninfected snails in overall size but not in any measurements of shape. The short duration of the experiment relative to the duration of most infections may account for why field-infected snails differed in shape but experimentally infected snails did not. Parasite-induced changes in growth rate are the most likely explanation for the larger size of infected snails relative to uninfected snails.

Analysis of Variance↗

Mechanisms underlying digenean-snail specificity: role of miracidial attachment and host plasma factors.

Digenetic trematodes usually show a high degree of specificity for their molluscan intermediate hosts. A panel of 4 digenean species (Echinostoma paraensei, E. trivolvis, Schistosoma mansoni, and Schistosomatium douthitti) and 5 snail species (Biomphalaria glabrata, Helisoma trivolvis, Lymnaea stagnalis, Stagnicola elodes, and Helix aspersa representing 3 gastropod families) was used to assess the relative contributions of miracidial behavior, host plasma osmolality, and host plasma factors in dictating specificity. Additional experiments were undertaken with a fifth digenean, Echinoparyphium sp. Expected patterns of compatibility were first confirmed; each parasite species produced patent infections in its known snail host, but not in the other snail species. One exception was S. douthitti, which unexpectedly did not infect L. stagnalis. As judged by direct observation and by noting their disappearance after exposure to snails, miracidia were generally less likely to attach to or penetrate incompatible than compatible hosts. However, over half of the miracidia of each parasite species attached to or attempted penetration of both compatible and incompatible hosts, suggesting that under the experimental conditions used, miracidial host location and attachment behaviors were not of overriding importance in dictating observed patterns of specificity. For each digenean species, the percentage of larvae that became immobile, rounded, showed tegumental damage, or died over a 6-hr interval in plasma of the various snails was assessed. In no case was plasma from a compatible host harmful to sporocysts or rediae. In contrast, in 8 of 16 (50%) incompatible combinations, snail plasma had a significant negative effect on sporocyst condition. In 4 of 12 (33%) incompatible combinations, plasma had a significant negative effect on rediae. In 9 of 10 combinations tested, lymnaeid plasma was toxic for the parasites of planorbid snails and in 2 of 4 combinations, planorbid plasma was toxic for the parasites of lymnaeid snails. Toxicity was not attributable to differences in plasma osmolality between snail species. The ability of plasma from incompatible snails to affect viability of both sporocysts and rediae was surprisingly strong, suggesting that humoral factors play a greater role in dictating patterns of digenean-snail specificity than previously appreciated.

Animals↗

Application of remote sensing for surveillance of snail habitats in Poyang Lake, China.

OBJECTIVE: To identify snail habitats and monitor the changes by combining remote sensing technique with the ground-based ecological data. METHODS: Of 100 survey sites selected throughout Poyang Lake, 75 were randomly identified from 574 land mass units: 50 were from snail habitats and 25 were from non-snail habitats based on a historical survey (1982-1984); 25 sites with habitats that did not have snails were also selected. Each site, covering 10,000 m2, was divided into a grid of 100 cells from which 20 cells were randomly selected. Snails, when present, were collected from a 4 m2 frame placed in the center of the selected cell. Satellite Landsat TM images were obtained for the same period as the ground survey data collected. Unsupervised classification was used to classify the images. Identified land-cover types were correlated with snail habitat. RESULTS: The sensitivity and specificity of classified snail habitat were 90.0%-95.6% and 61.1%-68.6%, respectively. Based on the classification, estimated snail habitat areas in Poyang Lake increased from 623.4 km2 in 1999 to 762.8 km2 in 2000. CONCLUSION: Snail habitats are associated with grassland-covered areas. Classified images can be used to identify snail habitats, determine their areas, and monitor snail habitat changes caused by annual fluctuations of key environmental factors.

Animals↗

[Field observation on the population fluctuation of Oncomelania snail at low density in plain region].

Field observation on the population fluctuation of Oncomelana snail at low density was carried out in the ditches and rivers in Wuxi, Ludong and Lugao counties (or city) from 1987 to 1990. The results showed that the environment of the observed places is an important factor in the population fluctuation of the snails at low density. When the environment is appropriate, even one pair of the snails may multiply to a large population. Results of successive observation for 3 years on 1, 5 and 10 pairs of snails within nylon cages in ditches showed that the density of the snails increased by 171.5, 69.5 and 28.4 folds respectively and the population of the snails increased by 354, 135 and 75 folds respectively. The population in 2 of the observed ditches with one pair of snails each even multiply by 543 and 426.5 folds. While in natural field condition, the population fluctuation of residual snails varied in different places. In one ditch it multiplied by 34.7 folds, but in another river the population almost unchanged. No natural elimination of snails could be found in all observed places. It was suggested that the snail surveillance should be conducted persistently and any snail once be found, it should be timely eradicated.

Animals↗

Parasite-susceptibility phenotypes of F1 Biomphalaria glabrataprogeny derived from interbreeding Schistosoma mansoni-resistant and -susceptible snails.

In an effort to investigate the 'flow' of parasite-resistance genes through laboratory snail populations, we determined the susceptibility of progeny snails from freely interbreeding parasite-susceptible and parasite-resistant parents. Five parental populations of Biomphalaria glabrata were used to generate the progeny snails. Three of them contained different proportions of Schistosoma mansoni-susceptible albino snails (NMRI stock) and S. mansoni-resistant pigmented snails (BS-90), while single stock controls comprised the other two parental populations. F(1) snails from each parental population were exposed to S. mansoni miracidia. Some of the progeny snails were exposed as juveniles, others as adults. According to Hardy-Weinberg principle predictions, the F(1) generation from the three pigmented/albino parental populations displayed higher than expected numbers of pigmented (resistant) snails and lower than expected numbers of albino (susceptible) snails. Among the assumptions of the Hardy-Weinberg principle that were not met within these populations could include non-random mating, unequal fecundity, different hatching and survival rates of different genotypes, or other life-history differences between snail stocks. It is clear, though, that for these two laboratory snail stocks there is no fitness cost attached to genetic resistance to the parasite.

Animals↗

Host choice by larval parasites: a study of Biomphalaria glabrata snails and Schistosoma mansoni miracidia related to host size.

Within snail/trematode associations the age/size of the host at infection has consequences with regard to miracidial infection success, further intramolluscan parasite development and reproduction, and the host response, mainly in terms of growth and reproductive effort. Taking into account these differences, we were interested in determining whether miracidia could discriminate and make a choice between snails of different sizes. Using the Schistosoma mansoni/Biomphalaria glabrata system, we compared data on the snail infection rate and the mother sporocyst abundance among three size classes of snails (juvenile, subadult, and adult) exposed separately or together to the parasite larvae. When exposed individually, juvenile snails (3-5 mm) had significantly higher prevalence and abundance values than did subadult snails, followed by adult snails. In contrast, when snails of the three size classes were exposed together in heterogeneous size groups the prevalence and abundance values were always significantly higher for subadult snails of the 7- to 9-mm class than for juvenile and adult snails. A host choice experiment confirmed that significantly more miracidia were attracted by subadult snails, suggesting that the parasite has been selected for specific locating and recognition mechanisms increasing the infection rate of subadult snails when the latter have been exposed in a heterogeneous size group. Selective forces that may be responsible for such a preferential infectivity of the parasite vis-à-vis particular host age/size class are discussed in relation to host resources and host responses.

Animals↗

Trichobilharzia ocellata: physiological characterization of giant growth, glycogen depletion, and absence of reproductive activity in the intermediate snail host, Lymnaea stagnalis.

Giant growth, depletion of energy stores, and inhibition of reproductive activity are striking effects of many trematode parasites on their intermediate snail hosts. Two hypotheses have been put forward to explain these phenomena: (1) host and parasite compete for energy rich and other essential nutrients, with the parasite as the winner, and (2) the parasite intervenes in the endocrine control of reproduction of the snail. These hypotheses were tested in the present study with the Trichobilharzia ocellata/Lymnaea stagnalis association. The snails were infected at a juvenile stage, and release of cercariae started on Day 55 after exposure. It was shown that enhanced growth of infected snails is not paralleled by a greater increase in dry weight, but hemolymph volume does increase, being 35% greater than in the noninfected controls. Control snails, on the other hand, showed an increase in the percentage body dry weight during sexual maturation. The conclusion is that infected snails retain an essentially juvenile body structure. In control snails, glycogen was depleted from the mantle store at the start of egg laying but the onset of cercariae production marked a severe glycogen depletion from the headfoot and the mantle in infected snails, being nearly complete on Day 68 after exposure. The hemolymph glucose concentration was only slightly lower in infected than in control snails and it did not change (in both groups) during glycogen mobilization. This suggests that glycogen mobilization does not result from the snail and the parasite competing directly for metabolites within the hemolymph. Infection inhibited the maturation of the accessory sex organs: there was no increase in the relative wet weights nor in the amounts of DNA and secretion products in the albumin and prostate glands. Infected snails did not lay eggs. It is presumed that the parasite produces one or more agents which intervene in the action of the gonadotrophic hormones. The release of these agents commences at an early stage of infection.

Animals↗

Effects of trematode parasitism on the behaviour and ecology of a common marine snail (Littorina littorea (L.)).

Cryptocotyle lingua (Creplin) is a digenean trematode parasite of the littoral prosobranch gastropod Littorina littorea (L.). The literature suggests the snails become infected by grazing guano of the final host, the herring gull, Larus argentatus Pontoppidan. The parasite emerges from the snail as free-swimming cercariae. Interactions between the snail and the parasite at cellular and life-history levels are well established, but little is known of the influences the interaction has on the behaviour and the ecology of the snail. We tested the response of the snail to encounters with cercariae, examined the longevity of the guano on-shore and tested the responses of the snail to encounters with guano. Over half the L. littorea tested were able to detect both cercariae and a filtered homogenate of cercariae in conspecific mucus trails, approximately one-third of animals refusing to cross the treatments. Chemoreception by the mouth or foot is considered the most likely means of detection. Guano samples (mean weight 3.22 g) naturally deposited at approximately mid-tide level were completely washed away by one tidal inundation. We consider this period too brief to allow for ingestion of eggs in guano by the snail. Further, snails would not cross guano placed in conspecific trails. Most snails would not cross guano diluted by 10(3)x(10 mg ml(-1)) and some snails could still detect guano diluted by 10(6)x(10 &mgr;g ml(-1)), though all were prepared to cross it. Detection of guano is again believed to be by chemoreception by the mouth or foot. These results are discussed in terms of the mating and aggregating behaviour of L. littorea. Ingestion of the parasite by L. littorea is likely to take place once the guano has washed away as the eggs are negatively buoyant in seawater and may adhere to rock (biofilm) or algal fronds which may be grazed by the snail.

Journal Article↗

A preliminary assessment of the potential of the Muschovy duck (Cairina maschata) as a biocontrol agent of schistosomiasis intermediate host snails.

OBJECTIVE: To assess the impact of Muschovy ducks on snail populations. DESIGN: Populations of four different snail species were monitored in nine ponds for a period of 32 weeks. Zero, one and two ducks were randomly introduced to a set of three ponds in the 16th, 20th and 24th week. SETTING: Nine fenced ponds at De Beers Research Laboratory, Chiredzi. MAIN OUTCOME MEASURES: Reduction in snail population following introduction of ducks. RESULTS: Mean counts for the intervention period showed that more intermediate host snails (Bulinus globosus and Biomphalaria pfeifferi) were present in ponds where ducks were not introduced (control) than in ponds where either one or two ducks were introduced. In control ponds the mean counts for intermediate host snails were 1.37, 1.03 and 1.02 for control, treatment with one duck and treatment with two ducks respectively. Similar observations were made for Physa acuta, with mean counts of 1.10, 0.64 and 0.67 for control, treatment with one duck and treatment with two ducks, respectively. No differences were observed in snail counts of Melanoides turbeculata where 2.40 snails were collected from the control pond and 2.37 snails in both treatment ponds. There was no significant difference in number of snails in ponds with one or two ducks. CONCLUSION: The study demonstrated that Muschovy ducks significantly reduce snail populations in a pond environment. Further studies are required in large natural ponds before conclusive recommendations are made on the use of Muschovy ducks as biological control agents of schistosomiasis intermediate host snails can be drawn.

Animals↗

Schistosoma mansoni infections in neonatal Biomphalaria glabrata snails.

In areas endemic for schistosomiasis, the population dynamics of the snail intermediate hosts have a direct effect on parasite transmission. The present study focused on the potential for neonatal Biomphalaria glabrata snails to become infected with Schistosoma mansoni and to produce cercariae under various conditions. It was found that snails as small as 0.74 mm in shell diameter could survive miracidial penetration and could release cercariae when as small as 1.6 mm in diameter. Cercariae produced by small snails were equally infectious for mice when compared with those shed by larger snails. Likewise, histological examination of neonatally exposed snails revealed normally developing parasites at all stages of infection. It was found that in 2 snail populations expressing either high or low susceptibility to the parasite, peak susceptibility occurred at 25 days of age in both groups. Daily cercarial production for neonatally exposed snails was initially low but increased dramatically as the snails grew, eventually reaching values as high as 2,100 cercariae/snail/day. A moderate to high percentage of snails infected as neonates was eventually capable of simultaneously producing both eggs and cercariae. These studies emphasize the potential importance of neonatal and preadult snails in helping to maintain foci of S. mansoni infection in endemic areas.

Animals↗

A homologue of snail is expressed transiently in subsets of mesenchyme cells in the sea urchin embryo and is down-regulated in axis-deficient embryos.

Vertebrate members of the zinc finger transcription factor family related to Drosophila snail are expressed in neural crest and paraxial mesoderm along the left-right axis of the embryo. As simple deuterostomes, echinoderms are an important sister phylum for the chordates. We have identified populations of patterned, nonskeletogenic mesenchyme in the sea urchin Lytechinus variegatus by their expression of a sea urchin member of the snail family (Lv-snail). Lv-snail mRNA and protein are detectable at the midgastrula stage within the archenteron. At the late gastrula stage, a contiguous cluster of cells on the left side of the tip of the archenteron is Lv-snail-positive. At the early prism stage, two small clusters of mesenchyme cells near the presumptive arm buds are also Lv-snail-positive. At the pluteus stage, staining is detectable in isolated mesenchyme cells and the ciliated band. Based on fate mapping of secondary mesenchyme cells (SMCs) and double-label immunostaining, these patterns are consistent with expression of SNAIL by novel subsets of SMCs that are largely distinct from skeletogenic mesenchyme. In radialized embryos lacking normal bilateral symmetry, mesenchymal expression of Lv-SNAIL is abolished. These results suggest that transient expression of Lv-snail may be important for the differentiation of a subset of axially patterned nonskeletogenic mesenchyme cells and suggest conserved functions for snail family members in deuterostome development.

Animals↗

The suitability of several aquatic snails as intermediate hosts for Angiostrongylus cantonensis.

Sixteen species of aquatic snails of four families were tested by quantitative technique under standardized conditions for their suitability as intermediate hosts for Angiostrongylus cantonensis. These species were the planorbid snails Biomphalaria glabrata, Biomphalaria alexandrina, Planorbis planorbis, Planorbis intermixtus, Bulinus truncatus, Bulinus contortus, Bulinus africanus, Bulinus tropicus and Helisoma sp.; the lymnaeid snails Lymnaea natalensis, Lymnaea tomentosa, Lymnaea stagnalis, and Stagnicola elodes; the physid snail Physa acuta (an Egyptian and a German strain) and the ampullariid snails Marisa cornuarietis and Lanistes carinatus. All these snail species proved to be susceptible to infection with A. cantonensis, and first stage larvae reached the infective third stage in all of them. However, the rate and intensity of infection varied with different species. B. glabrata was the most susceptible snail species with a 100% infection rate and an average percentage recovery of third stage larvae of 26.1. This was followed by S. elodes and B. africanus, with a 100% infection rate and an average percentage recovery of third stage larvae of 15.6 and 14.6 respectively. The rest of snail species proved to be less susceptible. For comparative evaluation of the suitability of the various snail species as intermediate hosts of A. cantonensis a "Capacity Index" was determined. This index should provide a useful method for the evaluation of the suitability of various snails as intermediate hosts of nematode parasites under standardized conditions in the laboratory.

Animals↗

Toxicity evaluation of Bayluscide and malathion to three developmental stages of freshwater snails.

Laboratory studies were conducted to assess the conditions under which the use of malathion in ricelands of Cameroon may impact the transmission of schistosomiasis. Helisoma trivolvis and Biomphalaria havanensis were selected as test organisms due to the lack of intermediate snail hosts in the U.S. Using Bayluscide as a reference molluscicidal compound, malathion was tested against snail eggs, juveniles, and adults. Snail eggs were more susceptible to Bayluscide and malathion than juvenile snails which in turn were more susceptible than adult snails. A Bayluscide concentration of 0.200 mg/L caused 100% mortality to adults of both snail species after 24 h exposure. This relatively high toxicity of Bayluscide to freshwater snails is one of the reasons why it has been recommended by the World Health Organization as the molluscicide of choice for control of schistosome-bearing snails. The concentrations of malathion resulting in 100% kill of adult snails after 24 h exposure were 1,200 mg/L for H. trivolvis and 500 mg/L for B. havanensis. After 48 h exposure, these concentrations were reduced to 500 mg/L and 300 mg/L, respectively. Therefore it is expected that the use of malathion for insect control in ricelands of Cameroon may affect the survival of freshwater snails including the intermediate hosts of bilharziasis.

Animals↗

Expression and nuclear localization of Snail, an E-cadherin repressor, in adenocarcinomas of the upper gastrointestinal tract.

Transcriptional E-cadherin down-regulation can be mediated by Snail, a zinc finger transcription factor. To be able to examine nuclear Snail immunoreactivity in archival human cancers, we established a monoclonal antibody against the purified human Snail protein. The specificity of the selected rat antibody Sn9H2 was demonstrated by Western blot analysis using extracts from different cell lines and by immunofluorescence and immunohistochemistry of primary tissues. Subsequently, a series of 340 adenocarcinomas of the upper gastrointestinal tract, including tumours from the oesophagus (n=154), cardia (n=102) and stomach (n=84), arranged in tissue microarrays, were examined for Snail expression and were correlated to E-cadherin expression and clinico-pathological parameters. Nuclear Snail immunoreactivity was seen in 27 tumours (7.9%) and tended to be more frequent in oesophageal adenocarcinomas (11.1%) than in cardiac (6.9%) or gastric (3.6%) carcinomas (p=0.0428). In 35% of the Snail-positive cases, E-cadherin immunoreactivity was lost. No correlation was found for nuclear Snail expression and tumour grade, Lauren's classification, WHO classification, tumour stage and tumour size. The pattern of Snail expression observed with our new hybridoma, Sn9H2, which is currently the only antibody that reacts with endogenous nuclear (active) Snail, suggests only a minor role of Snail in tumours of the upper gastrointestinal tract.

Adenocarcinoma↗

The use of tetraphyll as food for snails increases the intensity of cercarial shedding in Galba truncatula infected with Fasciola hepatica.

Experimental infections of Galba truncatula with Fasciola hepatica were carried out under laboratory conditions to determine why the use of Tetraphyll, when provided every 3 days as food for snails, stimulated the intensity of cercarial shedding. In snails raised on cos lettuce and Tetraphyll, the number of metacercariae was significantly higher than that recorded in controls on lettuce only. In the former group, numerous metacercariae were counted on day 1 of every 3-day period (when snails fed on Tetraphyll), while the numbers of these larvae strongly decreased on day 2 and were very low on day 3. The repetition of this experiment using microalgae or modified Boray's diet every 3 days as food for snails gave the same results. However, the number of metacercariae recorded on day 1 of every 3-day period was significantly higher in snails raised on lettuce and Tetraphyll than in those reared on lettuce and algae (or Boray's diet). According to the authors, the first contact of an infected snail with Tetraphyll induces a faster differentiation of cercariae within the rediae and the accumulation of many free cercariae in the snail's hemocoel, so that a second contact of the snail with this food 3 days after allows free cercariae to complete their glycogen and fat reserves and to rapidly exit from the snail. However, a temporary immobilization of the infected snail by Tetraphyll, or rather its degradation products, and a massed exit of cercariae cannot be excluded.

Animal Feed↗

Refuge function of marine algae complicates selection in an intertidal snail.

Species with restricted gene flow often show trait-shifts from one type of environment to another. In those rock-dwelling marine gastropods that lack larval dispersal, size generally decreases in wave-exposed habitats reducing risk of dislodgement, while increases in less exposed habitats to resist crab-crushing. In Littorina fabalis, however, snails of moderately exposed shores are generally much larger (11-14 mm) than snails of sheltered shores (5-8 mm). Observations from the White Sea (where crabs are not present) indicate that in the absence of crabs snails are small (6-7 mm) in both habitats. We assumed that the optimal size for L. fabalis in the absence of crabs is less than 8 mm, and thus that increased size in moderately exposed habitats in areas with crabs might be a response to crab predation. In a crab-rich area (Sweden) we showed that crab predation is an important mortality factor for this snail species in both sheltered and moderately exposed habitats. In sheltered habitats, snails were relatively more protected from crab-predation when dwelling on their habitual substrate, fucoid algae, than if experimentally tethered to rocks below the algae. This showed that algae function as snail refuges. Snail dislodgement increased, however, with wave exposure but tethering snails in moderately exposed habitats showed that large snails survived equally well on rocks under the algae as in the canopy of the algae. Thus in sheltered habitats a small snail size is favored, probably due to life-history reasons, while increased risk of being dislodged from the algae refuges promotes a large size in moderately exposed habitats. This study shows an example of selection of a trait depends on complex interactions of different factors (life-history optimization, crab predation, wave induced dislodgement and algal refuges).

Analysis of Variance↗

Effects of diet and larval trematode parasitism on lutein and beta-carotene concentrations in planorbid snails as determined by quantitative high performance reversed phase thin layer chromatography.

High performance thin layer chromatography (HPTLC) was used to quantify the concentrations of beta-carotene and lutein in Biomphalaria glabrata and Helisoma trivolvis (Colorado and Pennsylvania strains) snails under various conditions. These conditions were: snails fed a lettuce (L) vs. a yolk (Y) diet; B. glabrata infected with Echinostoma caproni vs. uninfected snails; and H. trivolvis (PA) infected with Echinostoma trivolvis vs. uninfected snails. The pigments were extracted from the snail whole bodies and digestive gland-gonad complexes, separated by reversed phase HPTLC, and quantified by densitometric scanning with standard calibration curves. Snails on the L-diet showed significant increases (Student's t-test, P<0.05) in the concentrations of beta-carotene and lutein compared to snails on the Y-diet. Snails infected with echinostomes showed no significant differences (Student's t-test, P>0.05) in the concentrations of lutein and beta-carotene compared to the uninfected cohorts. Our results were compared with previous studies that analyzed beta-carotene and lutein in snails infected with larval trematodes. Variations in the results of our study compared with others reflect intrinsic differences in the larval trematode-snail systems used.

Animals↗