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3.
Nat Prod Res ; 34(2): 261-268, 2020 Jan.
Article in English | MEDLINE | ID: mdl-30580613

ABSTRACT

A new [7.7]paracyclophane (1), together with eight known compounds (2-9), were isolated from a MeOH extract of the sea snail Planaxis sulcatus (Born, 1780). Their structures were elucidated by HR-ESI-MS and NMR techniques as well as comparison with those reported in literatures. The absolute configuration of metabolite 1 was determined using ECD spectroscopy. Among nine compounds, 1 exhibited significant cytotoxicity toward all eight cancer cells tested with IC50 values between 1.81 and 3.80 µg/mL.[Figure: see text].


Subject(s)
Bridged-Ring Compounds/isolation & purification , Cytotoxins/isolation & purification , Snails/chemistry , Animals , Aquatic Organisms , Bridged-Ring Compounds/chemistry , Bridged-Ring Compounds/toxicity , Cell Line, Tumor , Cytotoxins/pharmacology , Humans , Inhibitory Concentration 50 , Magnetic Resonance Spectroscopy/methods , Molecular Structure , Snails/pathogenicity , Vietnam
4.
Nat Rev Dis Primers ; 4(1): 13, 2018 08 09.
Article in English | MEDLINE | ID: mdl-30093684

ABSTRACT

Schistosomiasis (bilharzia) is a neglected tropical disease caused by parasitic flatworms (blood flukes) of the genus Schistosoma, with considerable morbidity in parts of the Middle East, South America, Southeast Asia and, particularly, in sub-Saharan Africa. Infective larvae grow in an intermediate host (fresh-water snails) before penetrating the skin of the definitive human host. Mature adult worms reside in the mesenteric (Schistosoma mansoni and Schistosoma japonicum) or pelvic (Schistosoma haematobium) veins, where female worms lay eggs, which are secreted in stool or urine. Eggs trapped in the surrounding tissues and organs, such as the liver and bladder, cause inflammatory immune responses (including granulomas) that result in intestinal, hepato-splenic or urogenital disease. Diagnosis requires the detection of eggs in excreta or worm antigens in the serum, and sensitive, rapid, point-of-care tests for populations living in endemic areas are needed. The anti-schistosomal drug praziquantel is safe and efficacious against adult worms of all the six Schistosoma spp. infecting humans; however, it does not prevent reinfection and the emergence of drug resistance is a concern. Schistosomiasis elimination will require a multifaceted approach, including: treatment; snail control; information, education and communication; improved water, sanitation and hygiene; accurate diagnostics; and surveillance-response systems that are readily tailored to social-ecological settings.


Subject(s)
Schistosomiasis/complications , Schistosomiasis/diagnosis , Animals , Anthelmintics/therapeutic use , Enzyme-Linked Immunosorbent Assay/methods , Humans , Praziquantel/therapeutic use , Schistosoma haematobium/microbiology , Schistosoma haematobium/pathogenicity , Schistosoma japonicum/microbiology , Schistosoma japonicum/pathogenicity , Schistosoma mansoni/microbiology , Schistosoma mansoni/pathogenicity , Schistosomiasis/physiopathology , Snails/microbiology , Snails/pathogenicity , Ultrasonography/methods , Zoonoses/etiology , Zoonoses/physiopathology
6.
Rev. argent. microbiol ; 48(3): 206-209, set. 2016. ilus
Article in English | LILACS | ID: biblio-1290559

ABSTRACT

Se estudió el rol prospectivo de Rumina decollata como potencial hospedador paraténico de Toxocara cati para los gatos domésticos. Se recolectaron caracoles R. decollata y heces de gatos de un hospital de la Ciudad Autónoma de Buenos Aires. Se procesaron las heces y los caracoles fueron digeridos para identificar estadios de T. cati por análisis morfológico y molecular. El 23,5% (4/17) de las muestras de heces resultaron positivas a huevos larvados de T. cati. El 20% (5/25) de los pooles de caracoles fue positivo a larvas de tercer estadío (L3) de Toxocara spp. por PCR. El promedio de larvas totales recuperadas por gramo de caracol en todos los pooles positivos fue de 5.1, con un máximo de 33 L3/pool. Se trata del primer reporte de R. decollata como hospedador paraténico de T. cati, puesto que ha sido demostrada la infección en caracoles y gatos en un ambiente común


The prospective role of the land snail Rumina decollata as a potential paratenic host of Toxocara cati for domestic cats was studied. R. decollata specimens and cats' feces were collected from the open spaces of a Buenos Aires city hospital. Cats' feces were analyzed and snails were digested to identify T. cati stages, by morphological and molecular analyses. T. cati larval eggs were recovered from 23.5% (4/17) of the sampled feces. Twenty percent of snail pools (5/25) were confirmed to be positive for Toxocara spp. third larval stage (L3) by PCR. The mean value of total larvae recovered per gram of snail in all positive pools was 5.1, with a maximum 33 L3/pool. This is the first report of T. cati infective larvae in R. decollata domestic snail as a paratenic host, since the relationship between infection in snails and in cats' feces could be demonstrated in a common environment


Subject(s)
Animals , Cats , Snails/parasitology , Snails/pathogenicity , Toxocara/isolation & purification , Polymerase Chain Reaction/methods , Feces/parasitology , Host Adaptation/physiology
7.
PLoS One ; 8(10): e77736, 2013.
Article in English | MEDLINE | ID: mdl-24147069

ABSTRACT

Winning the war against invasive species requires early detection of invasions. Compared to terrestrial invaders, aquatic species often thrive undetected under water and do not garner notice until too late for early action. However, fortunately for managers, apple snails (Family Ampullariidae, Genus Pomacea) provide their own conspicuous sign of invasion in the form of vibrantly colored egg clutches. Managers can potentially use egg clutches laid in the riparian zone as a means of early detection and species identification. To facilitate such efforts, we quantified differences in characteristics (length, width, depth, mass, egg number) of field-laid clutches for the two most common invasive species of apple snail, P. canaliculata and P. maculata, in native and non-native populations. Pomacea canaliculata native and non-native populations differed noticeably only in width. Native P. maculata clutches possessed significantly greater width, mass and eggs numbers compared with native P. canaliculata. Non-native P. maculata clutches significantly exceeded all other populations in all measured characteristics. Consequently, these traits may successfully distinguish between species. Fecundity data also allowed us to develop models that accurately estimated the number of eggs per clutch for each species based on clutch dimensions. We tested one, two and three dimensional models of clutches, including rendering a clutch as either a complete ellipsoid or an ellipsoid intersected by a cylinder to represent the oviposition site. Model comparisons found the product of length and depth, with a different function for each population, best predicted egg number for both species. Comparisons of egg number to clutch volume and mass implied non-native P. canaliculata may be food limited, while non-native P. maculata appeared to produce such enormous clutches by having access to greater nutrients than the native population. With these new tools, researchers and managers can quickly identify, quantify and begin eradication of new non-native apple snail populations.


Subject(s)
Snails/physiology , Animals , Female , Introduced Species , Malus/parasitology , Oviposition/physiology , Snails/pathogenicity
8.
PLoS One ; 7(3): e33440, 2012.
Article in English | MEDLINE | ID: mdl-22438932

ABSTRACT

The invasive land snail Achatina fulica is one of the most damaging agricultural pests worldwide representing a potentially serious threat to natural ecosystems and human health. This species is known to carry parasites and harbors a dense and metabolically active microbial community; however, little is known about its diversity and composition. Here, we assessed for the first time the complexity of bacterial communities occurring in the digestive tracts of field-collected snails (FC) by using culture-independent molecular analysis. Crop and intestinal bacteria in FC were then compared to those from groups of snails that were reared in the laboratory (RL) on a sugarcane-based diet. Most of the sequences recovered were novel and related to those reported for herbivorous gut. Changes in the relative abundance of Bacteroidetes and Firmicutes were observed when the snails were fed a high-sugar diet, suggesting that the snail gut microbiota can influence the energy balance equation. Furthermore, this study represents a first step in gaining a better understanding of land snail gut microbiota and shows that this is a complex holobiont system containing diverse, abundant and active microbial communities.


Subject(s)
Metagenome , Snails/microbiology , Animals , Bacteria/classification , Bacteria/genetics , Bacteria/isolation & purification , Base Sequence , DNA Primers/genetics , DNA, Bacterial/genetics , Diet , Digestive System/microbiology , Ecosystem , Humans , Phylogeny , Saccharum , Snails/pathogenicity
9.
Int J Parasitol ; 42(3): 313-21, 2012.
Article in English | MEDLINE | ID: mdl-23362512

ABSTRACT

In the flatworm genus Schistosoma, species of which include parasites of biomedical and veterinary importance, mitochondrial gene order is radically different in some species. A PCR-based survey of 19 schistosomatid spp. established which of 14 Schistosoma spp. have the ancestral (plesiomorphic) or derived gene order condition. A phylogeny for Schistosoma was estimated and used to infer the origin of the gene order change which is present in all members of a clade containing Schistosoma incognitum and members of the traditionally recognised Schistosoma indicum, Schistosoma mansoni and Schistosomahaematobium spp. groups. Schistosoma turkestanicum, with the plesiomorphic gene order state, is sister to this clade. Common interval analysis suggests change in gene order, from ancestral to derived, consisted of two sequential transposition events: (a) nad1_nad3 to nad3_nad1 and (b) [atp6,nad2]_[nad3,-nad1,cox1,rrnL,rrnS,cox2,nad6] to [nad3,nad1,cox1,rrnL,rrnS,cox2,nad6]_[atp6,nad2], where gene order offragments within square brackets remain unchanged. Gene order change is rare in parasitic flatworms and is a robust synapomorphy for schistosome spp. that exhibit it. The schistosomatid phylogeny casts some doubt on the origin of Schistosoma (Asian or African), highlights the propensity for species to hosts witch amongst mammalian (definitive) hosts, and indicates the likely importance of snail (intermediate)hosts in determining and defining patterns of schistosome radiation and continental invasion. Mitogenomic sampling of Schistosoma dattai and Schistosoma harinasutai to determine gene order, and within key species, especially S. turkestanicum and S. incognitum, to determine ancestral ranges, may help discover the geographic origins of gene order change in the genus. Samples of S. incognitum from India and Thailand suggest this taxon may include cryptic species.


Subject(s)
Genes, Mitochondrial/genetics , Phylogeny , Schistosoma/genetics , Animal Distribution , Animals , Gene Order , Genes, Helminth/genetics , Polymerase Chain Reaction , Schistosoma/classification , Schistosoma/pathogenicity , Snails/pathogenicity
10.
Philos Trans R Soc Lond B Biol Sci ; 364(1524): 1659-63, 2009 Jun 27.
Article in English | MEDLINE | ID: mdl-19451117

ABSTRACT

A robust food web is one in which few secondary extinctions occur after removing species. We investigated how parasites affected the robustness of the Carpinteria Salt Marsh food web by conducting random species removals and a hypothetical, but plausible, species invasion. Parasites were much more likely than free-living species to suffer secondary extinctions following the removal of a free-living species from the food web. For this reason, the food web was less robust with the inclusion of parasites. Removal of the horn snail, Cerithidea californica, resulted in a disproportionate number of secondary parasite extinctions. The exotic Japanese mud snail, Batillaria attramentaria, is the ecological analogue of the native California horn snail and can completely replace it following invasion. Owing to the similarities between the two snail species, the invasion had no effect on predator-prey interactions. However, because the native snail is host for 17 host-specific parasites, and the invader is host to only one, comparison of a food web that includes parasites showed significant effects of invasion on the native community. The hypothetical invasion also significantly reduced the connectance of the web because the loss of 17 native trematode species eliminated many links.


Subject(s)
Food Chain , Snails/parasitology , Snails/pathogenicity , Animals , Biodiversity , California , Ecosystem , Host-Parasite Interactions , Trematoda/pathogenicity
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