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- W3049185010 abstract "In the Peruvian Amazon as in the tropical countries of South America, the use of medicinal Piper species (cordoncillos) is common practice, particularly against symptoms of infection by protozoal parasites. However, there is few documented information about the practical aspects of their use and few scientific validation. The starting point of this work was a set of interviews of people living in six rural communities from the Peruvian Amazon (Alto Amazonas Province) about their uses of plants from Piper genus: one community of Amerindian native people (Shawi community) and five communities of mestizos. Infections caused by parasitic protozoa take a huge toll on public health in the Amazonian communities, who partly fight it using traditional remedies. Validation of these traditional practices contributes to public health care efficiency and may help to identify new antiprotozoal compounds. To record and validate the use of medicinal Piper species by rural people of Alto Amazonas Province (Peru) and annotate active compounds using a correlation study and a data mining approach. Rural communities were interviewed about traditional medication against parasite infections with medicinal Piper species. Ethnopharmacological surveys were undertaken in five mestizo villages, namely: Nueva Arica, Shucushuyacu, Parinari, Lagunas and Esperanza, and one Shawi community (Balsapuerto village). All communities belong to the Alto Amazonas Province (Loreto region, Peru). Seventeen Piper species were collected according to their traditional use for the treatment of parasitic diseases, 35 extracts (leaves or leaves and stems) were tested in vitro on P. falciparum (3D7 chloroquine-sensitive strain and W2 chloroquine-resistant strain), Leishmania donovani LV9 strain and Trypanosoma brucei gambiense. Assessments were performed on HUVEC cells and RAW 264.7 macrophages. The annotation of active compounds was realized by metabolomic analysis and molecular networking approach. Nine extracts were active (IC50 ≤ 10 μg/mL) on 3D7 P. falciparum and only one on W2 P. falciparum, six on L. donovani (axenic and intramacrophagic amastigotes) and seven on Trypanosoma brucei gambiense. Only one extract was active on all three parasites (P. lineatum). After metabolomic analyses and annotation of compounds active on Leishmania, P. strigosum and P. pseudoarboreum were considered as potential sources of leishmanicidal compounds. This ethnopharmacological study and the associated in vitro bioassays corroborated the relevance of use of Piper species in the Amazonian traditional medicine, especially in Peru. A series of Piper species with few previously available phytochemical data have good antiprotozoal activity and could be a starting point for subsequent promising work. Metabolomic approach appears to be a smart, quick but still limited methodology to identify compounds with high probability of biological activity." @default.
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- W3049185010 date "2021-01-01" @default.
- W3049185010 modified "2023-10-16" @default.
- W3049185010 title "Metabolomic approach of the antiprotozoal activity of medicinal Piper species used in Peruvian Amazon" @default.
- W3049185010 cites W1729017034 @default.
- W3049185010 cites W1975531464 @default.
- W3049185010 cites W1976851028 @default.
- W3049185010 cites W1989299822 @default.
- W3049185010 cites W1992345454 @default.
- W3049185010 cites W1996451476 @default.
- W3049185010 cites W2002385232 @default.
- W3049185010 cites W2004301681 @default.
- W3049185010 cites W2006576505 @default.
- W3049185010 cites W2033416535 @default.
- W3049185010 cites W2046144222 @default.
- W3049185010 cites W2046592485 @default.
- W3049185010 cites W2049214087 @default.
- W3049185010 cites W2051663699 @default.
- W3049185010 cites W2054587467 @default.
- W3049185010 cites W2073302338 @default.
- W3049185010 cites W2083942660 @default.
- W3049185010 cites W2087334150 @default.
- W3049185010 cites W2089118220 @default.
- W3049185010 cites W2092591245 @default.
- W3049185010 cites W2095697583 @default.
- W3049185010 cites W2097796255 @default.
- W3049185010 cites W2106857602 @default.
- W3049185010 cites W2112711937 @default.
- W3049185010 cites W2141338381 @default.
- W3049185010 cites W2158668788 @default.
- W3049185010 cites W2161823098 @default.
- W3049185010 cites W2194509219 @default.
- W3049185010 cites W2212701647 @default.
- W3049185010 cites W2220021076 @default.
- W3049185010 cites W2283606770 @default.
- W3049185010 cites W2504691963 @default.
- W3049185010 cites W2512220717 @default.
- W3049185010 cites W2526278501 @default.
- W3049185010 cites W2530219204 @default.
- W3049185010 cites W2538382920 @default.
- W3049185010 cites W2588048627 @default.
- W3049185010 cites W2735678435 @default.
- W3049185010 cites W2753757340 @default.
- W3049185010 cites W2789560563 @default.
- W3049185010 cites W2793189997 @default.
- W3049185010 cites W2795181150 @default.
- W3049185010 cites W2807778587 @default.
- W3049185010 cites W2896608165 @default.
- W3049185010 cites W2897178933 @default.
- W3049185010 cites W2898649772 @default.
- W3049185010 cites W2903053258 @default.
- W3049185010 cites W2904565628 @default.
- W3049185010 cites W2908991243 @default.
- W3049185010 cites W2918999148 @default.
- W3049185010 cites W2920137164 @default.
- W3049185010 cites W2930186920 @default.
- W3049185010 cites W2950363679 @default.
- W3049185010 cites W2951314405 @default.
- W3049185010 cites W2952273978 @default.
- W3049185010 cites W2969022420 @default.
- W3049185010 cites W2972280512 @default.
- W3049185010 cites W2982033718 @default.
- W3049185010 cites W2994661878 @default.
- W3049185010 cites W2996380091 @default.
- W3049185010 cites W3033545876 @default.
- W3049185010 doi "https://doi.org/10.1016/j.jep.2020.113262" @default.
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