Matches in SemOpenAlex for { <https://semopenalex.org/work/W3049702144> ?p ?o ?g. }
- W3049702144 endingPage "101987" @default.
- W3049702144 startingPage "101987" @default.
- W3049702144 abstract "Regimens of current drugs for tuberculosis are lengthy and are associated with many adverse effects. Currently, the emergence of different resistant strains has been observed. This urges a need for the discovery and development of novel drugs. The main sources of drug lead candidates are based on natural products. Zanthoxylum leprieurii , Lantana camara , and Cryptolepis Sanguinolenta are among the plants that have antimycobacterial activity. Recent technological methods, such as metabolomics, can rapidly detect and identify active compounds from medicinal plants. In this review, we aim to provide an overview and discussion of the antimycobacterial activity, phytochemical analysis and toxicity profile of these plants and their products as well as the potential of metabolomic fingerprinting of medicinal plants with a given activity on microbes, in the search for the potential drug hit molecules. The information for this review was extracted from databases such as Excerpta Medica Database, Google Scholar, Springer, and PubMed Central. Primary studies, using a combination of the keywords antimycobacterial medicinal plant, multidrug-resistant tuberculosis, phytochemistry, toxicity, Zanthoxylum leprieurii , Lantana camara , Cryptolepis sanguinolenta , and plant metabolomics/metabolic fingerprinting of plant extracts, have been considered. The above-mentioned plant species showed antimycobacterial activity against drug-resistant strains of M. tuberculosis . They may provide potential candidates for novel drugs against multidrug-resistant tuberculosis. However, extensive work is still needed. To our knowledge, there is no or limited literature that reports the metabolic fingerprints of these plants. The analysis of the metabolite fingerprints of medicinal plants with similar antimicrobial activity could be important to determine whether the activity results from common metabolites within different plant species. This review shows that these plants are potential candidates to provide drug hits against multidrug-resistant tuberculosis strains. Future studies of compound optimization, in vivo safety and efficacy, as well as of the specific mechanisms of action are however required." @default.
- W3049702144 created "2020-08-21" @default.
- W3049702144 creator A5038756960 @default.
- W3049702144 creator A5046034235 @default.
- W3049702144 creator A5060288078 @default.
- W3049702144 creator A5068307772 @default.
- W3049702144 creator A5070209942 @default.
- W3049702144 creator A5072646895 @default.
- W3049702144 creator A5074447124 @default.
- W3049702144 creator A5086294117 @default.
- W3049702144 creator A5088511245 @default.
- W3049702144 date "2020-09-01" @default.
- W3049702144 modified "2023-10-12" @default.
- W3049702144 title "Three promising antimycobacterial medicinal plants reviewed as potential sources of drug hit candidates against multidrug-resistant tuberculosis" @default.
- W3049702144 cites W1500036797 @default.
- W3049702144 cites W1851279709 @default.
- W3049702144 cites W1896929128 @default.
- W3049702144 cites W1928806244 @default.
- W3049702144 cites W1968157758 @default.
- W3049702144 cites W1983251572 @default.
- W3049702144 cites W1984943870 @default.
- W3049702144 cites W1990780481 @default.
- W3049702144 cites W1990926445 @default.
- W3049702144 cites W1993748889 @default.
- W3049702144 cites W1995391021 @default.
- W3049702144 cites W1998914603 @default.
- W3049702144 cites W1999891007 @default.
- W3049702144 cites W2001686517 @default.
- W3049702144 cites W2002334091 @default.
- W3049702144 cites W2004143136 @default.
- W3049702144 cites W2012393743 @default.
- W3049702144 cites W2014880925 @default.
- W3049702144 cites W2024658900 @default.
- W3049702144 cites W2027825817 @default.
- W3049702144 cites W2031310059 @default.
- W3049702144 cites W2032555174 @default.
- W3049702144 cites W2032929791 @default.
- W3049702144 cites W2034222605 @default.
- W3049702144 cites W2043692290 @default.
- W3049702144 cites W2056617235 @default.
- W3049702144 cites W2064420872 @default.
- W3049702144 cites W2065021234 @default.
- W3049702144 cites W2067407269 @default.
- W3049702144 cites W2068417212 @default.
- W3049702144 cites W2074416258 @default.
- W3049702144 cites W2076078707 @default.
- W3049702144 cites W2080148196 @default.
- W3049702144 cites W2081095347 @default.
- W3049702144 cites W2088944177 @default.
- W3049702144 cites W2095684898 @default.
- W3049702144 cites W2108815635 @default.
- W3049702144 cites W2109845978 @default.
- W3049702144 cites W2125041154 @default.
- W3049702144 cites W2130466489 @default.
- W3049702144 cites W2131560480 @default.
- W3049702144 cites W2133793136 @default.
- W3049702144 cites W2135732933 @default.
- W3049702144 cites W2141023795 @default.
- W3049702144 cites W2144594526 @default.
- W3049702144 cites W2145034282 @default.
- W3049702144 cites W2146172570 @default.
- W3049702144 cites W2158748079 @default.
- W3049702144 cites W2314245657 @default.
- W3049702144 cites W2475640653 @default.
- W3049702144 cites W2511705938 @default.
- W3049702144 cites W2583471143 @default.
- W3049702144 cites W2624822716 @default.
- W3049702144 cites W2890425265 @default.
- W3049702144 cites W2943001701 @default.
- W3049702144 cites W2949095798 @default.
- W3049702144 cites W2970794992 @default.
- W3049702144 cites W2995047685 @default.
- W3049702144 cites W3005484639 @default.
- W3049702144 cites W3006977829 @default.
- W3049702144 cites W3013531196 @default.
- W3049702144 cites W4230154705 @default.
- W3049702144 cites W4233763100 @default.
- W3049702144 cites W4242372416 @default.
- W3049702144 cites W424542641 @default.
- W3049702144 cites W4246482931 @default.
- W3049702144 doi "https://doi.org/10.1016/j.tube.2020.101987" @default.
- W3049702144 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/32841928" @default.
- W3049702144 hasPublicationYear "2020" @default.
- W3049702144 type Work @default.
- W3049702144 sameAs 3049702144 @default.
- W3049702144 citedByCount "12" @default.
- W3049702144 countsByYear W30497021442021 @default.
- W3049702144 countsByYear W30497021442022 @default.
- W3049702144 countsByYear W30497021442023 @default.
- W3049702144 crossrefType "journal-article" @default.
- W3049702144 hasAuthorship W3049702144A5038756960 @default.
- W3049702144 hasAuthorship W3049702144A5046034235 @default.
- W3049702144 hasAuthorship W3049702144A5060288078 @default.
- W3049702144 hasAuthorship W3049702144A5068307772 @default.
- W3049702144 hasAuthorship W3049702144A5070209942 @default.
- W3049702144 hasAuthorship W3049702144A5072646895 @default.
- W3049702144 hasAuthorship W3049702144A5074447124 @default.
- W3049702144 hasAuthorship W3049702144A5086294117 @default.