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Natural Product Research
Formerly Natural Product Letters
Volume 35, 2021 - Issue 24
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Research Articles

Caspicaiene: a new kaurene diterpene with anti-tubercular activity from an Aspergillus endophytic isolate in Gleditsia caspia desf

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Pages 5653-5664 | Received 05 Apr 2020, Accepted 30 Aug 2020, Published online: 20 Sep 2020

References

  • Angala SK, Mcneil MR, Zou L, Liav A, Zhang J, Lowary L, Jackson M. 2016. Identification of a novel mycobacterial arabinosyltransferase activity which adds an arabinosyl residue to α-D-mannosyl residues. ACS Chem Biol. 11(6):1518–1524.
  • Awaad AS, Al-Mudhayyif HA, Al-Othman MR, Zain ME, El-Meligy RM. 2017. Amhezole, a novel fungal secondary metabolite from Aspergillus terreus for treatment of microbial mouth infection. Phytother Res. 31(3):395–402.
  • Awaad AS, Nabilah A-JA, Zain ME. 2012. New antifungal compounds from Aspergillus terreus isolated from desert soil. Phytother Res. 26(12):1872–1877.
  • Bhagat S, Supriya M, Pathak S, Sriram D, Chakraborti AK. 2018. α-sulfonamidophosphonates as new anti-mycobacterial chemotypes: design, development of synthetic methodology, and biological evaluation. Bioorg Chem. 82:246–252.
  • Blaser A, Sutherland HS, Tong AST, Choi PJ, Conole D, Franzblau SG, Cooper CB, Upton AM, Lotlikar M, Denny WA, et al. 2019. Structure-activity relationships for unit C pyridyl analogues of the tuberculosis drug bedaquiline. Bioorg Med Chem. 27(7):1283–1291.
  • Carikci S, Col C, Kihc T, Azizoglu A. 2007. Diterpenoids from sideritis tmolea P. H. Davis. Rec. Nat. Prod. 1:44–50.
  • Chen Y. 2014. Beware of docking! Trends Pharmacol Sci. 36(2):.78–95.
  • Eldahshan OA. 2013. Rhoifolin; A potent antiproliferative effect on cancer cell lines. BJPR. 3(1):46–53.
  • Esmat A, Al-Abbasi FA, Algandaby MM, Moussa AY, Labib RM, Ayoub NA, Abdel-Naim AB. 2012. Anti-inflammatory activity of Pistacia khinjuk in different experimental models: Isolation and characterization of its flavonoids and galloylated sugars. J Med Food. 15 (3):278–287.
  • Fadipe VO, Mongalo NI, Opoku AR, Dikhoba PM, Makhafola TJ. 2017. Isolation of anti-mycobacterial compounds from Curtisia dentata (Burm.f.) C.A.Sm (Curtisiaceae). BMC Complement Altern Med. 17(1):306.
  • Gomez JE, McKinney JD. 2004. M. tuberculosis persistence, latency, and drug tolerance. Tuberculosis (Edinb). 84(1–2):29–44.
  • Gontijo DC, Alves do Nascimento MF, Borgati TF, Speziali NL, de Souza Filho JD, de Oliveira AB. 2019. A comprehensive view on (À) -7-Oxo- ent -kaur-16-en-19-oic acid, the major constituent of Xylopia sericea leaves extract: complete NMR assignments, X-Ray crystallographic structure, in vitro antimalarial activity and cytotoxicity. Chem Biodivers. 16:e1900141.
  • Holas O, Ondrejcek P, Dolezal M. 2015. Mycobacterium tuberculosis enoyl-acyl carrier protein reductase inhibitors as potential antituberculotics: development in the past decade Mycobacterium tuberculosis enoyl-acyl carrier protein reductase inhibitors as potential antituberculotics. J Enzyme Inhib Med Chem. 30(4):629–648.
  • Igarashi M, Ishizaki Y, Takahashi Y. 2018. New antituberculous drugs derived from natural products: Current perspectives and issues in antituberculous drug development. J Antibiot. 71(1):15–25.
  • Jouda JB, Mawabo IK, Notedji A, Mbazoa CD, Nkenfou J, Wandji J, Nkenfou CN. 2016. Anti-mycobacterial activity of polyketides from Penicillium sp. endophyte isolated from Garcinia nobilis against Mycobacteriumsmegmatis. Int J Mycobacteriol. 5(2):192–196.
  • Melek FR, Kassem I, Miyase T, Fayad W. 2014. Caspicaosides E-K, triterpenoid saponins and cytotoxic acylated saponins from fruits of Gleditsia caspica Desf. Phytochemistry. 100:110–119.
  • Miyase T, Melek FR, Warashina T, Selim MA, El Fiki NM, Kassem IAA. 2010. Cytotoxic triterpenoid saponins acylated with monoterpenic acids from fruits of Gleditsia caspica Desf. Phytochemistry. 71(16):1908–1916.
  • Moussa AY, Labib RM, Ayoub NA. 2013. Isolation of chemical constituents and protective effect of Pistacia khinjuk Against CCl 4 – induced damage on HepG2 Cells. Phytopharmacology. 4(4):1–9.
  • Piccaro G, Poce G, Biava M, Giannoni F, Fattorini L. 2015. Activity of lipophilic and hydrophilic drugs against dormant and replicating Mycobacterium tuberculosis. J Antibiot. 68(11):1–4.
  • Quan D, Nagalingam G, Payne R, Triccas JA. 2016. New tuberculosis drug leads from naturally occurring compounds. Int J Infect Dis. 56:211–220.
  • Rawat R, Whitty A, Tonge PJ. 2003. The isoniazid-NAD adduct is a slow, tight-binding inhibitor of InhA, the Mycobacterium tuberculosis enoyl reductase: Adduct affinity and drug resistance. Proc Natl Acad Sci USA. 100(24):13881–13886.
  • Reich M, Labes A. 2017. How to boost marine fungal research: a first step towards a multidisciplinary approach by combining molecular fungal ecology and natural products chemistry. Mar Genomics. 36:57–75.
  • Roshidah R, Hasibuan PAZ. 2014. Cytotoxic effect of n-hexane, ethylacetate and ethanol extracts of Plectranthus amboinicus, (Lour.) Spreng.) on HeLa and Vero cells lines. Int. J. Pharmtech Res. 6(6):1806–1809.
  • Sarathi P, Kumar A, Naaz F, Datta U, Dhar V, Yadava U. 2018. Infection, genetics and evolution Ribonucleotide reductase as a drug target against drug resistance Mycobacterium leprae: a molecular docking study. Infect Genet Evol. 60:58–65..
  • Singhal A, Arora G, Virmani R, Kundu P, Khanna T, Sajid A, Misra R, Joshi J, Yadav V, Samanta S, et al. 2015. Systematic analysis of mycobacterial acylation reveals first example of acylation-mediated regulation of enzyme activity of a bacterial phosphatase. J Biol Chem. 290(43):26218–26234.
  • Soares ACF, Cabral MMW, Martins CHG, Ferreira AE, Bergamo PAS, Omosa LK, Midiwo JO, Parreira RLT, Heleno VCG. 2017. Study of anti-tuberculosis activity behaviour of natural kaurane and trachylobane diterpenes compared with structural properties obtained by theoretical calculations. Nat Prod Commun. 12(5):763–769.
  • Talib WH, Mahasneh AM. 2010. Antiproliferative activity of plant extracts used against cancer in traditional medicine. Sci Pharm. 78(1):33–45.
  • The Plant List. 2010. Published on the Internet Version 1.1. [accessed 2020 April]. http://www.theplantlist.org/.
  • Wankhade G, Kamble S, Deshmukh S, Jena L, Waghmare P, Harinath BC. 2017. Inhibition of mycobacterial CYP125 enzyme by sesamin and β‑sitosterol: an in silico and in vitro study. Biomed Biotechnol Res J. 1(1):49–54.
  • WHO. 2009. Antimicrobial resistance, global report on surveillance. p. 1–9. ISBN 9789241564748. WHO Press. http://www.who.int/drugresistance/documents/surveillancereport/en/.

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