Isolation of a potential anti-cancer compound from Mangifera zeylanica leaves and investigation of its effects

dc.contributor.authorPerera, A.A.D.N.
dc.contributor.authorSamarakoon, S.R.
dc.contributor.authorEdiriweera, M.K.
dc.contributor.authorTennekoon, K.H.
dc.date.accessioned2026-09-09T05:32:06Z
dc.date.issued2023
dc.description.abstractLung cancer has been estimated to cause the highest number of cancer deaths in 2023. Of two subtypes of lung cancer, Non-Small Cell Lung Cancer (NSCLC) is the most frequently reported. Currently used treatment options for NSCLC are chemotherapy, radiotherapy and surgery. However, chemo- and radio- therapies result in severe side effects. Therefore, invention of new treatment strategies for NSCLC is timely needed. Investigations on plant derived compounds is becoming a promising approach for discovering potential anti-cancer drug leads. Mangifera zeylanica (family: Anacardiaceae) is a plant endemic to Sri Lanka and used for cancer treatment in traditional medicine. We have previously reported that the chloroform extract of M. zeylanica leaves is cytotoxic to non-small cell lung cancer cells (NCI-H292) with less cytotoxicity to normal lung fibroblasts. In the present study we isolated an active compound (B-II-c-a) from the chloroform extract using silica-gel column chromatography, size exclusion chromatography and reversed phase preparative high performance liquid hromatography. Cytotoxicity of B-II-c-a on NCI-H292 cells was evaluated using Sulforhodamin B (SRB) assay. The effects of B-II-c-a on cell migration and colony formation was investigated using wound healing assay and colony formation assay respectively. Assessment of potential apoptotic effects of B-II-c-a was carried out using Ethidium Bromide/Acridine Orange (AO/EB) staining. The compound B-II-c-a showed cytotoxic effects on NCI-H292 NSCLC cells and MRC-5 normal lung fibroblast cells following 24h exposure (IC50 of 3.22 μg/mL and 7.83 μg/mL respectively). Moreover B-II-c-a resulted in inhibition of colony formation and cell migration. AO/EB staining revealed that B-II-c-a induces apoptosis in NCI-2H92 cells. Structure determination of B-II-c-a is currently in progress. Keywords: SRB assay; Non-Small Cell Lung Cancer; anti-cancer This work was supported by the Ministry of Science, Technology and Research, Sri Lanka (Grant No: MSTR/TRD/AGR/3/02/08) and constitutes a part of the PhD studies of PAADN.
dc.identifier.urihttps://archive.cmb.ac.lk/handle/70130/9148
dc.language.isoen
dc.publisherUniversity of Colombo
dc.subjectSRB assay
dc.subjectNon-Small Cell Lung Cancer
dc.subjectanti-cancer
dc.titleIsolation of a potential anti-cancer compound from Mangifera zeylanica leaves and investigation of its effects
dc.typeArticle

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