In vitro Mechanistic Assays of Tetracyclic Iridoid Compounds Isolated from Morinda lucida Benth in Leishmania species
Faustus Akankperiwen Azerigyik, Michael Amoa-Bosompem, Thelma Tetteh, Frederick Ayertey, Ama Nyamekye Antwi, Kofi Baffour-Awuah Owusu, Kofi Kwofie Dadzie, Georgina Isabella Djameh, Mark Tetteh-Tsifoanya, Shiro Iwanaga, Alfred Ampomah Appiah, Tomoe Ohta, Takuhiro Uto, Yukihiro Shoyama, Nobuo Ohta, Theresa Manful Gwira, Mitsuko Ohashi
European Journal of Medicinal Plants · pp. 1–14 · Published 14 Nov 2018
10.9734/EJMP/2018/44972Abstract
Aims: This study investigates the activity of tetracyclic iridoid compounds against Leishmania spp. and the mechanism(s) of action. Study Design: An experimental study. Place and Duration: Department of Parasitology, Noguchi Memorial Institute for Medical Research, between September 2017 and July 2018. Methodology: The 50 % inhibitory concentration (IC50) of compounds against Leishmania donovani and L. major promastigotes were determined after 48 hours of incubation using the Alamar blue. Cytotoxicity of compounds was determined against cell lines using MTT assay. The anti-amastigote activity of compounds was further assessed by DAPI (4′,6-diamidino-2-phenylindole) staining. The mechanism of cell death induced by compounds was determined using nexin assay. Mitosis, cytokinesis and morphometry were monitored by DAPI and Kinetoplastid Membrane Protein (KMP) staining. Cell cycle arrest induced by compounds was analyzed by FACS. Results: Molucidin and ML-F52 inhibited the growth of promastigote in L. donovani (Molucidin; IC50 = 2.94±0.60 µM, ML-F52; IC50 = 0.91±0.50 µM) and L. major (Molucidin; IC50 = 1.85± 0.20 µM, ML-F52; IC50 = 1.77± 0.20 µM). ML-F52 had a 10-fold cytotoxic effect on parasites relative to normal cell lines. Against intracellular forms, Molucidin and ML-F52 inhibited intracellular amastigote replication and infectivity. Amphotericin B, Molucidin and ML-F52, induced a dose-dependent apoptotic effect on promastigotes. Although no change in KMP-11 expression was observed, iridoids inhibited cell division and morphological changes in promastigote cultures. Molucidin and ML-F52 induced apoptotic mechanism of cell death, inhibited cytokinesis and induced phenotypic changes in promastigotes. Molucidin further induced ‘’nectomonad-like’’ forms and loss of kDNA, ML-F52 induced ‘cell-rounding’ with loss of flagellum. Molucidin also induced cell growth arrest at G2-M phase (54.5 %). A significant induction of apoptosis (P = .05) was shown by an enhanced peak in the sub-G1 confirming the apoptotic inducing properties of iridoids. Conclusion: This study shows the anti-leishmania activity of tetracyclic iridoids which could be further investigated for the development of new chemotherapy against Leishmaniasis.
Cited by 6
6 citations reported by external sources — individual citing-article records aren't available to list yet.
Related research
- Prevalence and Predictors of Use of Herbal Medication for Dermatological Conditions in South-South Nigeria — shares topic coverage
- Antibiotic-Resistant Enterococcus faecalis Isolated from Food Canteens in Osun States, Nigeria — shares topic coverage
- In vitro Screening of Herbal Extracts and Antibiotics against Bacteria Isolated from Fish Products at Retail Outlets — shares topic coverage
- Antifungal Effects of Methanolic Extract of Stem Bark of Bridelia ferruginea Benth. Leaves of Aloe vera L. and Stem Bark of Alstonia boonei De Wild — shares topic coverage
- Susceptibility of Escherichia coli, Salmonella typhi and Shigella spp to Ethanoic Extract of Lawsonia inermis — shares topic coverage
Article metrics
Real usage data collected on this platform.
0
Page views
0
PDF downloads
0
Outbound clicks
6
Citations
Views by country
Approximate, from request IP at view time — not citizenship or institution. Countries with fewer than 5 views are grouped as "Other".
No views recorded yet.
Traffic sources
Referring site, by host.
No traffic recorded yet.
Views and downloads exclude known bots/crawlers. Citations combines this platform's own DOI-resolved index with each external source's own reported total — see Cited by above for individually listed citing works. Last refreshed 0 seconds ago.