Evaluation of Antibacterial Potency of Crude Ethyl Acetate and Ethanol Extracts of Morinda lucida Leaf, Stem and Bark on Mycobacterium Species, Isolated from the Chest Hospital, Obafemi Awolowo Teaching University, Ile-Ife, Osun State, Nigeria

Temitope, Osuntokun and Oluduro, A. and Odubanjo, O. and Dada, T. (2016) Evaluation of Antibacterial Potency of Crude Ethyl Acetate and Ethanol Extracts of Morinda lucida Leaf, Stem and Bark on Mycobacterium Species, Isolated from the Chest Hospital, Obafemi Awolowo Teaching University, Ile-Ife, Osun State, Nigeria. Journal of Advances in Medical and Pharmaceutical Sciences, 5 (3). pp. 1-8. ISSN 23941111

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Abstract

The plant Morinda lucida falls under the family Rubiaceae known to have wide usage in traditional medicine. Morinda lucida is a tropical West African tree of medium-size about 18–25 m tall, the bark is grey to brown in colour, flowers are white in colour, the fruit is a drupe, seed is ellipsoid, yellowish and soft. The purpose of this research work is to determine the antimicrobial properties of Morinda lucida against Mycobacterium species, a very virulent and infectious organism, isolated from the Chest Hospital, Obafemi Awolowo University, Ile-Ife, Osun State, Nigeria. The method used to determine the antimicrobial potency of the plant extracts is the Agar well diffusion method. The antibacterial potency of Ethyl acetate and ethanol extracts of Morinda lucida leaf, stem, and bark were tested against mycobacterium species including Mycobacterium fortuitum (ATCC 6841), Mycobacterium smegmatis (ATCC 19420, Mycobacterium abscessus (ATCC 19977), and Mycobacterium phlei (ATCC 19240). All extracts exhibited various degree of antibacterial potency against the test organisms with the ethyl acetate extracts of the leaf and bark being the most active and ethanol extracts were the least active. The zone of inhibition of ethyl acetate leaf, bark and stem extracts range between 3.0 mm to 18.0 mm and the zone of inhibition of ethanol leaf, bark and stem extracts ranges between 1.0 mm to 10.0 mm respectively.

Item Type: Article
Subjects: Academics Guard > Medical Science
Depositing User: Unnamed user with email support@academicsguard.com
Date Deposited: 06 Jun 2023 08:15
Last Modified: 02 Sep 2024 13:06
URI: http://science.oadigitallibraries.com/id/eprint/883

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