scholarly journals ISOLATION AND CHARACTERIZATION OF BIOACTIVE COMPOUNDS IN MEDICINAL PLANT Centella asiatica AND STUDY THE EFFECTS ON FUNGAL ACTIVITIES

2021 ◽  
Vol 10 (4) ◽  
pp. 631-635
Author(s):  
Dobgima John Fonmboh ◽  
Ejoh Richard Abah ◽  
Tembe Estella Fokunang ◽  
Bayaga Herve ◽  
Gerald Ngo Teke ◽  
...  

Herbal plants are very important in traditional community use and enrich our plant biodiversity and conservation. Natural products are vital substances of traditional knowledge systems in complementary and alternative medicine, nutraceutical, food supplements, and pharmaceutical bioactive metabolites of new chemical entities. Bioactive secondary metabolites from herbal plants of different forms are main sources and provide major opportunities for drug active pharmaceuticals due to the diverse flora and fauna biodiversity that produces the necessary available chemical diversity. There has been an increasing popularity in phytochemical research within the high through put (HTS) screening programs in search of lead. Phytochemicals of herbal extracts for traditional uses contain various types of bioactive metabolites of pharmaceutical and pharmacotherapeutic nature, and many phytomedicines for different therapeutic areas have been derived from herbal products. This paper is aimed at giving an insight into the extraction, isolation, and characterization of the rich medicinal plant biodiversity of potential pharmaceutical importance and the major drawbacks and challenges in the extraction, isolation, and characterization of phytochemicals in plant extracts. Phytochemicals in medicinal plants have been studied with more emphasis on the extraction process which is a vital stage in the analysis of bioactive compounds in medicinal plant research. The advantages and disadvantages of the different extraction methods is important to discuss following the regulatory guidelines and different pharmacopoeia. The analysis of bioactive molecules in herbal products involves the applications of various phytochemical screening methods, and the use of chromatographic techniques such as TLC and HPLC, including in some cases the non-chromatographic methods like Fourier Transform Infra-Red (FTIR), immunoassay. This paper has been motivated by the challenges faced by most pharmacy students in data mining of information on phytochemical screening and testing of biological activities in projects related to herbal plants research. This write up is also geared towards providing students with information on the preclinical drug discovery process towards the formulation of an improved traditional medicine/ phytomedicine.


2021 ◽  
Vol 13 (1) ◽  
pp. 396-401
Author(s):  
Khushbu Parihar ◽  
Alkesh Tak ◽  
Praveen Gehlot ◽  
Rakesh Pathak ◽  
Sunil Kumar Singh

The genus Nocardiopsis is well known to produce secondary metabolites especially antibacterial bioactive compound. Isolation and characterization of bioactive compounds producing novel isolates from unusual habitats are crucial. The present study was aimed to explore Didwana dry salt lake of Rajasthan state in India for the isolation and characterization of actinomycetes. The isolated actinomycetes isolates were characterized based on culture characteristics, biochemical tests and 16S rRNA gene sequencing. The 16S rRNA gene sequence analysis revealed that all the five isolates inhabiting soil of the said dry salt lake of Didwana, Rajasthan belonged to four species of Nocardiopsis viz., N. synnemataformans, N. potens, N. prasina and N. dassonvillei subsp. albirubida. The molecular identification based on 16S rRNA gene sequences was found accurate and robust. The phylogram generated through multiple sequence alignment of all the test isolates of Nocardiopsis revealed that the isolates aroused from a single branch and validated monophyletic association. The present study is the first report of exploring Nocardiopsis isolates from the dry salt lake. These characterized Nocardiopsis isolates isolated from Didwana dry salt lake habitat are novel stains and can be of significance in the detection and utilization of novel bioactive compounds.


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