Krishna Mohan Chinnala
Kakatiya University
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Publication
Featured researches published by Krishna Mohan Chinnala.
Nutrition Journal | 2004
Srinivas Nammi; Saisudha Koka; Krishna Mohan Chinnala; Krishna M. Boini
Obesity is a multi-factorial disorder, which is often associated with many other significant diseases such as diabetes, hypertension and other cardiovascular diseases, osteoarthritis and certain cancers. The management of obesity will therefore require a comprehensive range of strategies focussing on those with existing weight problems and also on those at high risk of developing obesity. Hence, prevention of obesity during childhood should be considered a priority, as there is a risk of persistence to adulthood. This article highlights various preventive aspects and treatment procedures of obesity with special emphasis on the latest research manifolds.
Journal of Pharmacy and Bioallied Sciences | 2015
Bhanusree Yerragunta; Satheesh Jogala; Krishna Mohan Chinnala; Jithan Aukunuru
Objective: The purpose of this study was to develop an ideal microsphere formulation of risperidone that would prolong the drug release for 3 months in vivo and avoid the need for co-administration of oral tablets. Materials and Methods: Polycaprolactones (PCL) were used as polymers to prepare microspheres. The research included screening and optimizing of suitable commercial polymers of variable molecular weights: PCL-14000, PCL-45000, PCL-80000 or the blends of these polymers to prepare microspheres with zero-order drug-releasing properties without the lag phase. In the present study, the sustained release risperidone microspheres were prepared by o/w emulsion solvent evaporation technique and the yield was determined. Microspheres were evaluated for their drug content and in vitro drug release. Microspheres prepared using a blend of PCL-45000 and PCL-80000 at a ratio of 1:1 resulted in the release of the drug in a time frame of 90 days, demonstrated zero-order drug release without lag time and burst release. This formulation was considered optimized formulation. Optimized formulation was characterized for solid state of the drug using differential scanning calorimetry, surface morphology using scanning electron microscopy and in vivo drug release in rats. Results: The surface of the optimized formulation was smooth, and the drug changed its physical form in the presence of blends of polymers and upon fabrication of microspheres. The optimized formulation also released the drug in vivo for a period of 90 days. Conclusions: From our study, it was concluded that these optimized microspheres showed great potential for a better depot preparation than the marketed Risperdal Consta™ and, therefore, could further improve patient compliance.
Aaps Pharmscitech | 2008
Lingam Meka; Bhaskar Kesavan; Krishna Mohan Chinnala; Venkateswarlu Vobalaboina; Madhusudan Rao Yamsani
Current Trends in Biotechnology and Pharmacy | 2009
Jithan Aukunuru; Krishna Mohan Chinnala; Viswanath Guduri
International Journal of Pharmacy and Pharmaceutical Sciences | 2017
Himabindu Peddapalli; Krishna Mohan Chinnala; Nagaraj Banala
International Journal of Pharmacy and Pharmaceutical Sciences | 2016
Rabi Narayan Panigrahy; Sindhura Gudipati; Krishna Mohan Chinnala
Archive | 2014
Rabi Narayan Panigrahy; Krishna Mohan Chinnala
American Journal of Research in Medical Sciences | 2018
Krishna Mohan Chinnala; Praisy Jayagar; Gayathri Motta; Raghuma Adusumilli; Madhan Mohan Elsani
Asian Journal of Pharmaceutical and Clinical Research | 2017
Madhan Mohan Elsani; Krishna Mohan Chinnala; Prathyusha Achanta; Vijaya Laxmi Vangala
Archive | 2016
Rabi Narayan Panigrahy; Sindhura Gudipati; Krishna Mohan Chinnala