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of 5
pro vyhledávání: '"Nivedhitha Swaminathan"'
Autor:
Linda Wanika, Joseph R. Egan, Nivedhitha Swaminathan, Carlos A. Duran-Villalobos, Juergen Branke, Stephen Goldrick, Mike Chappell
Publikováno v:
Journal of Biological Engineering, Vol 18, Iss 1, Pp 1-13 (2024)
Abstract Advancements in digital technology have brought modelling to the forefront in many disciplines from healthcare to architecture. Mathematical models, often represented using parametrised sets of ordinary differential equations, can be used to
Externí odkaz:
https://doaj.org/article/da7a9208b906428496f0b411855e299e
Autor:
Nivedhitha Swaminathan, Priyanka Priyanka, Anurag S. Rathore, Senthilkumar Sivaprakasam, Senthilmurugan Subbiah
Publikováno v:
Biotechnology and Bioengineering. 119:922-935
Real-time estimation of physiological properties of the cell during recombinant protein production would ensure enhanced process monitoring. In this study, we explored the application of dielectric spectroscopy to track the fed-batch phase of recombi
Autor:
Naresh Mohan, Vimal Katiyar, Subbi Rami Reddy Tadi, Kiran Kumar Gali, Manickavasagam Murugesan, Nivedhitha Swaminathan, Senthilkumar Sivaprakasam
Publikováno v:
Biomass Conversion and Biorefinery. 13:2255-2265
Valorization of cassava fibrous waste by lactic acid bacteria (LAB) into D-lactic acid (DLA) may assuage the massive supply chain for the synthesis of alternative bioplastics such as PLA. This investigation aims at developing a potential LAB cell fac
Autor:
Naresh Mohan, Kiran Kumar Gali, Senthilkumar Sivaprakasam, Nivedhitha Swaminathan, Vimal Katiyar, Arun E.V.R., Subbi Rami Reddy Tadi
Publikováno v:
Environmental Technology & Innovation. 22:101519
Cassava fibrous waste (CFW) valorization on the synthesis of D (-) lactic acid (DLA) holds enormous importance, particularly in the production of thermostable and biodegradable polymers. In this study, microbial kinetic modelling was carried out to i
Autor:
Akshay Achar, Naresh Mohan, Satya Sai Pavan, Senthilkumar Sivaprakasam, Nivedhitha Swaminathan
Publikováno v:
Biochemical Engineering Journal. 152:107367
Thermodynamic analysis of carbon flux competing for pathways of S. zooepidemicus in the production of catabolic (Lactic acid) and anabolic (Biomass and Hyaluronic Acid) products is investigated to assimilate the thermodynamic advantages of biopolymer