Zobrazeno 1 - 5
of 5
pro vyhledávání: '"Eswaraiah Sajja"'
Autor:
Venkata Narasayya Saladi, Bal Raju Kammari, Arthanareeswari Maruthapillai, Sudarshan Mahapatra, Ramanaiah Chennuru, Eswaraiah Sajja, Srinivasan Thirumalai Rajan, Vijayavitthal T. Mathad
Publikováno v:
ACS Omega, Vol 7, Iss 8, Pp 7032-7044 (2022)
Externí odkaz:
https://doaj.org/article/ceff9a8a4705486896d0938aee55f0c6
Autor:
Naveenkumar Kolla, Chandrashekar R. Elati, Pravinchandra J. Vankawala, Srinivas Gangula, Eswaraiah Sajja, Yerremilli Anjaneyulu, Apurba Bhattacharya, Venkataraman Sundaram, Vijayavitthal T. Mathad
Publikováno v:
CHIMIA, Vol 60, Iss 9 (2006)
The development of a large-scale synthesis for (1S)-3-methyl-1-(2-piperidin-1-ylphenyl)butan-1-amine (S-(+)-1), a key intermediate of repaglinide (2), is described. The process conditions for S-(+)-1 involving nucleophilic substitution, Grignard rea
Externí odkaz:
https://doaj.org/article/7a74b464ce584d1d93f5c6f00548117f
Autor:
Ganapathi Chary L. Nagunuri, Vidya Katangoor, Venkateshwarlu Surigilla, Eswaraiah Sajja, Thirumalai Rajan Srinivasan, Vijayavitthal T. Mathad
Publikováno v:
Organic Process Research & Development. 26:3265-3275
Autor:
Satyanarayana Reddy Manne, Thirumalai Rajan Srinivasan, Pradeep Rebelli, Hareesh Kumar Nadendla, Eswaraiah Sajja, Venkat Reddy Ghojala, Kista Reddy Chepyala, Kondal Reddy Bairy
Publikováno v:
Organic Preparations and Procedures International. 45:510-514
Endothelins are a family of structurally related 21-amino acid peptides with two cysteine-cysteine disulfide bridges. Endothelin itself has recently been shown to play a pivotal role in the develop...
Autor:
Pravinchandra J. Vankawala, Vijayavitthal T. Mathad, Venkataraman Sundaram, Chandrashekar R. Elati, Srinivas Gangula, Eswaraiah Sajja, Apurba Bhattacharya, Naveenkumar Kolla, Yerremilli Anjaneyulu
Publikováno v:
CHIMIA, Vol 60, Iss 9 (2006)
The development of a large-scale synthesis for (1S)-3-methyl-1-(2-piperidin-1-ylphenyl)butan-1-amine (S-(+)-1), a key intermediate of repaglinide (2), is described. The process conditions for S-(+)-1 involving nucleophilic substitution, Grignard reac