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Development of a green, concise synthesis of nicotinamide derivatives catalysed by Novozym® 435 from Candida antarctica in sustainable continuous-flow microreactors.
Sheng, Zhi-Kai; Liu, Yi; Du, Li-Hua; Zhang, Shi-Yi; Zhang, Ao-Ying; Xie, Han-Jia; Lin, Hang; Yan, Bing-Lin; Xue, Miao-Miao; Ruan, Zhi-Xuan; Fu, Guo-Neng; Pan, Bing-Le; Zhou, Tong-Yao; Luo, Xi-Ping.
Afiliação
  • Sheng ZK; College of Pharmaceutical Science, ZheJiang University of Technology Zhejiang Hangzhou 310014 China orgdlh@zjut.edu.cn +86 571 88320903 +86-189-690-693-99.
  • Liu Y; College of Pharmaceutical Science, ZheJiang University of Technology Zhejiang Hangzhou 310014 China orgdlh@zjut.edu.cn +86 571 88320903 +86-189-690-693-99.
  • Du LH; College of Pharmaceutical Science, ZheJiang University of Technology Zhejiang Hangzhou 310014 China orgdlh@zjut.edu.cn +86 571 88320903 +86-189-690-693-99.
  • Zhang SY; College of Pharmaceutical Science, ZheJiang University of Technology Zhejiang Hangzhou 310014 China orgdlh@zjut.edu.cn +86 571 88320903 +86-189-690-693-99.
  • Zhang AY; College of Pharmaceutical Science, ZheJiang University of Technology Zhejiang Hangzhou 310014 China orgdlh@zjut.edu.cn +86 571 88320903 +86-189-690-693-99.
  • Xie HJ; College of Pharmaceutical Science, ZheJiang University of Technology Zhejiang Hangzhou 310014 China orgdlh@zjut.edu.cn +86 571 88320903 +86-189-690-693-99.
  • Lin H; College of Pharmaceutical Science, ZheJiang University of Technology Zhejiang Hangzhou 310014 China orgdlh@zjut.edu.cn +86 571 88320903 +86-189-690-693-99.
  • Yan BL; College of Pharmaceutical Science, ZheJiang University of Technology Zhejiang Hangzhou 310014 China orgdlh@zjut.edu.cn +86 571 88320903 +86-189-690-693-99.
  • Xue MM; College of Pharmaceutical Science, ZheJiang University of Technology Zhejiang Hangzhou 310014 China orgdlh@zjut.edu.cn +86 571 88320903 +86-189-690-693-99.
  • Ruan ZX; College of Pharmaceutical Science, ZheJiang University of Technology Zhejiang Hangzhou 310014 China orgdlh@zjut.edu.cn +86 571 88320903 +86-189-690-693-99.
  • Fu GN; College of Pharmaceutical Science, ZheJiang University of Technology Zhejiang Hangzhou 310014 China orgdlh@zjut.edu.cn +86 571 88320903 +86-189-690-693-99.
  • Pan BL; College of Pharmaceutical Science, ZheJiang University of Technology Zhejiang Hangzhou 310014 China orgdlh@zjut.edu.cn +86 571 88320903 +86-189-690-693-99.
  • Zhou TY; College of Pharmaceutical Science, ZheJiang University of Technology Zhejiang Hangzhou 310014 China orgdlh@zjut.edu.cn +86 571 88320903 +86-189-690-693-99.
  • Luo XP; Zhejiang Provincial Key Laboratory of Chemical Utilization of Forestry Biomass, Zhejiang A&F University Zhejiang Hangzhou 311300 China.
RSC Adv ; 14(1): 131-138, 2024 Jan 02.
Article em En | MEDLINE | ID: mdl-38173597
ABSTRACT
An increasing number of studies have shown that many nicotinamide derivatives exhibited extensive biological activities, such as anti-inflammatory and antitumor activity. In this paper, a green, concise synthesis of nicotinamide derivatives in sustainable continuous-flow microreactors catalysed by Novozym® 435 from Candida antarctica has been developed. Application of an easily obtainable and reusable lipase in the synthesis of nicotinamide derivatives from methyl nicotinate and amines/benzylamines reacted for 35 min at 50 °C led to high product yields (81.6-88.5%). Environmentally friendly tert-amyl alcohol was applied as a reaction medium. Substantially shorter reaction times as well as a significant increase in the product yield were obtained as compared to the batch process. This innovative approach provides a promising green, efficient and rapid synthesis strategy for pharmaceutical synthesis and further activity research of novel nicotinamide derivatives.

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article