Sucrose-derived porous carbon catalyzed lignin depolymerization to obtain a product with application in type 2 diabetes mellitus


Here are the Sucrose-derived porous carbon catalyzed lignin depolymerization to obtain a product with application in type 2 diabetes mellitus journals presenting the latest research across various disciplines. From social sciences to technology, each article is expected to provide valuable insights to our readers.

Sucrose derived porous carbon catalyzed lignin in plants, sucrose derived porous carbon catalyzed lignin adalah, sucrose derived porous water absorbing, sucrose derived porous definition, sucrose derived porous materials, sucrose derived porous concrete, sucrose derived porous carbon catalyzed meaning, sucrose derived porous carbon catalyzed lignin definition.

Sucrose-derived porous carbon catalyzed lignin depolymerization to obtain a product with application in type 2 diabetes mellitus

As the most important phenolic biopolymer in nature, lignin shows promising application potentialities in various bioactivities in vivo and in vitro, mainly including antioxidant, anti-inflammatory, hypolipidemic, and antidiabetic control. In this work, several carbon-based solid acids were synthesized to catalyze the fragmentation of organosolv lignin (OL). The generated lignin fragments, with controllable molecular weight and functional groups, were further evaluated for their application in the prevention and treatment of type 2 diabetes mellitus (T2DM). The results suggested that the urea-doped catalyst (SUPC) showed a more excellent catalytic performance in producing diethyl ether insoluble lignin (DEIL) and diethyl ether soluble lignin (DESL). In addition, the lignin fragments have a good therapeutic effect on the cell model of T2DM. Compared with the insulin resistance model, DEIL obtained by catalytic depolymerization of OL with SUPC could improve the glucose consumpt ion of insulin-resistant cells. Moreover, low-concentration samples (50 μg/mL) can promote glucose consumption (19.7 mM) more than the traditional drug rosiglitazone (17.5 mM). This work demonstrates the prospect of depolymerized lignin for the prevention and treatment of T2DM and provides a new application field for lignin degradation products. © 2024 Elsevier B.V.

Authors : Qi S.; Zhang T.; Zhang C.; Jiang B.; Huang C.; Yong Q.; Jin Y.

Source : Elsevier B.V.

Article Information

Year 2024
Type Article
DOI 10.1016/j.ijbiomac.2024.135170
ISSN 01418130
Volume 279

You can download the article here


If You have any problem, contact us here


Support Us:

Download Now Buy me a coffee Request Paper Here