4.5 Article

Improved oral delivery of insulin by PLGA nanoparticles coated with 5β-cholanic acid conjugated glycol chitosan

期刊

BIOMEDICAL MATERIALS
卷 16, 期 6, 页码 -

出版社

IOP Publishing Ltd
DOI: 10.1088/1748-605X/ac2a8c

关键词

nanoparticle; PLGA; glycol chitosan; insulin; oral delivery

资金

  1. National Natural Science Foundation of China [82070801]
  2. Priority Academic Program Development of Jiangsu Higher Education Institutions (PAPD)
  3. The '111' project [B16046]

向作者/读者索取更多资源

A drug delivery system, GC-CA@PLGA NPs, has been developed to improve the oral administration of insulin with excellent stability, good biocompatibility, and significantly increased bioavailability for potential application in the treatment of diabetes.
Oral insulin has been regarded as the best alternative to insulin injection in therapy of diabetes because of its convenience and painlessness. However, several obstacles in the gastrointestinal tract, such as gastric acid and enzyme, greatly reduce the bioavailability of oral insulin. Herein, we report design and preparation of poly (d, l-lactic-co-glycolic acid) nanoparticles (PLGA NPs) coated with 5 beta-cholanic acid modified glycol chitosan (GC-CA) (GC-CA@PLGA NPs) to improve the oral delivery of insulin. The GC-CA@PLGA NPs with the size of (302.73 +/- 5.13 nm) and zeta potential of (25.03 +/- 0.31 mV) were synthesized using the double-emulsion method. The insulin-loading capacity and encapsulation efficiency were determined to be 5.77 +/- 0.58% and 51.99 +/- 5.27%, respectively. Compared with GC-modified PLGA NPs (GC@PLGA NPs) and bare PLGA NPs, the GC-CA@PLGA NPs showed excellent stability and uptake by Caco-2 cells after simulated gastric acid digestion. Further experiment suggests good biocompatibility of GC-CA@PLGA NPs, including hemolysis and cytotoxicity. In in vivo experiment, the insulin loaded in the GC-CA@PLGA NPs exhibited a long-term and stable release profile for lowering blood glucose and presented 30.43% bioavailability in oral administration. In brief, we have developed an efficient and safe drug delivery system, GC-CA@PLGA NPs, for significantly improved oral administration of insulin, which may find potential application in the treatment of diabetes.

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