In situ pocket-type microcarrier (PMc) as a therapeutic composite: Regeneration of cartilage with stem cells, genes, and drugs.

J Control Release

Laboratory of Nano-regenerative Medical Engineering, Department of Biomedical Science, College of Life Science, CHA University, 618, CHA Biocomplex, Sampyeong-Dong, Bundang-gu, Seongnam-si 13488, Republic of Korea. Electronic address:

Published: April 2021

AI Article Synopsis

  • Researchers developed pocket-type micro-carriers (PMc) with adjustable pore sizes over 30 μm using Pluronic F-127 and biodegradable PLGA to enhance cell adhesion.
  • The optimal F-127 to DOPA-bPEI ratio was found to be 1:1, allowing PMcs to effectively support the adhesion of 20-30 μm stem cells.
  • The PMcs, enhanced with SOX9 pDNA and dexamethasone, promoted cartilage differentiation in stem cells, proving effective in both lab and animal models.

Article Abstract

We prepared pocket-type micro-carriers (PMc) with pores larger than 30 μm for use in cell delivery by adding 40 mg pluronic F-127 copolymers (F-127) to biodegradable PLGA dissolved in dichloromethane solution. The controlling the size of the pockets in this way facilitates the adhesion of cells by regulating the size of the pockets according to the cells having various sizes. The size of PMc pores could be controlled within a range of 2 to 30 μm by varying the F-127 content. The ratio of F-127 to DOPA-bPEI was most appropriate at 1: 1, and the pocket size at 10 mg/ml of F-127 was appropriate for adhering 20-30 μm stem cells. F-127 containing SOX9 pDNA, in combination with DOPA-polyethylene-coated gold nanoparticles and dexamethasone loaded in PMcs, promoted cartilage differentiation. Gold nanoparticles complex and dexamethasone (DEX) loaded in PMcs were identified by micro-CT imaging and fluorescence imaging, respectively. By captured in pore generated on/in microspheres, the stem cells were safe and stable for use in delivery, both in vitro and in an animal model. Thus, microsphere pores can safely capture stem cells, and at the same time provide a microenvironment in which the captured stem cells can differentiate into chondrocytes.

Download full-text PDF

Source
http://dx.doi.org/10.1016/j.jconrel.2020.08.057DOI Listing

Publication Analysis

Top Keywords

stem cells
20
pmc pores
8
size pockets
8
gold nanoparticles
8
loaded pmcs
8
cells
7
f-127
6
stem
5
situ pocket-type
4
pocket-type microcarrier
4

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!