4.6 Article

Delivering MC3T3-E1 cells into injectable calcium phosphate cement through alginate-chitosan microcapsules for bone tissue engineering

Journal

JOURNAL OF ZHEJIANG UNIVERSITY-SCIENCE B
Volume 15, Issue 4, Pages 382-392

Publisher

ZHEJIANG UNIV
DOI: 10.1631/jzus.B1300132

Keywords

Injectable scaffold; Calcium phosphate cement; Osteoblast; Microencapsulation; Cell release; Chitosan

Funding

  1. National Natural Science Foundation of China [30772447]
  2. Talent Introduction Project of Peking University Health Science Center, China [bmu2009139]

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To deliver cells deep into injectable calcium phosphate cement (CPC) through alginate-chitosan (AC) microcapsules and investigate the biological behavior of the cells released from microcapsules into the CPC. Mouse osteoblastic MC3T3-E1 cells were embedded in alginate and AC microcapsules using an electrostatic droplet generator. The two types of cell-encapsulating microcapsules were then mixed with a CPC paste. MC3T3-E1 cell viability was investigated using a Wst-8 kit, and osteogenic differentiation was demonstrated by an alkaline phosphatase (ALP) activity assay. Cell attachment in CPC was observed by an environment scanning electron microscopy. Both alginate and AC microcapsules were able to release the encapsulated MC3T3-E1 cells when mixed with CPC paste. The released cells attached to the setting CPC scaffolds, survived, differentiated, and formed mineralized nodules. Cells grew in the pores concomitantly created by the AC microcapsules in situ within the CPC. At Day 21, cellular ALP activity in the AC group was approximately four times that at Day 7 and exceeded that of the alginate microcapsule group (P < 0.05). Pores formed by the AC microcapsules had a diameter of several hundred microns and were spherical compared with those formed by alginate microcapsules. AC microcapsule is a promising carrier to release seeding cells deep into an injectable CPC scaffold for bone engineering.

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