A novel bioactive membrane by cell electrospinning.

Abstract:

:Electrospinning permits fabrication of biodegradable matrices that can resemble the both scale and mechanical behavior of the native extracellular matrix. However, achieving high-cellular density and infiltration of cells within matrices with traditional technique remain challenging and time consuming. The cell electrospinning technique presented in this paper can mitigate the problems associated with these limitations. Cells encapsulated by the material in the cell electrospinning technique survived well and distributed homogenously within the nanofibrous membrane, and their vitality was improved to 133% after being cultured for 28 days. The electrospun nanofibrous membrane has a certain degradation property and favorable cell-membrane interaction that supports the active biocompatibility of the membrane. Its properties are helpful for supporting cell attachment and growth, maintaining phenotypic shape, and secreting an ample amount of extracellular matrix (ECM). This novel membrane may be a potential application within the field of tissue engineering. The ability of cell electrospinning to microintegrate cells into a biodegradable fibrous matrix embodies a novel tissue engineering approach that could be applied to fabricate a high cell density elastic tissue mimetic.

journal_name

Exp Cell Res

authors

Chen H,Liu Y,Hu Q

doi

10.1016/j.yexcr.2015.08.007

subject

Has Abstract

pub_date

2015-11-01 00:00:00

pages

261-6

issue

2

eissn

0014-4827

issn

1090-2422

pii

S0014-4827(15)30069-0

journal_volume

338

pub_type

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