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Biocompatibility of rat olfactory ensheathing cells and fibrin glue / 中国组织工程研究
Chinese Journal of Tissue Engineering Research ; (53): 9249-9252, 2009.
Article in Chinese | WPRIM | ID: wpr-404751
ABSTRACT

BACKGROUND:

Fibrin glue has been demonstrated to function as a kind of biomaterial with high quality. It has been used in nerve tissue engineering and proved to be a kind of scaffold for some cells.

OBJECTIVE:

To explore the biocompatibility of fibrin glue and olfactory ensheathing cells (OECs).DESIGN, TIME AND

SETTING:

An in vitro control trial based on cytology was performed at the Institute of Neurobiology,Nantong University from August 2007 to February 2008.MATERIALS Fibrin glue was made of fibrin and catalyst, and OECs derived from rats' olfactory bulb were normally primary-cultured.

METHODS:

OECs were divided into control (OECs clone spheres were cultured alone) and in fibrin glue (OECs clone spheres were cultured and combined with fibrin glue) groups. After 1 week of culture, the proliferation of OECs were observed by convert microscope and detected by S-100 immunofluorescence histochemical staining.MAIN OUTCOME M EASURES OECs morphology, cell count, the area of the cell bodies and the perimeter of the cell were determined.

RESULTS:

OECs could survive, migrate in fibrin glue, and float in the fibrin glue in the lower layer. After 7 days of incubation, cell body exhibited fusiform or triangle, predominantly bipolar or bipolar. The number of the S-100 positive cells was more, and cell bodies were larger in fibrin glue group than control group (P < 0.05). However, there was no obvious difference between two groups in cell perimeter (P > 0.05).

CONCLUSION:

Fibrin glue has good biocompatibility with OECs, and OECs can survive and migrate in fibrin glue.
Full text: Available Index: WPRIM (Western Pacific) Language: Chinese Journal: Chinese Journal of Tissue Engineering Research Year: 2009 Type: Article

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Full text: Available Index: WPRIM (Western Pacific) Language: Chinese Journal: Chinese Journal of Tissue Engineering Research Year: 2009 Type: Article