Collagen gel coating or cyclosporine A for improving histocompatibility of chicken calamus keratin
DONG Wei-ren
QIU Xin-xia
ZHAO Bing-lei
CHEN Ying-hua
XIAO Ying-qing
GUO Jia-song
ZOU Zhong-zhi
Abstract:Objective To improve the histocompatibility of chicken calamus keratin (CCK) graft by collagen-gel coating or using ofcyclosporine A (CsA). Methods Thirty SD rats were equally randomized into 5 groups, and in 4 of them, CCK implantation into the bilateral erector spinae was performed on different treatment protocols. In group A, the rats received daily intraperitoneal injection of CsA (5 mg/kg) for two consecutive weeks after CCK implantation; in group B, CCK was soaked in CsA (2.5 mg/ml) solution at 4℃ for 48 h before grafting; in group C, CCK coated with collagen gel was grafted;and in group D, only CCK was implanted. Rats in the fifth group received only cutaneous incision as well as muscular dissection to serve as the blank control. CCK degradation and its effect on the surrounding tissues were observed at 2, 4 and 8weeks after grafting. Immunohistochemistry was performed to identify T lymphocyte infiltration in the host tissues. Results All the rats survived the operation. Numerous macrophages, especially multinucleated giant cells occurred on the peripheral of the CCK grafts, and small degraded CCK pieces were observed in their cytoplasm. Only a few inflammatory cells were seen in the host tissues. At 2, 4 and 8 weeks after CCK implantation, only a few CD3-positive cells were found in all the groups, and in group A and B, the density of T lymphocytes was significantly lower than that in group D, and there was no significant difference between group A and the blank control group. Conclusions CsA significantly improves the histocompatibility of CCK material, and short-term systemic CsA administration achieves the best results. Macrophages, especially multinucleated giant cells participate in CCK degradation in vivo.
Keywords:chicken calamus keratincyclosporine AcollagenT lymphocytesmacrophages
Publication Date:2007-01-01
Online Publishing Date:2025-08-15(First online date of this platform, not the publication date of the document)
Pages:5( 751-755 )
