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γ射线辐照对与脱矿骨基质相关的骨诱导作用的影响。

Effects of gamma irradiation on osteoinduction associated with demineralized bone matrix.

作者信息

Han Bo, Yang Zhi, Nimni Marcel

机构信息

Tissue Engineering Laboratory, Department of Surgery, Keck School of Medicine, University of Southern California, 1840 N. Soto Street, EDM-191, Los Angeles, California 90032, USA.

出版信息

J Orthop Res. 2008 Jan;26(1):75-82. doi: 10.1002/jor.20478.

Abstract

Gamma irradiation is frequently used to sterilize implanted devices but has limitations when used on biologically active materials and composites. In this study, we have evaluated the changes of biological activity of demineralized bone matrix (DBM) in the dry state and in the presence of aqueous and non-aqueous carriers while exposed to various levels of ionizing radiation. The activity of DBM in the dry state remains relatively stable with only a small loss of activity. Composites of DBM with a carrier such as lecithin, to which no water has been added, lose activity at approximately the same rate as DBM in the anhydrous form. In composites that contain water, the loss of activity occurs even at much lower levels of radiation exposure. Gamma irradiation does not change cell attachment to the DBM matrix but has an influence on both stem cell and osteoprecursor cell proliferation rates. Because of the limitations imposed by radiation, it seems most practical to handle DBM aseptically throughout the procedures of compositing pastes, putties, or suspensions, and only if necessary exposing the inert excipients to radiation sterilization prior to mixing.

摘要

伽马射线辐照常用于对植入装置进行灭菌,但在用于生物活性材料和复合材料时存在局限性。在本研究中,我们评估了脱矿骨基质(DBM)在干燥状态下以及在水性和非水性载体存在的情况下,暴露于不同水平电离辐射时生物活性的变化。干燥状态下的DBM活性保持相对稳定,仅有少量活性损失。DBM与未添加水的载体(如卵磷脂)的复合材料,其活性损失速率与无水形式的DBM大致相同。在含有水的复合材料中,即使在低得多的辐射暴露水平下也会发生活性损失。伽马射线辐照不会改变细胞与DBM基质的附着,但会影响干细胞和骨前体细胞的增殖速率。由于辐射带来的限制,在整个复合糊剂、油灰或悬浮液的过程中对DBM进行无菌处理似乎最为实际,并且仅在必要时在混合前将惰性辅料进行辐射灭菌。

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