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辐射灭菌对通过冻干和深度冷冻保存的骨植入物的骨诱导特性及重塑速率的影响。

Effect of radiation sterilization on the osteoinductive properties and the rate of remodeling of bone implants preserved by lyophilization and deep-freezing.

作者信息

Dziedzic-Goclawska A, Ostrowski K, Stachowicz W, Michalik J, Grzesik W

机构信息

Department of Transplantology, School of Medicine, Warsaw, Poland.

出版信息

Clin Orthop Relat Res. 1991 Nov(272):30-7.

PMID:1657475
Abstract

The effect of various doses of ionizing radiation on the osteoinductive properties of decalcified bone matrices implanted heterotopically and on the rate of remodeling of nondecalcified bone grafts implanted orthotopically in allogeneic systems was studied. Decalcified bone matrices and nondecalcified bone grafts were preserved by lyophilization or by deep-freezing and were subsequently irradiated with appropriate doses at room temperature or at -72 degrees. Lyophilized matrices irradiated at room temperature with 35 and 50 kGy, respectively, were completely resorbed five weeks after heterotopic implantation into the muscles and did not induce osteogenesis, whereas the resorption of deep-frozen ones irradiated with the same doses at -72 degrees was slower and new bone formation was induced. The preservation of the osteoinductive capacity of irradiated, deep-frozen matrices may depend on two factors: reduction of radiation damage on the inducing agents and collagen irradiated in the presence of water, which may diminish the rate of matrix resorption. The rate of remodeling of undecalcified deep-frozen bone implants irradiated at -72 degrees and grafted orthotopically was higher than that of lyophilized ones irradiated at room temperature. It is possible that the temperature during irradiation plays a critical role in protection against radiation damage.

摘要

研究了不同剂量的电离辐射对异体系统中异位植入的脱钙骨基质的骨诱导特性以及原位植入的未脱钙骨移植物的重塑速率的影响。脱钙骨基质和未脱钙骨移植物通过冻干或深度冷冻保存,随后在室温或 -72℃下用适当剂量进行辐照。分别在室温下用35和50 kGy辐照的冻干基质,在异位植入肌肉五周后完全被吸收,且未诱导成骨,而在 -72℃下用相同剂量辐照的深度冷冻基质的吸收较慢,并诱导了新骨形成。辐照后的深度冷冻基质骨诱导能力的保留可能取决于两个因素:减少对诱导剂的辐射损伤以及在有水存在的情况下对胶原蛋白的辐照,这可能会降低基质吸收速率。在 -72℃下辐照并原位移植的未脱钙深度冷冻骨植入物的重塑速率高于在室温下辐照的冻干植入物。辐照期间的温度可能在防止辐射损伤方面起关键作用。

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