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Validation of 15 kGy as a radiation sterilisation dose for bone allografts manufactured at the Queensland Bone Bank: application of the VDmax 15 method

机译:15 kGy作为昆士兰骨库制造的同种异体骨的放射灭菌剂量的验证:VDmax 15方法的应用

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Background ISO 11137-2006 (ISO 11137-2a 2006) provides a VDmax 15 method for substantiation of 15 kGy as radiation sterilisation dose (RSD) for health care products with a relatively low sample requirement. Moreover, the method is also valid for products in which the bioburden level is less than or equal to 1.5. In the literature, the bioburden level of processed bone allografts is extremely low. Similarly, the Queensland Bone Bank (QBB) usually recovers no viable organisms from processed bone allografts. Because bone allografts are treated as a type of health care product, the aim of this research was to substantiate 15 kGy as a RSD for frozen bone allografts at the QBB using method VDmax 15—ISO 11137-2: 2006 (ISO 11137-2e, Procedure for method VDmax 15 for multiple production batches. Sterilisation of health care products – radiation – part 2: establishing the sterilisation dose, 2006; ISO 11137-2f, Procedure for method VDmax 15 for a single production batch. Sterilisation of health care products – radiation – part 2: establishing the sterilisation dose, 2006). Materials 30 femoral heads, 40 milled bone allografts and 40 structural bone allografts manufactured according to QBB standard operating procedures were used. Method Estimated bioburdens for each bone allograft group were used to calculate the verification doses. Next, 10 samples per group were irradiated at the verification dose, sterility was tested and the number of positive tests of sterility recorded. If the number of positive samples was no more than 1, from the 10 tests carried out in each group, the verification was accepted and 15 kGy was substantiated as RSD for those bone allografts. Results The bioburdens in all three groups were 0, and therefore the verification doses were 0 kGy. Sterility tests of femoral heads and milled bones were all negative (no contamination), and there was one positive test of sterility in the structural bone allograft. Accordingly, the verification was accepted. Conclusion Using the ISO validated protocol, VDmax 15, 15 kGy was substantiated as RSD for frozen bone allografts manufactured at the QBB.
机译:背景技术ISO 11137-2006(ISO 11137-2a 2006)提供了一种VDmax 15方法,用于证实样品需求量相对较低的保健产品的15 kGy作为辐射灭菌剂量(RSD)。而且,该方法对于生物负荷水平小于或等于1.5的产品也是有效的。在文献中,经过处理的同种异体骨的生物负荷水平非常低。同样,昆士兰州骨库(QBB)通常不会从经过处理的同种异体骨中恢复出任何可行的生物。由于将同种异体移植物视为一种保健产品,因此本研究的目的是使用VDmax 15-ISO 11137-2:2006(ISO 11137-2e,用于多个生产批次的VDmax方法15的程序保健产品的灭菌–辐射–第2部分:确定灭菌剂量,2006年; ISO 11137-2f,VDmax方法的程序15保健产品的灭菌–辐射–第2部分:确定灭菌剂量,2006年)。材料使用根据QBB标准操作程序制造的30个股骨头,40个经铣削的同种异体骨和40个结构同种异体骨。方法采用每个骨移植组的估计生物负荷来计算验证剂量。接下来,以验证剂量辐照每组10个样品,测试无菌性并记录无菌性阳性测试的次数。如果每组进行的10项测试中阳性样本的数量不超过1,则接受验证,并将15 kGy证实为这些同种异体骨的RSD。结果三组的生物负荷均为0,因此验证剂量为0 kGy。股骨头和磨碎的骨头的无菌测试均为阴性(无污染),同种异体结构骨的无菌测试为阳性。因此,验证被接受。结论根据ISO验证的协议,对于QBB生产的冷冻同种异体骨,VDmax 15、15 kGy被证实为RSD。

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