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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Effect of storage upon material properties of lyophilized porcine extracellular matrix derived from the urinary bladder.
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Effect of storage upon material properties of lyophilized porcine extracellular matrix derived from the urinary bladder.

机译:储存对膀胱来源的冻干猪细胞外基质材料特性的影响。

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Xenogeneic extracellular matrices (ECMs) have been developed as off-the-shelf biologic scaffolds that have been effectively used in preclinical and clinical applications for tissue reconstruction. Such materials must be suitable for terminal sterilization and capable of storage for extended periods of time without significant changes in material properties and bioactivity. Material properties of interest for ECM scaffolds include hydrostatic permeability index (PI), uniaxial maximum load and elongation, maximum tangential stiffness (MTS), suture retention strength (SRS), and ball-burst strength (BBS). The present study evaluated these material properties for lyophilized forms of an ECM scaffold derived from the porcine urinary bladder, termed urinary bladder matrix (UBM), that was terminally sterilized by e-beam irradiation at 22 kGy and stored at room temperature (RT; 20-24 degrees C) or refrigerated temperature (REFT; 4-8 degrees C) for up to 12 months. UBM devices showed no change in SRS, BBS, and hydrostatic PI after the evaluation period. Lyophilized devices stored at RT showed an increase in maximum load and MTS while devices stored at REFT showed an increase in maximum elongation after 1 year of storage (p < 0.05). These results indicate that structural changes in the UBM device may slowly occur as a function of prolonged storage and storage temperature.
机译:异种细胞外基质(ECM)已开发为现成的生物支架,已有效地用于组织重建的临床前和临床应用中。此类材料必须适用于最终灭菌,并且能够在不显着改变材料性能和生物活性的情况下长时间保存。 ECM支架感兴趣的材料特性包括静水渗透率指数(PI),单轴最大载荷和伸长率,最大切向刚度(MTS),缝合线保持强度(SRS)和球形破裂强度(BBS)。本研究评估了来源于猪膀胱的ECM支架的冻干形式的这些材料特性,称其为膀胱基质(UBM),该支架通过22 kGy的电子束辐照最终灭菌并在室温下保存(RT; 20 -24摄氏度)或冷藏温度(REFT; 4-8摄氏度)长达12个月。在评估期过后,UBM设备的SRS,BBS和静液压PI均未发生变化。储存在室温下的冻干器械显示最大负荷和MTS增加,而储存在REFT上的器械显示1年储存后最大伸长率增加(p <0.05)。这些结果表明,UBM设备的结构变化可能会随着长时间的储存和储存温度而缓慢发生。

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