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γ射线辐照对交联透明质酸组织工程支架物理和生物学特性的影响

Effects of gamma-irradiation on physical and biologic properties of crosslinked hyaluronan tissue engineering scaffolds.

作者信息

Srinivas Arvind, Ramamurthi Anand

机构信息

Department of Bioengineering, Clemson University, Clemson, South Carolina 29425, USA.

出版信息

Tissue Eng. 2007 Mar;13(3):447-59. doi: 10.1089/ten.2006.0196.

Abstract

Hydrogels containing divinyl sulfone (DVS)-crosslinked hyaluronan (HA) (hylans) are potentially useful implant biomaterials because of their non-cytotoxicity and -antigenicity. However, to successfully fulfill their intended role in vivo, their properties (e.g., mechanics, pore size, surface topography, hydrophilicity, swelling) must be modulated to match the demands of the target application. This study explored whether controlled irradiation with gamma (gamma) can strengthen hylans and modulate their physical and biologic properties, as has previously been shown to be possible with other natural and synthetic polymers. Hydrated hylans containing two different amounts of DVS were irradiated in vacuum to increasing doses of gamma (0-13.5 kGy). The properties of the irradiated gels were compared with those of non-irradiated controls. Changes to bulk structure were evaluated using swelling tests, surface topography and pore structure were evaluated using scanning electron microscopy, mechanics were evaluated using unconfined compression tests, and surface hydrophilicity was evaluated by measuring contact angle changes. Irradiated gels exhibited lower swelling capacity, structural weakening, increase in elasticity, surface texturing, increased pore size, and decreased surface hydrophilicity in direct correlation with received dose. Cells adhered and proliferated readily on the irradiated gel surfaces but not on control gels. The irradiated gels, however, deteriorated during long-term (<60 days) storage. Irradiation of hylans in a lyophilized state instead resulted in gels that were more compact, swelled less, and exhibited smaller pores than their hydrated counterparts. The results show that gamma-irradiation, although useful to modulate hylan gel properties, presents challenges of degradation that may be associated with its generation of free-radicals, HA chain fragmentation, and disruption of DVS crosslinks, particularly when the gels are irradiated in their native hydrated state (>98% water content). Future studies will optimize parameters for gamma-mediated modulation of hylan properties through irradiation under water-free conditions.

摘要

含有二乙烯砜(DVS)交联透明质酸(HA)(即hylans)的水凝胶因其无细胞毒性和抗原性而具有作为植入生物材料的潜在用途。然而,为了在体内成功发挥其预期作用,必须对其性能(如力学性能、孔径、表面形貌、亲水性、溶胀性)进行调节,以满足目标应用的需求。本研究探讨了如先前在其他天然和合成聚合物中所显示的那样,用γ射线进行可控辐照是否能增强hylans并调节其物理和生物学性能。将含有两种不同量DVS的水合hylans在真空中辐照至增加的γ剂量(0 - 13.5 kGy)。将辐照后凝胶的性能与未辐照对照的性能进行比较。使用溶胀试验评估整体结构的变化,使用扫描电子显微镜评估表面形貌和孔结构,使用无侧限压缩试验评估力学性能,并通过测量接触角变化评估表面亲水性。辐照后的凝胶表现出较低的溶胀能力、结构弱化(原文structural weakening直译为结构弱化,此处意译为结构变弱更符合语境)、弹性增加、表面纹理化、孔径增大以及表面亲水性降低,且与所接受的剂量直接相关。细胞很容易在辐照后的凝胶表面粘附和增殖,但在对照凝胶上则不然。然而,辐照后的凝胶在长期(<60天)储存期间会降解。相反,对冻干状态的hylans进行辐照会产生比其水合对应物更致密、溶胀更小且孔隙更小的凝胶。结果表明,γ辐照虽然有助于调节hylan凝胶性能,但存在降解挑战,这可能与其产生自由基、HA链断裂以及DVS交联破坏有关,特别是当凝胶在其天然水合状态(>98%含水量)下进行辐照时。未来的研究将通过在无水条件下辐照来优化γ介导调节hylan性能的参数。

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