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Transition metal-doped cryogels as bioactive materials for wound healing applications

机译:过渡金属掺杂的CryoGels作为伤口愈合应用的生物活性材料

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摘要

Transition metals (TM) are essential microelements with various biological functions demanded in tissue regeneration applications. Little is known about therapeutic potential of TM within soft hydrogel biomaterials. The soluble divalent TM, such as Zn, Cu, Mn and Co, were stably incorporated into gelatin network during cryogelation. TM content in the resultant cryogels varied from 0.1 x 10(3) to 11.8 x 10(3) ppm, depending on the TM type and concentration in the reaction solution. Zn component was uniformly complexed with the gelatin scaffold according to elemental imaging, increasing the swelling of polymer walls and the G'/G '' values and also decreasing the size of cryogel macro-pores. Zn-doped cryogels supported migration of human skin fibroblasts (HSF); only upper Zn content of 11.8 x 10(3) ppm in the scaffold caused c.a. 50% inhibition of cell growth. Zn ions solubilized in culture medium were more active towards HSF (IC50 approximate to 0.3 mM). Treatment of splinted full-skin excisional wounds in rats with the Zn-doped and non-doped cryogels showed that Zn considerably promoted passing inflammatory/proliferation phases of healing process, inducing more intense dermis formation and structuration. The results show the feasibility of development of cryogel based formulations with different TM and support high phase-specific ability of the Zn-gelatin cryogels to repair acute wounds.
机译:过渡金属(TM)是组织再生应用中所需的各种生物功能的必需微量元素。关于软水凝胶生物材料中TM的治疗潜力几乎熟知。在冷冻胶质化期间,可溶性二价Tm,例如Zn,Cu,Mn和Co,在明胶网络中。所得冷却中的TM含量根据0.1×10(3)至11.8×10(3)ppm,这取决于TM型和反应溶液中的浓度。根据元素成像,Zn组分与明胶支架均匀络合,增加了聚合物壁的溶胀和G'/ G'值,并且还降低了冷冻胶质孔的尺寸。 Zn掺杂的Cryogels支持人体皮肤成纤维细胞(HSF)的迁移;在支架中只有11.8×10(3)ppm的上Zn含量引起C.a. 50%抑制细胞生长。在培养基中溶解的Zn离子更活跃于HSF(IC50近似为0.3mm)。用Zn掺杂和非掺杂冷冻蛋白的大鼠治疗夹层的全皮肤切除伤口表明,Zn显着促进了愈合过程的炎症/增殖阶段,诱导更强烈的真皮形成和结构。结果表明,不同TM的Cryogel基配方的开发可行性,并支持Zn-明胶冷冻蛋白的高相位能力以修复急性伤口。

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