Tronci Giuseppe, Yin Jie, Holmes Roisin A, Liang He, Russell Stephen J, Wood David J
Nonwovens Research Group, School of Design, University of Leeds, Leeds, UK.
J Mater Chem B. 2016 Dec 7;4(45):7249-7258. doi: 10.1039/c6tb02268e. Epub 2016 Oct 27.
The design of exudate-managing wound dressings is an established route to accelerated healing, although such design remains a challenge from material and manufacturing standpoints. Aiming towards the clinical translation of knowledge gained in vitro with highly-swollen rat tail collagen hydrogels, this study investigated the healing capability in a diabetic mouse wound model of telopeptide-free, protease-inhibiting collagen networks. 4-Vinylbenzylation and UV irradiation of type I atelocollagen (AC) led to hydrogel networks with chemical and macroscopic properties comparable to previous collagen analogues, attributable to similar lysine content and dichroic properties. After 4 days in vitro, hydrogels induced nearly 50 RFU% reduction in matrix metalloproteinase (MMP)-9 activity, whilst showing less than 20 wt% mass loss. After 20 days in vivo, dry networks promoted 99% closure of 10 × 10 mm full thickness wounds and accelerated neo-dermal tissue formation compared to Mepilex®. This collagen system can be equipped with multiple, customisable properties and functions key to personalised chronic wound care.
渗出液管理伤口敷料的设计是加速伤口愈合的既定途径,尽管从材料和制造角度来看,这种设计仍然是一项挑战。为了将在体外对高度溶胀的大鼠尾胶原水凝胶所获得的知识转化应用于临床,本研究调查了无端肽、蛋白酶抑制性胶原网络在糖尿病小鼠伤口模型中的愈合能力。对I型去端胶原(AC)进行4-乙烯基苄基化和紫外线照射,得到的水凝胶网络具有与先前胶原类似物相当的化学和宏观性质,这归因于相似的赖氨酸含量和二向色性。在体外培养4天后,水凝胶使基质金属蛋白酶(MMP)-9活性降低了近50 RFU%,同时质量损失不到20 wt%。在体内培养20天后,与美皮康®相比,干燥的网络促进了10×10毫米全层伤口99%的闭合,并加速了新真皮组织的形成。这种胶原系统可以具备多种可定制的特性和功能,这些特性和功能是个性化慢性伤口护理的关键。