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Preservation of native extracellular matrix structure correlates with onset temperature in eight commercial collagen wound dressings

机译:八种商用胶原卷饼敷料中的天然胞外基质结构的保存与起始温度相关

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Introduction: Approximately 70-80% of the extracellular matrix (ECM) of the skin is composed of collagen, primarily types Ⅰ & Ⅲ. Following injury, damaged collagen attracts inflammatory cells, succeeded by fibroblasts and keratinocytes to the dermal wound, aiding in debridement, angiogenesis and re-epithelialization, respectively. Given its prominent role in wound healing, collagen has been widely used in commercial tissue engineering and chronic wound care products. In particular, collagen dressings in wound care vary in the preservation of native ECM, ranging from intact ECM to gelatin. The thermal and structural properties of eight commercially available collagen wound care dressings were explored using differential scanning calorimetry (DSC), scanning electron microscopy (SEM) and transmission electron microscopy (TEM). DSC has historically been used to demonstrate the effects of greater tissue processing in lowering the onset of melting temperature (T_0) of regenerative surgical scaffolds, but its use in comparing wound dressings is novel. Materials and Methods: DSC. Samples of CollaSorb (CS; N=45; Hartmann), Endoform Dermal Template (EDT; N=45; Hollister Incorporated), Promogran, Promogran Prisma (Pr and PrPr; N=45 each; Systagenix), Puracol and Puracol Plus (P & PP; N=45 each; Medline), Fibracol Plus (FP; N=15; Systagenix), and Skin Temp Ⅱ (ST; N=15; Human Biosciences) were hydrated in phosphate buffered saline, hermetically sealed in crucibles, and heated. In a preliminary survey, a scan from 2-125°C was performed on the first N=5 from each group. The remaining samples in each group of dressings were scanned from 5-85'C. All DSC scans were performed at 1 °C/min. Thermograms were analyzed using linear method to determine the T_0 of each sample. SEM. Cross-sections and both sides of dry samples of each collagen dressing were imaged at 250,500, & 1000X. TEM. EDT and Pr were hydrated, serially dehydrated and fixed then embedded in Spurr resin prior to imaging at 3524,65231 & 12.114X. Data Analysis: A nested ANOVA was performed to compare average T_0 across dressings. Tuke/s post hoc test and an F-test were used to identify significant differences between dressings and within lots of each dressing, respectively. Results: Overall mean T_0 ± std dev for the groups were CS: 43.26±1.3; EDT: 58.68±1.7; Pr 35.64±1.3; PrPr: 35.05±1.0; P: 41.35±2.8; PP: 41.64±3.7; FP: 36.18±0.4; & ST: 36.33±0.7°C, with EDT differing significantly from the other dressings (p<0.001). SEM showed preservation of native ECM sidedness in EDT, while all other dressings appeared homogeneous across surfaces. TEM confirmed the presence of native collagen banding periodicity of ~65nm in EDT, which was lacking in Pr. Discussion: Collectively these DSC and SEM data demonstrate greater preservation of native ECM properties in EDT in comparison to the other dressings studied. TEM data confirmed these differences between EDT and Pr. While the impact of these thermal and structural differences on clinical performance are unknown, the retention of native ECM properties has been hypothesized to correlate to the observation of broader in vitro inhibition of proteases by EDT over Pr.
机译:引言:皮肤的大约70-80%的皮肤细胞外基质(ECM)由胶原蛋白组成,主要是Ⅰ&Ⅲ型。受伤后,受损的胶原蛋白吸引了炎症细胞,通过成纤维细胞和角质形成细胞成成纤维细胞,分别涉及清除,血管生成和再上皮。鉴于其在伤口愈合中的突出作用,胶原蛋白已广泛用于商业组织工程和慢性伤口护理产品。特别是,伤口护理中的胶原蛋白敷料在保护天然ECM的保存中变化,从完整的ECM到明胶。使用差示扫描量热法(DSC),扫描电子显微镜(SEM)和透射电子显微镜(TEM)探索八种市售胶原蛋白伤口护理敷料的热和结构性能。 DSC历来用于证明更大的组织处理在降低再生外科支架的熔化温度(T_0)的发作的影响,但其在比较伤口敷料中的使用是新颖的。材料和方法:DSC。粘结剂样品(Cs; n = 45; hartmann),endoform皮肤模板(Edt; n = 45; Hollister Incorporated),Promogran,Promogran prisma(Pr和Prpr; n = 45例每个; Systagenix),puracol和puracol plus(p &pp; n = 45例每个; medline),fibracol plus(fp; n = 15; systagenix)和皮肤温度Ⅱ(st; n = 15;人类生物学)在磷酸盐缓冲盐水中水合,气密地密封在坩埚中,和加热。在初步调查中,从每个组的第一个n = 5执行2-125°C的扫描。每组敷料中的剩余样品从5-85℃扫描。所有DSC扫描均在1°C / min时进行。使用线性方法分析热分析图以确定每个样品的T_0。 SEM。将每种胶原酱的干燥样品的横截面和两侧成像在250,500和1000倍。 TEM。在成像3524,65231和12.114x之前,在3524,65231和12.114x上成像之前,将EDT和PR液体浸润,连续脱水和固定,然后在菌丝树上嵌入。数据分析:进行嵌套的ANOVA以将平均T_0与敷料进行比较。 Tuke / s后HOC测试和F检验用于分别识别敷料之间的显着差异,以及每种敷料的大量差异。结果:总体平均值为CS:43.26±1.3的总体平均值T_0±STD开发; EDT:58.68±1.7; PR 35.64±1.3; PRPR:35.05±1.0; P:41.35±2.8; PP:41.64±3.7; FP:36.18±0.4; &ST:36.33±0.7°C,EDT与其他敷料有显着差异(P <0.001)。 SEM显示了EDT中的天然ECM等效果,而所有其他敷料在表面上出现均匀。 TEM证实了在EDT中存在〜65nm的天然胶原带周期性,其在PR中缺乏。讨论:集体这些DSC和SEM数据表明,与所研究的其他敷料相比,EDT中的本机ECM性能更好地保存。 TEM数据确认了EDT和PR之间的这些差异。虽然这些热和结构差异对临床性能的影响是未知的,但是已经假设了天然ECM性能的保留以通过EDT通过PRT观察更广泛的蛋白酶抑制的观察。

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