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切口伤口中炎症细胞浸润、I型前胶原合成及胶原交联的定量分析:血小板衍生生长因子-BB和转化生长因子-β1治疗的影响

Quantitative analysis of inflammatory cell influx, procollagen type I synthesis, and collagen cross-linking in incisional wounds: influence of PDGF-BB and TGF-beta 1 therapy.

作者信息

Pierce G F, Brown D, Mustoe T A

机构信息

Department of Experimental Pathology, Amgen Inc., Thousand Oaks, CA 91320.

出版信息

J Lab Clin Med. 1991 May;117(5):373-82.

PMID:2019792
Abstract

Platelet-derived growth factor (PDGF-BB homodimer) and transforming growth factor-beta 1 (TGF-beta 1) are potent wound-healing hormones that accelerate incisional repair. To identify more precisely and quantitatively the stage(s) of wound healing influenced by growth-factor therapy, we investigated the three sequential tissue repair processes--inflammatory cell influx, intracellular procollagen type I (PC-I) synthesis, and collagen cross-linking--in recombinant growth factor--treated wounds. Using newly developed automated, quantitative image-analysis techniques, we observed that PDGF-BB markedly augmented the directed migration of macrophages into wounds during the first week after wounding and triggered and earlier and more sustained influx of PC-I--containing fibroblasts into the wound when compared with results in TGF-beta 1-treated or control wounds (p = 0.015 at day 2; p = 0.007 at day 21). In contrast, automated image analysis revealed TGF-beta 1-treated wound fibroblasts had a nearly twofold increase in intracellular levels of PC-I protein when compared with PDGF-BB-treated or control wound fibroblasts (p = 0.004 at day 4). However, the influence of TGF-beta 1 was transient, and the longer duration of PDGF-BB activity suggested a later influence, perhaps on the collagen remodeling phase, which is ultimately required for increased wound strength. To address this possibility, collagen cross-linking in growth factor-treated wounds was inhibited by beta-aminoproprionitrile (BAPN) treatment, and wound breaking strength was analyzed. Both PDGF-BB and TGF-beta 1 continued to enhance repair in BAPN-treated rats, indicating that they do not function primarily at the level of collagen cross-linking. Thus, PDGF-BB appears to enhance the inflammatory phase of wound healing to indirectly trigger PC-I synthesis, whereas TGF-beta 1 quantitatively enhances PC-I synthesis directly, accounting for their differing duration of activities within healing wounds.

摘要

血小板衍生生长因子(PDGF - BB 同二聚体)和转化生长因子 - β1(TGF - β1)是强效的伤口愈合激素,可加速切口修复。为了更精确和定量地确定受生长因子治疗影响的伤口愈合阶段,我们研究了重组生长因子处理的伤口中的三个连续组织修复过程——炎性细胞流入、细胞内 I 型前胶原(PC - I)合成和胶原交联。使用新开发的自动化定量图像分析技术,我们观察到,与 TGF - β1 处理的伤口或对照伤口相比,PDGF - BB 在受伤后的第一周显著增强了巨噬细胞向伤口的定向迁移,并引发了含 PC - I 的成纤维细胞更早且更持续地流入伤口(第 2 天 p = 0.015;第 21 天 p = 0.007)。相比之下,自动化图像分析显示,与 PDGF - BB 处理的伤口或对照伤口的成纤维细胞相比,TGF - β1 处理的伤口成纤维细胞内 PC - I 蛋白水平增加了近两倍(第 4 天 p = 0.004)。然而,TGF - β1 的影响是短暂的,而 PDGF - BB 活性的持续时间更长,这表明其可能对后期阶段有影响,也许是对胶原重塑阶段有影响,而胶原重塑阶段最终是伤口强度增加所必需的。为了探究这种可能性,通过β - 氨基丙腈(BAPN)处理抑制生长因子处理的伤口中的胶原交联,并分析伤口断裂强度。PDGF - BB 和 TGF - β1 均继续增强 BAPN 处理大鼠的修复,表明它们主要不是在胶原交联水平发挥作用。因此,PDGF - BB 似乎增强了伤口愈合的炎症阶段以间接触发 PC - I 合成,而 TGF - β1 直接定量增强 PC - I 合成,这解释了它们在愈合伤口内不同的活性持续时间。

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