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3.8μm 激光诱导皮肤热损伤及愈合过程中胶原和毛细血管的定量分析。

Quantitative analysis of collagen and capillaries of 3.8-μm laser-induced cutaneous thermal injury and wound healing.

机构信息

Beijing Institute of Radiation Medicine, Beijing, 100850, China.

出版信息

Lasers Med Sci. 2021 Sep;36(7):1469-1477. doi: 10.1007/s10103-020-03193-x. Epub 2020 Nov 13.

Abstract

The biological effects of cutaneous thermal injury and wound healing after 3.8-μm laser radiation were investigated by observing the effects of different radiation doses on in vivo cutaneous tissue. A 3.8-μm laser with a radiation dose that changes from small (5.07) to large (15.74 J/cm) was used to irradiate mouse skin with the 2 × 4 grid array method. The healing progress of laser-injured spots, pathological morphology (H&E staining), and collagen structure changes (Sirius Red staining) were dynamically observed from one hour to 21 days after laser radiation, and the capillary count and collagen content were quantitatively and comparatively analyzed. When the radiation doses were 5.07, 6.77, 8.21, and 9.42 J/cm, a white coagulation spot predominantly occurred, and when the radiation doses were 11.09 12.23, 14.13, 15.74 J/cm, a small injured spot predominantly occurred. One hour after radiation, the collagen structure was obviously damaged. Three to fourteen days after radiation, the hyperplasia and morphology of the collagen in the 5.07 J/cm group were significantly better than those in the other dose groups. The number of capillaries in the 5.07 J/cm and 6.77 J/cm groups was significantly higher than that in the normal group (P < 0.01 or P < 0.05). Twenty-one days after radiation, only the collagen in the 5.07 J/cm group was densely arranged, and it was basically close to the normal group level. The collagen content in the 5.07 J/cm group was approximately 10.7%, but it was still lower than that in the normal group (with a collagen content of approximately 14.1%). The collagen in the other dose groups was diminished and had not returned to the normal group level. As the dose of the 3.8-μm laser increased, skin thermal injury gradually increased, the full-thickness skin increased, and the collagen content decreased, showing better dose-dependent and time-dependent effect relationships. The increase in capillaries in the early stage of laser radiation and the significant increase in collagen content in the middle and late stages of laser radiation were two important factors that promoted wound healing.

摘要

研究了 3.8μm 激光辐射后皮肤的热损伤和伤口愈合的生物学效应,通过观察不同辐射剂量对体内皮肤组织的影响来实现。采用辐射剂量从小(5.07)到大(15.74 J/cm)变化的 3.8μm 激光,以 2×4 网格阵列的方式照射小鼠皮肤。在激光照射后 1 小时至 21 天,动态观察激光损伤部位的愈合进展、病理形态(H&E 染色)和胶原结构变化(天狼猩红染色),并定量比较分析毛细血管计数和胶原含量。当辐射剂量为 5.07、6.77、8.21 和 9.42 J/cm 时,主要出现白色凝固斑,而当辐射剂量为 11.09、12.23、14.13 和 15.74 J/cm 时,主要出现小损伤斑。辐射后 1 小时,胶原结构明显受损。辐射后 3 至 14 天,5.07 J/cm 组的胶原增生和形态明显优于其他剂量组。5.07 J/cm 和 6.77 J/cm 组的毛细血管数量明显高于正常组(P<0.01 或 P<0.05)。辐射后 21 天,只有 5.07 J/cm 组的胶原排列紧密,基本接近正常组水平。5.07 J/cm 组的胶原含量约为 10.7%,但仍低于正常组(胶原含量约为 14.1%)。其他剂量组的胶原减少,未恢复至正常组水平。随着 3.8μm 激光剂量的增加,皮肤热损伤逐渐加重,全层皮肤增加,胶原含量减少,表现出较好的剂量依赖性和时间依赖性效应关系。激光辐射早期毛细血管增加,中晚期胶原含量显著增加,是促进伤口愈合的两个重要因素。

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