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局部低频振动加速高血糖大鼠模型全层创面的愈合。

Local low-frequency vibration accelerates healing of full-thickness wounds in a hyperglycemic rat model.

机构信息

Global Nursing Research Center, Graduate School of Medicine, The University of Tokyo, Tokyo, Japan.

Department of Gerontological Nursing/Wound Care Management, Graduate School of Medicine, The University of Tokyo, Tokyo, Japan.

出版信息

J Diabetes Investig. 2023 Dec;14(12):1356-1367. doi: 10.1111/jdi.14072. Epub 2023 Sep 8.

Abstract

AIMS/INTRODUCTION: Local low-frequency vibration (LLFV) promotes vasodilation and blood flow, enhancing wound healing in diabetic foot ulcers with angiopathy. However, vibration-induced vasodilation does not occur, owing to chronic hyperglycemia and inflammation. We hypothesized that LLFV improves glycometabolism and inflammation, leading to vasodilation and angiogenesis in diabetic wounds. Therefore, this study investigated the effect of LLFV on wound healing in hyperglycemic rats, primarily focusing on glycometabolism, inflammation, vasodilation, and angiogenesis.

MATERIALS AND METHODS

Streptozotocin-induced hyperglycemic Sprague-Dawley rats were used in this study. We applied LLFV to experimentally-induced wounds at 50 Hz and 0, 600, 1,000 or 1,500 mVpp for 40 min/day from post-wounding days (PWD) 1-14.

RESULTS

The relative wound areas in the 600 and 1,000 mVpp groups on PWD 5-7 were significantly smaller than those at 0 mVpp. The expression of Glo-1 (1,500 mVpp) and Slc2A4 (1,000 and 1,500 mVpp) was upregulated on PWD 4 and 14, respectively. However, there was no difference in methylglyoxal expression levels in any group until PWD 14. At 1,000 mVpp, the expression of Tnfa on PWD 4, and that of Ptx3 and Ccl2 on PWD 14 was downregulated. Furthermore, the M1/M2 macrophage ratio was considerably decreased on both days. The expression of Nos3, Vegfa and vascular endothelial growth factor A was upregulated on PWD 4. In addition, vasodilation and angiogenesis were more obvious on PWD 14 with 1,000 mVpp.

CONCLUSIONS

The results suggest that LLFV promotes wound healing, improves glycometabolism and inflammation, and enhances vasodilation and angiogenesis in hyperglycemic wounds.

摘要

目的/引言:局部低频振动(LLFV)可促进血管扩张和血流,改善伴有血管病变的糖尿病足溃疡的愈合。然而,由于慢性高血糖和炎症,振动引起的血管扩张并不会发生。我们假设 LLFV 可改善糖代谢和炎症,从而导致糖尿病伤口的血管扩张和血管生成。因此,本研究主要关注糖代谢、炎症、血管扩张和血管生成,探讨 LLFV 对高血糖大鼠伤口愈合的影响。

材料和方法

本研究使用链脲佐菌素诱导的高血糖 Sprague-Dawley 大鼠。我们在伤后第 1 天至第 14 天,每天应用 LLFV 对实验诱导的伤口进行 50Hz 和 0、600、1000 或 1500mVpp 刺激,每次 40 分钟。

结果

伤后第 5-7 天,600 和 1000mVpp 组的相对伤口面积明显小于 0mVpp 组。伤后第 4 天和第 14 天,Glo-1(1500mVpp)和 Slc2A4(1000 和 1500mVpp)的表达分别上调。然而,在伤后第 14 天之前,任何组的甲基乙二醛表达水平均无差异。在 1000mVpp 时,伤后第 4 天 Tnfa 的表达下调,伤后第 14 天 Ptx3 和 Ccl2 的表达下调。此外,在这两天 M1/M2 巨噬细胞的比例明显降低。伤后第 4 天 Nos3、Vegfa 和血管内皮生长因子 A 的表达上调。此外,在 1000mVpp 时,伤后第 14 天血管扩张和血管生成更为明显。

结论

结果表明,LLFV 可促进高血糖伤口的愈合,改善糖代谢和炎症,增强血管扩张和血管生成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a46b/10688122/a24c3a1adb3d/JDI-14-1356-g003.jpg

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