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在实验动物模型中克服混杂伤口收缩的夹板固定策略。

Splinting Strategies to Overcome Confounding Wound Contraction in Experimental Animal Models.

作者信息

Davidson Jeffrey M, Yu Fang, Opalenik Susan R

机构信息

Department of Pathology, Microbiology, and Immunology, Vanderbilt University School of Medicine , Nashville, Tennessee. ; Medical Research Service, Veterans' Affairs Tennessee Valley Healthcare System , Nashville, Tennessee.

Department of Pathology, Microbiology, and Immunology, Vanderbilt University School of Medicine , Nashville, Tennessee.

出版信息

Adv Wound Care (New Rochelle). 2013 May;2(4):142-148. doi: 10.1089/wound.2012.0424.

Abstract

SIGNIFICANCE

Clinical healing by secondary intention frequently occurs in skin that is firmly anchored to underlying (human) connective tissue. Small animals (rodents) are extensively utilized to model human cutaneous wound healing, but they heal by wound contraction, a process that is limited in the human and confounds quantitative and qualitative evaluation of experimental wound repair.

RECENT ADVANCES

To alleviate wound contraction in loose-skinned species, practical solutions include choosing anatomical sites with firmly attached dermis and subcutis (, rabbit ear) or performing mechanical fixation of the skin by using one of a number of devices or splints. In each case, the wound volume remains relatively constant, allowing the histomorphometric or biomolecular quantification of the cellular response under well-controlled, experimental conditions. In addition, the defined aperture of the splinted wound allows the placement of a variety of materials, including scaffolds, cells, and biologically active formulations into the wound site in an effort to potentiate the healing response and abrogate scarring. In contrast, production of larger experimental wounds or the deliberate distraction of wound margins can be used to model a hypertrophic response.

CRITICAL ISSUES

Device design parameters should consider ease of application, durability, and lack of interference with the normal influx of local and circulating cells to the wound site.

FUTURE DIRECTIONS

Improved methods of securing flexible splints would provide a more efficient experimental platform. These devices could also incorporate optical or electronic sensors that report both the mechanical and physiological status of the healing.

摘要

意义

二期愈合在牢固附着于下方(人体)结缔组织的皮肤中经常发生。小动物(啮齿动物)被广泛用于模拟人类皮肤伤口愈合,但它们通过伤口收缩来愈合,这一过程在人类中有限,并且混淆了对实验性伤口修复的定量和定性评估。

最新进展

为了减轻皮肤松弛物种的伤口收缩,实际的解决方案包括选择真皮和皮下组织牢固附着的解剖部位(如兔耳),或使用多种装置或夹板之一对皮肤进行机械固定。在每种情况下,伤口体积保持相对恒定,从而允许在良好控制的实验条件下对细胞反应进行组织形态计量学或生物分子定量分析。此外,夹板固定伤口的特定孔径允许将包括支架、细胞和生物活性制剂在内的多种材料放置到伤口部位,以增强愈合反应并消除瘢痕形成。相比之下,制造更大的实验性伤口或故意牵拉伤口边缘可用于模拟肥厚性反应。

关键问题

装置设计参数应考虑应用的简便性、耐用性以及不干扰局部和循环细胞向伤口部位的正常流入。

未来方向

改进固定柔性夹板的方法将提供一个更高效的实验平台。这些装置还可以整合光学或电子传感器,以报告愈合的机械和生理状态。

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