Management of Diabetic Foot Ulcer with MA-ECM (Minimally Manipulated Autologous Extracellular Matrix) Using 3D Bioprinting Technology - An Innovative Approach.

IF 1.5 4区 医学 Q3 DERMATOLOGY International Journal of Lower Extremity Wounds Pub Date : 2024-03-01 Epub Date: 2021-10-12 DOI:10.1177/15347346211045625
Rajesh Kesavan, Changam Sheela Sasikumar, V B Narayanamurthy, Arvind Rajagopalan, Jeehee Kim
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Abstract

Chronic foot ulcers are the leading cause of prolonged hospitalization and loss of social participation in people with diabetes. Conventional management of diabetic foot ulcers (DFU) is associated with slow healing, high cost, and recurrent visits to the hospital. Currently, the application of autologous lipotransfer is more popular, as the regenerative and reparative effects of fat are well established. Herein we report the efficacy of minimally manipulated extracellular matrix (MA-ECM) prepared from autologous homologous adipose tissue by using 3D bioprinting in DFU (test group) in comparison to the standard wound care (control group). A total of 40 subjects were screened and randomly divided into test and control groups. In the test group, the customized MA-ECM was printed as a scaffold from the patient autologous fat using a 3D bioprinter device and applied to the wound directly. The control group received standard wound care and weekly follow-up was done for all the patients. We evaluated the efficacy of this novel technology by assessing the reduction in wound size and attainment of epithelialization. The patients in the test group (n = 17) showed complete wound closure with re-epithelialization approximately within a period of 4 weeks. On the other hand, most of the patients in the control group (n = 16) who received standard wound dressings care showed a delay in wound healing in comparison to the test group. This technique can be employed as a personalized therapeutic method to accelerate diabetic wound healing and may provide a promising potential alternative approach to protect against lower foot amputation a most common complication in diabetes.

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利用三维生物打印技术微调自体细胞外基质(MA-ECM)治疗糖尿病足溃疡--一种创新方法。
慢性足部溃疡是导致糖尿病患者长期住院和丧失社会参与能力的主要原因。糖尿病足溃疡(DFU)的传统治疗方法存在愈合慢、费用高、反复住院等问题。目前,由于脂肪的再生和修复作用已得到公认,自体脂肪移植的应用更受欢迎。在此,我们报告了利用三维生物打印技术从自体同源脂肪组织制备的微操作细胞外基质(MA-ECM)对 DFU(试验组)的疗效,并与标准伤口护理(对照组)进行了比较。共筛选了 40 名受试者,并随机分为试验组和对照组。在测试组中,使用三维生物打印机设备从患者自体脂肪中打印出定制的 MA-ECM 作为支架,并直接应用于伤口。对照组接受标准伤口护理,并对所有患者进行每周随访。我们通过评估伤口面积的缩小和上皮化的实现情况来评估这项新技术的疗效。试验组患者(17 人)的伤口大约在 4 周内完全闭合并重新上皮化。另一方面,与试验组相比,对照组(16 人)中接受标准伤口敷料护理的大多数患者的伤口愈合时间有所延迟。这项技术可作为一种个性化的治疗方法来加速糖尿病伤口的愈合,并为防止糖尿病最常见的并发症--下肢截肢提供了一种前景广阔的潜在替代方法。
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来源期刊
CiteScore
4.60
自引率
17.60%
发文量
95
审稿时长
>12 weeks
期刊介绍: The International Journal of Lower Extremity Wounds (IJLEW) is a quarterly, peer-reviewed journal publishing original research, reviews of evidence-based diagnostic techniques and methods, disease and patient management, and surgical and medical therapeutics for lower extremity wounds such as burns, stomas, ulcers, fistulas, and traumatic wounds. IJLEW also offers evaluations of assessment and monitoring tools, dressings, gels, cleansers, pressure management, footwear/orthotics, casting, and bioengineered skin. This journal is a member of the Committee on Publication Ethics (COPE).
期刊最新文献
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