Petrie Kyla, Cox Cameron T, Becker Benjamin C, MacKay Brendan J
Texas Tech University Health Sciences Center, Lubbock, TX, USA.
University Medical Center, Lubbock, TX, USA.
Scars Burn Heal. 2022 Jan 19;8:20595131211038313. doi: 10.1177/20595131211038313. eCollection 2022 Jan-Dec.
The extracellular matrix (ECM) plays an integral role in wound healing. It provides both structure and growth factors that allow for the organised cell proliferation. Large or complex tissue defects may compromise host ECM, creating an environment that is unfavourable for the recovery of anatomical function and appearance. Acellular dermal matrices (ADMs) have been developed from a variety of sources, including human (HADM), porcine (PADM) and bovine (BADM), with multiple different processing protocols. The objective of this report is to provide an overview of current literature assessing the clinical utility of ADMs across a broad spectrum of applications.
PubMed, MEDLINE, EMBASE, Scopus, Cochrane and Web of Science were searched using keywords 'acellular dermal matrix', 'acellular dermal matrices' and brand names for commercially available ADMs. Our search was limited to English language articles published from 1999 to 2020 and focused on clinical data.
A total of 2443 records underwent screening. After removing non-clinical studies and correspondence, 222 were assessed for eligibility. Of these, 170 were included in our synthesis of the literature. While the earliest ADMs were used in severe burn injuries, usage has expanded to a number of surgical subspecialties and procedures, including orthopaedic surgery (e.g. tendon and ligament reconstructions), otolaryngology, oral surgery (e.g. treating gingival recession), abdominal wall surgery (e.g. hernia repair), plastic surgery (e.g. breast reconstruction and penile augmentation), and chronic wounds (e.g. diabetic ulcers).
Our understanding of ADM's clinical utility continues to evolve. More research is needed to determine which ADM has the best outcomes for each clinical scenario.
Large or complex wounds present unique reconstructive and healing challenges. In normal healing, the extracellular matrix (ECM) provides both structural and growth factors that allow tissue to regenerate in an organised fashion to close the wound. In difficult or large soft-tissue defects, however, the ECM is often compromised. Acellular dermal matrix (ADM) products have been developed to mimic the benefits of host ECM, allowing for improved outcomes in a variety of clinical scenarios. This review summarises the current clinical evidence regarding commercially available ADMs in a wide variety of clinical contexts.
细胞外基质(ECM)在伤口愈合中起着不可或缺的作用。它提供结构和生长因子,使细胞能够有序增殖。大面积或复杂的组织缺损可能会损害宿主的细胞外基质,从而营造出不利于解剖功能和外观恢复的环境。脱细胞真皮基质(ADM)已从多种来源开发出来,包括人源(HADM)、猪源(PADM)和牛源(BADM),且有多种不同的处理方案。本报告的目的是概述当前评估ADM在广泛应用中的临床效用的文献。
使用关键词“脱细胞真皮基质”“脱细胞真皮基质”以及市售ADM的品牌名称检索PubMed、MEDLINE、EMBASE、Scopus、Cochrane和Web of Science。我们的检索仅限于1999年至2020年发表的英文文章,并侧重于临床数据。
共筛选了2443条记录。在去除非临床研究和信函后,对222条记录进行了资格评估。其中,170条被纳入我们的文献综述。虽然最早的ADM用于严重烧伤,但现在其应用已扩展到多个外科亚专业和手术,包括整形外科手术(如肌腱和韧带重建)、耳鼻喉科、口腔外科(如治疗牙龈退缩)、腹壁手术(如疝气修复)、整形手术(如乳房重建和阴茎增大)以及慢性伤口(如糖尿病溃疡)。
我们对ADM临床效用的理解仍在不断发展。需要更多研究来确定哪种ADM在每种临床情况下能产生最佳效果。
大面积或复杂伤口带来了独特的重建和愈合挑战。在正常愈合过程中,细胞外基质(ECM)提供结构和生长因子,使组织能够以有序方式再生以闭合伤口。然而,在困难或大面积软组织缺损中,ECM往往会受损。脱细胞真皮基质(ADM)产品已被开发出来,以模拟宿主ECM的益处,从而在各种临床情况下改善治疗效果。本综述总结了当前关于市售ADM在各种临床环境中的临床证据。