Farzamfar Saeed, Elia Elissa, Richer Megan, Chabaud Stéphane, Naji Mohammad, Bolduc Stéphane
Centre de Recherche en Organogénèse Expérimentale/LOEX, Regenerative Medicine Division, CHU de Québec-Université Laval Research Center, Québec, QC G1J 1Z4, Canada.
Urology and Nephrology Research Center, Shahid Beheshti University of Medical Sciences, Tehran 1666677951, Iran.
Bioengineering (Basel). 2023 Jul 1;10(7):790. doi: 10.3390/bioengineering10070790.
Congenital vaginal anomalies and pelvic organ prolapse affect different age groups of women and both have significant negative impacts on patients' psychological well-being and quality of life. While surgical and non-surgical treatments are available for vaginal defects, their efficacy is limited, and they often result in long-term complications. Therefore, alternative treatment options are urgently needed. Fortunately, tissue-engineered scaffolds are promising new treatment modalities that provide an extracellular matrix (ECM)-like environment for vaginal cells to adhere, secrete ECM, and be remodeled by host cells. To this end, ECM-based scaffolds or the constructs that resemble ECM, generated by self-assembly, decellularization, or electrospinning techniques, have gained attention from both clinicians and researchers. These biomimetic scaffolds are highly similar to the native vaginal ECM and have great potential for clinical translation. This review article aims to discuss recent applications, challenges, and future perspectives of these scaffolds in vaginal reconstruction or repair strategies.
先天性阴道畸形和盆腔器官脱垂影响不同年龄段的女性,二者均对患者的心理健康和生活质量产生重大负面影响。虽然针对阴道缺陷有手术和非手术治疗方法,但其疗效有限,且常导致长期并发症。因此,迫切需要其他治疗选择。幸运的是,组织工程支架是有前景的新治疗方式,可为阴道细胞提供类似细胞外基质(ECM)的环境,使其黏附、分泌ECM并被宿主细胞重塑。为此,通过自组装、去细胞化或静电纺丝技术生成的基于ECM的支架或类似ECM的构建体已引起临床医生和研究人员的关注。这些仿生支架与天然阴道ECM高度相似,具有很大的临床转化潜力。这篇综述文章旨在讨论这些支架在阴道重建或修复策略中的近期应用、挑战及未来前景。