Toth Tamas, Prisca Radu-Alexandru, Ballo Noemi, Prisca Ana-Maria, Szasz Emoke Andrea, Borda Angela
Institution Organizing University Doctoral Studies (IOSUD), George Emil Palade University of Medicine, Pharmacy, Science and Technology of Târgu Mureş, 540142 Târgu Mureș, Romania.
Pediatric Surgery and Orthopedics Department, Târgu Mureș Emergency Clinical County Hospital, 540136 Târgu Mureș, Romania.
Int J Mol Sci. 2025 Jun 29;26(13):6276. doi: 10.3390/ijms26136276.
Porcine small intestinal submucosa (SIS) extracellular matrix (ECM) has emerged as a widely researched biological scaffold in regenerative medicine. This meta-analysis examines 205 peer-reviewed studies published from 1993 to 2025, emphasizing the biochemical composition, decellularization techniques, biomedical applications, and validation methods associated with SIS-ECM. Findings reveal a dominant focus on wound healing and cardiovascular repair, reflecting the scaffold's mechanical adaptability and bioactivity. Research has evolved from basic compositional analyses to complex, application-specific investigations that incorporate in vivo models and functional outcome measures. Decellularization methods vary significantly, trending toward hybrid, multi-step protocols that preserve ECM integrity while ensuring cellular clearance. While the results are encouraging, a notable transparency issue persists, with only a third of studies providing full methodological details, which restricts reproducibility. Frequently utilized validation methods encompass mechanical testing, histology, DNA quantification, and growth factor retention. This review emphasizes the critical requirement for standardized guidelines in preparation and reporting to guarantee the safe and effective clinical application of SIS-ECM. Through continuous refinement and collaboration among various disciplines, SIS-ECM has the potential to serve as a next-generation scaffold for a range of regenerative uses.
猪小肠黏膜下层(SIS)细胞外基质(ECM)已成为再生医学中广泛研究的生物支架。这项荟萃分析审查了1993年至2025年发表的205项同行评审研究,重点关注与SIS-ECM相关的生化组成、脱细胞技术、生物医学应用和验证方法。研究结果显示,主要集中在伤口愈合和心血管修复方面,这反映了该支架的机械适应性和生物活性。研究已从基本的成分分析发展到结合体内模型和功能结果测量的复杂的、针对特定应用的调查。脱细胞方法差异很大,倾向于采用混合多步骤方案,既能保持ECM完整性,又能确保细胞清除。虽然结果令人鼓舞,但一个明显的透明度问题仍然存在,只有三分之一的研究提供了完整的方法细节,这限制了可重复性。常用的验证方法包括机械测试、组织学、DNA定量和生长因子保留。本综述强调了在制备和报告中制定标准化指南的关键要求,以确保SIS-ECM在临床中的安全有效应用。通过各学科之间的不断完善和合作,SIS-ECM有潜力成为一系列再生用途的下一代支架。