Hu Nan, Jiang Ruixue, Deng Yuwei, Li Weiping, Jiang Wentao, Xu Ningwei, Wang Jia, Wen Jin, Gu Shensheng
Department of Endodontics, Shanghai Ninth People's Hospital, Shanghai Jiao Tong University School of Medicine, Zhizaoju Road No.639, Shanghai, 200011, China.
College of Stomatology, Shanghai Jiao Tong University, Yanqiao Road No.390, Shanghai, 200125, China.
Regen Biomater. 2024 May 7;11:rbae050. doi: 10.1093/rb/rbae050. eCollection 2024.
Pulp regeneration remains a crucial target in the preservation of natural dentition. Using decellularized extracellular matrix is an appropriate approach to mimic natural microenvironment and facilitate tissue regeneration. In this study, we attempted to obtain decellularized extracellular matrix from periapical lesion (PL-dECM) and evaluate its bioactive effects. The decellularization process yielded translucent and viscous PL-dECM, meeting the standard requirements for decellularization efficiency. Proteomic sequencing revealed that the PL-dECM retained essential extracellular matrix components and numerous bioactive factors. The PL-dECM conditioned medium could enhance the proliferation and migration ability of periapical lesion-derived stem cells (PLDSCs) in a dose-dependent manner. Culturing PLDSCs on PL-dECM slices improved odontogenic/angiogenic ability compared to the type I collagen group. , the PL-dECM demonstrated a sustained supportive effect on PLDSCs and promoted odontogenic/angiogenic differentiation. Both and studies illustrated that PL-dECM served as an effective scaffold for pulp tissue engineering, providing valuable insights into PLDSCs differentiation. These findings pave avenues for the clinical application of dECM's in situ transplantation for regenerative endodontics.
牙髓再生仍然是保存天然牙列的关键目标。使用脱细胞细胞外基质是模拟自然微环境并促进组织再生的合适方法。在本研究中,我们试图从根尖周病变中获得脱细胞细胞外基质(PL-dECM)并评估其生物活性作用。脱细胞过程产生了半透明且粘稠的PL-dECM,符合脱细胞效率的标准要求。蛋白质组学测序显示,PL-dECM保留了基本的细胞外基质成分和众多生物活性因子。PL-dECM条件培养基能够以剂量依赖的方式增强根尖周病变来源干细胞(PLDSCs)的增殖和迁移能力。与I型胶原组相比,在PL-dECM切片上培养PLDSCs可提高其牙源性/血管生成能力。此外,PL-dECM对PLDSCs表现出持续的支持作用,并促进牙源性/血管生成分化。两项研究均表明,PL-dECM可作为牙髓组织工程的有效支架,为PLDSCs分化提供了有价值的见解。这些发现为脱细胞细胞外基质原位移植在再生牙髓治疗中的临床应用铺平了道路。