细胞基质I-A型胶原凝胶支架中HMS0014细胞体外3D培养对植入物周围矿化组织形成的组织学研究

Aiko Morishita, Shunji Kumabe, Michiko Nakatsuka, Yasutomo Iwai
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引用次数: 2

摘要

我们在3D胶原凝胶支架(Cellmatrix Type I-A)中培养HMS0014 Yub621b细胞,旨在研究人骨源性间充质干细胞(MSCs)在体外钛(Ti)试验牙种植体(IP)周围诱导骨再生(GBR)工程组织中的命运和贡献。通过光镜和透射电镜观察发现,细胞基质I-A型凝胶形成了胶原原纤维,为HMS0014细胞顶层的增殖和分化提供了三维网络;GBR组织矿化从第1天开始,并在实验的第7天至第14天之间明显沉积。透射电镜观察发现,GBR组织的ECM支架细胞基质纤维和原纤维交织的周围有水泥线沉积;在颈周ECM支架中发现了基质囊泡介导和相位胶原介导的矿化。多形性成骨细胞(Ob)样成骨细胞的精细结构研究表明,细胞质中有许多与囊泡运输、分泌和内吞作用有关的膜细胞器;还观察到发育良好的细胞骨架网络和细胞间连接复合物。共聚焦激光扫描显微镜(LSM)荧光免疫组化(IHC)显示,LC3和Cx43的表达与自噬-溶酶体退行性变途径和间隙连接介导的信号传导(GJS)有关,参与维持3D支架中ob样细胞生长和退行性变的组织稳态。这项体外研究的结果表明,ob样HMS0014细胞积极调节牙种植体周围ECM的周转,以重现类骨组织工程材料的发育和形成,这可能有助于增强牙种植体周围的骨整合。
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A histological study of mineralised tissue formation around implants with 3D culture of HMS0014 cells in Cellmatrix Type I-A collagen gel scaffold in vitro.

We cultured HMS0014 Yub621b cells within a 3D collagen gel scaffold (Cellmatrix Type I-A) and aimed to study the fate and contribution of human bone-derived mesenchymal stem cells (MSCs) in the guided bone regeneration(GBR)-engineered tissue which has developed around the titanium (Ti) test dental implant (IP) in vitro. The light microscopy (LM) and transmission electron microscopy (TEM) results of the peri-IP tissue indicated that collagen fibrils of the Cellmatrix Type I-A gel were accumulated and fabricated to provide a 3D meshwork for proliferation and differentiation of the HMS0014 cells in the top (cell) layer; mineralisation of the GBR tissue had commenced since day 1 and became markedly deposited between days 7 and 14 of the experiment. TEM observation revealed sedimentation of cement line at the periphery of the interwoven Cellmatrix fibres and fibrils in the ECM scaffold of the GBR tissue; matrix vesicle-mediated and appositional collagen-mediated mineralisation were identified in the peri-IP ECM scaffold. The fine structure study of the plurimorphic osteoblast(Ob)-like osteogeneic cells demonstrated numerous membranous organelles related with vesicular trafficking, secretion and endocytosis in the cytoplasm; well-developed cytoskeleton networks and intercellular junctional complexes were also observed. The specimens on fluorescence immunohistochemistry (IHC) by confocal laser-scanning microscopy (LSM) showed the expression of LC3 and Cx43 associated with autophagic-lysosomal degeneration pathway and signal conduction mediated with gap junctions (GJS) in maintaining tissue homeostasis of the Ob-like cells which grew and degenerated in the 3D scaffold. Results from this in vitro study suggest that Ob-like HMS0014 cells actively regulate turnover of the peri-IP ECM to recapitulate the development and formation of osteoid tissue-engineered material which might contribute to augment osseointegration around the dental implant.

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