首页> 外文期刊>Tissue engineering, Part A >Three-Dimensional Culture of Salivary Gland Stem Cell in Orthotropic Decellularized Extracellular Matrix Hydrogels
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Three-Dimensional Culture of Salivary Gland Stem Cell in Orthotropic Decellularized Extracellular Matrix Hydrogels

机译:唾液腺干细胞三维培养在正交脱细胞外基质水凝胶中的三维培养

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摘要

Radiotherapy in patients with cancer can kill cancer cells but also damage normal cells or tissues. During the treatment of patients with head and neck cancer or thyroid cancer, hyposalivation is a representative chronic side effect of radio-damaged salivary glands (SGs). The major symptom of hyposalivation is mouth dryness, resulting in several subsequent long-term complications. No effective therapeutic approaches have been developed to manage this symptom. In this study, we developed the first rat SG tissue-derived decellularized extracellular matrix hydrogel (DSGM-hydrogel) as a functional orthotropic bioscaffold for future efficient SG stem cell therapy. DSGM-hydrogels were characterized by rheological or biochemical analyses, and rat SG stem/progenitor cells (rSGSCs) were then subjected to three-dimensional culture in the DSGM-hydrogels. Interestingly, DSGM-hydrogel-embedded rSGSCs survived and expressed SG functional differentiation marker of amylase IA and increased enzyme activity of alpha-amylase in protein level, whereas they showed reduced levels of adult ductal stem/progenitor markers, including c-Kit, c-Met, and CD44. Furthermore, the expression levels of basic epithelial tight junction markers were recovered to levels similar to those naked SG tissues after culture in DSGM-hydrogels in transcription level. Therefore, our findings suggested that the DSGM-hydrogels could provide an appropriate microenvironment for stem/progenitor cell survival and a source of SG cytodifferentiation. This approach could be an applicable method to SG stem cell research as a potential source for an organoid and for clinical regenerative reagents to manage radio-damaged SGs in vivo.
机译:癌症患者的放射疗法可以杀死癌细胞,但也损害正常细胞或组织。在治疗头部和颈部癌症或甲状腺癌的患者期间,高溶剂是无线损伤唾液腺(SGS)的代表性慢性副作用。乳清剂的主要症状是口干,导致几种随后的长期并发症。没有开发有效的治疗方法来管理这种症状。在这项研究中,我们开发了第一种大鼠SG组织衍生的脱细胞外基质基质水凝胶(DSGM-HYDROGEL)作为功能性正向生物支导,用于未来有效的SG干细胞疗法。通过流变或生物化学分析表征DSGM-水凝胶,然后在DSGM-水凝胶中进行大鼠SG茎/祖细胞(RSGSC)。有趣的是,DSGM-HydroLel-嵌入式RSGSCs存活并表达了淀粉酶Ia的SG官能分化标志物和蛋白质水平中α-淀粉酶的增加的酶活性,而它们表现出降低的成人导管茎/祖素标志物,包括C-kit,C-遇见,CD44。此外,将碱性上皮紧密结标记物的表达水平回收到与转录水平的DSGM-水凝胶中培养后的那些裸体SG组织类似的水平。因此,我们的研究结果表明DSGM-水凝胶可以为茎/祖细胞存活和SG细胞分子源提供适当的微环境。这种方法可以是SG干细胞研究的适用方法,作为有机体的潜在来源和临床再生试剂在体内管理无线电受损的SGS。

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