Salivary Gland Bioengineering.

Salivary Gland Bioengineering.
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DOI:
10.3390/bioengineering11010028
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发表时间:
2023-12-26
期刊:
Bioengineering (Basel, Switzerland)
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其他
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唾液腺功能障碍影响全球数百万人,组织工程可能提供一个有前途的治疗途径。本文从正常涎腺发育和功能的研究入手,对涎腺组织工程的研究现状进行了综述。它讨论了纤维化和细胞衰老对唾液腺病理的影响。研究了适合组织工程的多种细胞,包括细胞系、原代唾液腺细胞和干细胞。此外,本文探讨了各种支持性生物材料和支架制造方法,提高唾液腺细胞的存活,分化和植入。还评估了用于改善工程化唾液腺组织的血管化、神经支配和植入的创新工程策略,包括生物打印、微流体水凝胶、网状电子器件和纳米颗粒。这篇综述强调了这一研究领域在治疗唾液腺功能障碍方面的潜力,并提出了未来探索的方向。
Salivary gland dysfunction affects millions globally, and tissue engineering may provide a promising therapeutic avenue. This review delves into the current state of salivary gland tissue engineering research, starting with a study of normal salivary gland development and function. It discusses the impact of fibrosis and cellular senescence on salivary gland pathologies. A diverse range of cells suitable for tissue engineering including cell lines, primary salivary gland cells, and stem cells are examined. Moreover, the paper explores various supportive biomaterials and scaffold fabrication methodologies that enhance salivary gland cell survival, differentiation, and engraftment. Innovative engineering strategies for the improvement of vascularization, innervation, and engraftment of engineered salivary gland tissue, including bioprinting, microfluidic hydrogels, mesh electronics, and nanoparticles, are also evaluated. This review underscores the promising potential of this research field for the treatment of salivary gland dysfunction and suggests directions for future exploration.
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