再生医学、细胞疗法和3D生物打印在角膜、眼整形和眼窝手术中的进展。

4区 医学 Q2 Biochemistry, Genetics and Molecular Biology
Kevin Y Wu, Natalie Kearn, Doanh Truong, Mazen Y Choulakian, Simon D Tran
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引用次数: 0

摘要

再生医学、细胞疗法和3D生物打印的进步正在重塑眼科手术的格局,为解决影响角膜、眼附件结构和眼窝的复杂情况提供了创新的方法。这些技术有可能提高治疗精度,改善功能结果,并解决传统手术和治疗干预的局限性。角膜作为眼睛的主要屈光和保护屏障,由于其无血管和免疫特权的性质,特别适合于再生方法。基于细胞的治疗,包括角膜缘干细胞移植、基质角质细胞和角膜内皮细胞再生,正在被研究其在角膜缘干细胞缺乏、圆锥角膜和内皮功能障碍等情况下恢复角膜清晰度和功能的潜力。与此同时,3D生物打印技术正在推动仿生角膜结构的发展,有可能解决全球供体组织短缺的问题,并促进个性化的手术解决方案。在眼部整形和眼窝手术中,再生策略和细胞疗法正在成为传统方法的可能替代方法,用于治疗眼睑缺损、睑板腺功能障碍和Graves眼窝病。干细胞疗法和生物工程支架在恢复泪腺功能以及重建复杂的眼附件和眶结构方面显示出潜力。此外,3d打印眶植入物和支架为修复创伤、肿瘤后切除和先天性缺陷提供了创新的解决方案,具有提高生物相容性和精度的潜力。分子和基因疗法,包括外泌体递送系统、纳米颗粒干预和基因编辑技术,正在扩大眼科疾病的治疗武器库。这些方法旨在通过解决疾病的潜在病理生理机制来提高再生治疗的疗效。本章概述了这些进步和将实验室发现转化为临床实践中有效疗法的挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Advances in Regenerative Medicine, Cell Therapy, and 3D Bioprinting for Corneal, Oculoplastic, and Orbital Surgery.

Advances in regenerative medicine, cell therapy, and 3D bioprinting are reshaping the landscape of ocular surgery, offering innovative approaches to address complex conditions affecting the cornea, ocular adnexal structures, and the orbit. These technologies hold the potential to enhance treatment precision, improve functional outcomes, and address limitations in traditional surgical and therapeutic interventions.The cornea, as the eye's primary refractive and protective barrier, is particularly well-suited for regenerative approaches due to its avascular and immune-privileged nature. Cell-based therapies, including limbal stem cell transplantation as well as stromal keratocyte and corneal endothelial cell regeneration, are being investigated for their potential to restore corneal clarity and function in conditions such as limbal stem cell deficiency, keratoconus, and endothelial dysfunction. Simultaneously, 3D bioprinting technologies are enabling the development of biomimetic corneal constructs, potentially addressing the global shortage of donor tissues and facilitating personalized surgical solutions.In oculoplastic and orbital surgery, regenerative strategies and cell therapies are emerging as possible alternatives to conventional approaches for conditions such as eyelid defects, meibomian gland dysfunction, and Graves' orbitopathy. Stem cell-based therapies and bioengineered scaffolds are showing potential in restoring lacrimal glands' function as well as reconstructing complex ocular adnexal and orbital structures. Moreover, 3D-printed orbital implants and scaffolds offer innovative solutions for repairing traumatic, post-tumor resection, and congenital defects, with the potential for improved biocompatibility and precision.Molecular and gene-based therapies, including exosome delivery systems, nanoparticle-based interventions, and gene-editing techniques, are expanding the therapeutic arsenal for ophthalmic disorders. These approaches aim to enhance the efficacy of regenerative treatments by addressing underlying pathophysiological mechanisms of diseases. This chapter provides an overview of these advancements and the challenges of translating laboratory discoveries into effective therapies in clinical practice.

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来源期刊
Advances in experimental medicine and biology
Advances in experimental medicine and biology 医学-医学:研究与实验
CiteScore
5.90
自引率
0.00%
发文量
465
审稿时长
2-4 weeks
期刊介绍: Advances in Experimental Medicine and Biology provides a platform for scientific contributions in the main disciplines of the biomedicine and the life sciences. This series publishes thematic volumes on contemporary research in the areas of microbiology, immunology, neurosciences, biochemistry, biomedical engineering, genetics, physiology, and cancer research. Covering emerging topics and techniques in basic and clinical science, it brings together clinicians and researchers from various fields.
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