Skin and Stem Cell Research Center, Tehran University of Medical Science, Tehran, Iran.
School of Chemical Engineering, College of Engineering, University of Tehran, Tehran, Iran.
Nanomedicine. 2019 Jan;15(1):70-85. doi: 10.1016/j.nano.2018.08.012. Epub 2018 Sep 7.
Recent progress in hair follicle regeneration and alopecia treatment necessitates revisiting the concepts and approaches. In this sense, there is a need for shedding light on the clinical and surgical therapies benefitting from nanobiomedicine. From this perspective, this review attempts to recognize requirements upon which new hair therapies are grounded; to underline shortcomings and opportunities associated with recent advanced strategies for hair regeneration; and most critically to look over hair regeneration from nanomaterials and pluripotent stem cell standpoint. It is noteworthy that nanotechnology is able to illuminate a novel path for reprogramming cells and controlled differentiation to achieve the desired performance. Undoubtedly, this strategy needs further advancement and a lot of critical questions have yet to be answered. Herein, we introduce the salient features, the hurdles that must be overcome, the hopes, and practical constraints to engineer stem cell niches for hair follicle regeneration.
近年来,毛囊再生和脱发治疗领域取得了新进展,这就需要重新审视相关概念和方法。从这个意义上说,我们有必要了解受益于纳米生物医学的临床和外科疗法。基于此,本综述旨在明确新毛发疗法的基础需求;强调与最近先进的毛发再生策略相关的缺点和机遇;并从纳米材料和多能干细胞的角度审视毛发再生。值得注意的是,纳米技术为细胞重编程和控制分化以实现预期性能提供了新的途径。毫无疑问,这种策略需要进一步发展,还有许多关键问题需要回答。在此,我们介绍了用于毛囊再生的干细胞龛工程的显著特征、必须克服的障碍、希望和实际限制。