Corridon Peter R
Department of Immunology and Physiology, College of Medicine and Health Sciences, Khalifa University, Abu Dhabi, United Arab Emirates.
Biomedical Engineering, Healthcare Engineering Innovation Center, Khalifa University, Abu Dhabi, United Arab Emirates.
Front Med (Lausanne). 2023 Mar 7;10:1143028. doi: 10.3389/fmed.2023.1143028. eCollection 2023.
The rising global incidence of acute and chronic kidney diseases has increased the demand for renal replacement therapy. This issue, compounded with the limited availability of viable kidneys for transplantation, has propelled the search for alternative strategies to address the growing health and economic burdens associated with these conditions. In the search for such alternatives, significant efforts have been devised to augment the current and primarily supportive management of renal injury with novel regenerative strategies. For example, gene- and cell-based approaches that utilize recombinant peptides/proteins, gene, cell, organoid, and RNAi technologies have shown promising outcomes primarily in experimental models. Supporting research has also been conducted to improve our understanding of the critical aspects that facilitate the development of efficient gene- and cell-based techniques that the complex structure of the kidney has traditionally limited. This manuscript is intended to communicate efforts that have driven the development of such therapies by identifying the vectors and delivery routes needed to drive exogenous transgene incorporation that may support the treatment of acute and chronic kidney diseases.
全球急慢性肾病发病率的上升增加了对肾脏替代疗法的需求。这个问题,再加上可用于移植的活体肾脏供应有限,促使人们寻找替代策略,以应对与这些疾病相关的日益增长的健康和经济负担。在寻找此类替代方案的过程中,人们付出了巨大努力,设计出新颖的再生策略来加强目前主要是支持性的肾损伤管理。例如,利用重组肽/蛋白质、基因、细胞、类器官和RNA干扰技术的基于基因和细胞的方法,主要在实验模型中显示出了有前景的结果。还开展了辅助研究,以增进我们对促进高效基因和细胞技术发展的关键方面的理解,而肾脏的复杂结构传统上限制了这些技术的发展。本手稿旨在通过确定驱动外源性转基因整合所需的载体和递送途径,来介绍推动此类疗法发展的相关工作,这些疗法可能有助于治疗急慢性肾病。