A critical review on therapeutic approaches of CRISPR-Cas9 in diabetes mellitus

被引:0
|
作者
Jutishna Bora
Ankita Dey
Antonia R. Lyngdoh
Archna Dhasmana
Anuj Ranjan
Shristi Kishore
Sarvesh Rustagi
Hardeep Singh Tuli
Abhishek Chauhan
Prangya Rath
Sumira Malik
机构
[1] Amity Institute of Biotechnology,Department of Biochemistry
[2] Amity University Jharkhand,Academy of Biology and Biotechnology
[3] North Eastern Hill University,School of Applied and Life Sciences
[4] Himalayan School of Biosciences,Department of Biotechnology
[5] Swami Rama Himalayan University,Amity Institute of Environmental Toxicology Safety and Management
[6] Southern Federal University,undefined
[7] Uttaranchal University,undefined
[8] Maharishi Markandeshwar Engineering College,undefined
[9] Maharishi Markandeshwar (Deemed to Be University),undefined
[10] Amity University,undefined
[11] Amity Institute of Environmental Sciences,undefined
[12] Amity University,undefined
[13] Guru Nanak College of Pharmaceutical Sciences,undefined
关键词
Diabetes mellitus; Gene therapy; Genome editing; Pluripotent stem cell; CRISPR-Cas9, hiPSCs;
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学科分类号
摘要
Diabetes mellitus (D.M.) is a common metabolic disorder caused mainly by combining two primary factors, which are (1) defects in insulin production by the pancreatic β-cells and (2) responsiveness of insulin-sensitive tissues towards insulin. Despite the rapid advancement in medicine to suppress elevated blood glucose levels (hyperglycemia) and insulin resistance associated with this hazard, a demand has undoubtedly emerged to find more effective and curative dimensions in therapeutic approaches against D.M. The administration of diabetes treatment that emphasizes insulin production and sensitivity may result in unfavorable side effects, reduced adherence, and potential treatment ineffectiveness. Recent progressions in genome editing technologies, for instance, in zinc-finger nucleases, transcription activator-like effector nucleases, and clustered regularly interspaced short palindromic repeat (CRISPR-Cas)-associated nucleases, have greatly influenced the gene editing technology from concepts to clinical practices. Improvements in genome editing technologies have also opened up the possibility to target and modify specific genome sequences in a cell directly. CRISPR/Cas9 has proven effective in utilizing ex vivo gene editing in embryonic stem cells and stem cells derived from patients. This application has facilitated the exploration of pancreatic beta-cell development and function. Furthermore, CRISPR/Cas9 enables the creation of innovative animal models for diabetes and assesses the effectiveness of different therapeutic strategies in treating the condition. We, therefore, present a critical review of the therapeutic approaches of the genome editing tool CRISPR-Cas9 in treating D.M., discussing the challenges and limitations of implementing this technology.
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页码:3459 / 3481
页数:22
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