Affiliation:
1. Department of Physiology, Korea University College of Medicine, Seoul 02841, Republic of Korea
2. Neuroscience Research Institute, Korea University College of Medicine, Seoul 02841, Republic of Korea
3. Department of Biomedical Sciences, Korea University College of Medicine, Seoul 02841, Republic of Korea
Abstract
The clustered regularly interspaced short palindromic repeats (CRISPR)/CRISPR-associated protein (Cas) system continues to evolve, thereby enabling more precise detection and repair of mutagenesis. The development of CRISPR/Cas-based diagnosis holds promise for high-throughput, cost-effective, and portable nucleic acid screening and genetic disease diagnosis. In addition, advancements in transportation strategies such as adeno-associated virus (AAV), lentiviral vectors, nanoparticles, and virus-like vectors (VLPs) offer synergistic insights for gene therapeutics in vivo. Wilson’s disease (WD), a copper metabolism disorder, is primarily caused by mutations in the ATPase copper transporting beta (ATP7B) gene. The condition is associated with the accumulation of copper in the body, leading to irreversible damage to various organs, including the liver, nervous system, kidneys, and eyes. However, the heterogeneous nature and individualized presentation of physical and neurological symptoms in WD patients pose significant challenges to accurate diagnosis. Furthermore, patients must consume copper-chelating medication throughout their lifetime. Herein, we provide a detailed description of WD and review the application of novel CRISPR-based strategies for its diagnosis and treatment, along with the challenges that need to be overcome.
Funder
The Bio & Medical Technology Development Program of the National Research Foundation (NRF) of Korea
Reference310 articles.
1. Ruiz, L.M., Libedinsky, A., and Elorza, A.A. (2021). Role of copper on mitochondrial function and metabolism. Front. Mol. Biosci., 8.
2. Trace elements in human physiology and pathology. Copper;Tapiero;Biomed. Pharmacother.,2003
3. The molecular mechanisms of copper metabolism and its roles in human diseases;Chen;Pflug. Arch.,2020
4. Copper-induced cell death;Kahlson;Science,2022
5. Fenton-like chemistry by a Copper(I) complex and H2O2 relevant to enzyme peroxygenase C-H hydroxylation;Kim;J. Am. Chem. Soc.,2023