Astrocytic Chitinase‐3‐like protein 1 in neurological diseases: Potential roles and future perspectives

Author:

Li Fei12ORCID,Liu An1ORCID,Zhao Minggao13ORCID,Luo Lanxin13ORCID

Affiliation:

1. Precision Pharmacy and Drug Development Center, Department of Pharmacy, Tangdu Hospital Fourth Military Medical University Xi'an Shaanxi China

2. Department of Pharmacy The Hospital of 92880 Troops, PLA Navy Zhoushan Zhejiang China

3. Institute of Medical Research Northwestern Polytechnical University Shaanxi Xi'an China

Abstract

AbstractChitinase‐3‐like protein 1 (CHI3L1) is a secreted glycoprotein characterized by its ability to regulate multiple biological processes, such as the inflammatory response and gene transcriptional signaling activation. Abnormal CHI3L1 expression has been associated with multiple neurological disorders and serves as a biomarker for the early detection of several neurodegenerative diseases. Aberrant CHI3L1 expression is also reportedly associated with brain tumor migration and metastasis, as well as contributions to immune escape, playing important roles in brain tumor progression. CHI3L1 is synthesized and secreted mainly by reactive astrocytes in the central nervous system. Thus, targeting astrocytic CHI3L1 could be a promising approach for the treatment of neurological diseases, such as traumatic brain injury, ischemic stroke, Alzheimer's disease, Parkinson's disease, multiple sclerosis, amyotrophic lateral sclerosis, and glioma. Based on current knowledge of CHI3L1, we assume that it acts as a molecule mediating several signaling pathways driving the initiation and progression of neurological disorders. This narrative review is the first to introduce the potential roles of astrocytic CHI3L1 in neurological disorders. We also equally explore astrocytic CHI3L1 mRNA expression under physiological and pathological conditions. Inhibiting CHI3L1 and disrupting its interaction with its receptors through multiple mechanisms of action are briefly discussed. These endeavors highlight the pivotal roles of astrocytic CHI3L1 in neurological disorders and could contribute to the development of effective inhibitors based on the strategy of structure‐based drug discovery, which could be an attractive therapeutic approach for neurological disease treatment.image

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Cellular and Molecular Neuroscience,Biochemistry

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