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The role of MBD3 in cell biology and disease: Recent advances and future directions.

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Experimental cell research 📖 저널 OA 6.6% 2022: 0/3 OA 2023: 0/2 OA 2024: 0/7 OA 2025: 1/26 OA 2026: 4/36 OA 2022~2026 2026 Vol.459(1) p. 115002 OA Mitochondrial Function and Pathology
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PubMed DOI OpenAlex 마지막 보강 2026-04-28

PICO 자동 추출 (휴리스틱, conf 2/4)

유사 논문
P · Population 대상 환자/모집단
추출되지 않음
I · Intervention 중재 / 시술
increasing attention
C · Comparison 대조 / 비교
추출되지 않음
O · Outcome 결과 / 결론
MBD3 affects the mechanisms of essential processes by regulating the binding of transcription factors and chromatin remodeling. Here we review the structure and functions of MBD3, its role in cell biology, the mechanisms of its action in different diseases, and future research directions, with the aim of increasing our understanding of MBD3 and its potential in clinical applications.
OpenAlex 토픽 · Mitochondrial Function and Pathology Pancreatic function and diabetes Adipose Tissue and Metabolism

Meng J, Yang X, Luo H, Liao Y, Wei P, Jian H

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📝 환자 설명용 한 줄

MBD3 (mBD3, methyl-CpG binding domain protein 3) is a key epigenetic regulator that is involved in a wide range of biological processes including gene expression regulation, cell differentiation, and

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APA Jinqiu Meng, Xueying Yang, et al. (2026). The role of MBD3 in cell biology and disease: Recent advances and future directions.. Experimental cell research, 459(1), 115002. https://doi.org/10.1016/j.yexcr.2026.115002
MLA Jinqiu Meng, et al.. "The role of MBD3 in cell biology and disease: Recent advances and future directions.." Experimental cell research, vol. 459, no. 1, 2026, pp. 115002.
PMID 41933571 ↗

Abstract

MBD3 (mBD3, methyl-CpG binding domain protein 3) is a key epigenetic regulator that is involved in a wide range of biological processes including gene expression regulation, cell differentiation, and development. With the realization of the importance of epigenetics in biological systems, the role of MBD3 in normal and abnormal conditions, especially with respect to cancer and neurodegenerative diseases, has received increasing attention. MBD3 affects the mechanisms of essential processes by regulating the binding of transcription factors and chromatin remodeling. Here we review the structure and functions of MBD3, its role in cell biology, the mechanisms of its action in different diseases, and future research directions, with the aim of increasing our understanding of MBD3 and its potential in clinical applications.

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