Single-Cell RNA Sequencing Reveals RAC1 Involvement in Macrophages Efferocytosis in Diabetic Kidney Disease
Author:
Publisher
Springer Science and Business Media LLC
Subject
Immunology,Immunology and Allergy
Link
https://link.springer.com/content/pdf/10.1007/s10753-023-01942-y.pdf
Reference36 articles.
1. Jung, C.-Y., and T.-H. Yoo. 2022. Pathophysiologic mechanisms and potential biomarkers in diabetic kidney disease. Diabetes and Metabolism Journal 46: 181–197.
2. Hu, Q., Y. Chen, X. Deng, Y. Li, X. Ma, J. Zeng, and Y. Zhao. 2023. Diabetic nephropathy: Focusing on pathological signals, clinical treatment, and dietary regulation. Biomedicine & Pharmacotherapy 159: 114252.
3. Liu, Y., A. Uruno, R. Saito, N. Matsukawa, E. Hishinuma, D. Saigusa, H. Liu, and M. Yamamoto. 2022. Nrf2 deficiency deteriorates diabetic kidney disease in Akita model mice. Redox Biology 58: 102525.
4. Boada-Romero, E., J. Martinez, B.L. Heckmann, and D.R. Green. 2020. The clearance of dead cells by efferocytosis. Nature Reviews Molecular Cell Biology 21: 398–414.
5. Doddapattar, P., R. Dev, M. Ghatge, R.B. Patel, M. Jain, N. Dhanesha, S.R. Lentz, and A.K. Chauhan. 2022. Myeloid cell PKM2 deletion enhances efferocytosis and reduces atherosclerosis. Circulation Research 130: 1289–1305.
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