Mi, T., Yang, S., Wang, N., Huo, F., Zhao, M., Lv, S., Su, T., Feng, S., Wang, H., Guo, L., Zhu, J.-K., & Liu, H. (2025). Ascorbic acid attenuates immunosenescence and cognitive decline via MYH9-Mediated CD8⁺ T cell differentiation. Immunity & Ageing, 22(1). https://doi.org/10.1186/s12979-025-00538-4
ISO-690 (author-date, English)MI, Taotao, YANG, Shanshan, WANG, Nan, HUO, Fengjiao, ZHAO, Meili, LV, Shuyao, SU, Tingting, FENG, Shengyu, WANG, Hao, GUO, Liuling, ZHU, Jian-Kang and LIU, Hailiang, 2025. Ascorbic acid attenuates immunosenescence and cognitive decline via MYH9-Mediated CD8⁺ T cell differentiation. Immunity & Ageing. 1 December 2025. Vol. 22, no. 1, . DOI 10.1186/s12979-025-00538-4.
Modern Language Association 9th editionMi, T., S. Yang, N. Wang, F. Huo, M. Zhao, S. Lv, T. Su, S. Feng, H. Wang, L. Guo, J.-K. Zhu, and H. Liu. “Ascorbic Acid Attenuates Immunosenescence and Cognitive Decline via MYH9-Mediated CD8⁺ T Cell Differentiation”. Immunity & Ageing, vol. 22, no. 1, Dec. 2025, https://doi.org/10.1186/s12979-025-00538-4.
Mohr Siebeck - Recht (Deutsch - Österreich)Mi, Taotao/Yang, Shanshan/Wang, Nan/Huo, Fengjiao/Zhao, Meili/Lv, Shuyao et al.: Ascorbic acid attenuates immunosenescence and cognitive decline via MYH9-Mediated CD8⁺ T cell differentiation, Immunity & Ageing 2025,
Emerald - HarvardMi, T., Yang, S., Wang, N., Huo, F., Zhao, M., Lv, S., Su, T., Feng, S., Wang, H., Guo, L., Zhu, J.-K. and Liu, H. (2025), “Ascorbic acid attenuates immunosenescence and cognitive decline via MYH9-Mediated CD8⁺ T cell differentiation”, Immunity & Ageing, Vol. 22 No. 1, available at:https://doi.org/10.1186/s12979-025-00538-4.