Weng Ruopeng, Liu Jiaqing, Yu Qingtan, Yuan Haitao, Qiu Yun, Liu Huicong, Wang Lingna, Mei Zijie, Zhu Fangfang
Department of Obstetrics, Women's Hospital, Zhejiang University School of Medicine, Hangzhou, China.
School of Biomedical Engineering, Shanghai Jiao Tong University, Shanghai, China.
Heliyon. 2024 Jul 20;10(15):e34923. doi: 10.1016/j.heliyon.2024.e34923. eCollection 2024 Aug 15.
The aging process profoundly impacts the systemic milieu, with specific blood-borne factors playing critical roles in its regulation. Platelet Factor 4 (PF4), released by platelets, has emerged as a novel blood-borne factor that contributes to the rejuvenation of aging brains in rodents. However, the age-related disparity in PF4 levels in humans remains poorly understood. To explore the relationship between PF4 and the natural aging process in humans, we collected peripheral blood (PB) samples from young (23.40 ± 2.13 years, n = 15) and elderly (75.23 ± 4.19 years, n = 13) individuals, along with cord blood (CB) samples (n = 15). ELISA analysis revealed higher PF4 levels in platelet-rich plasma lysate from young PB compared with that from elderly PB. Consistent with this, qPCR results demonstrated the highest PF4 expression in young PB among the three groups. In addition, FACS analysis showed increased expression of CXCR3 in mononuclear cells of young PB, indicating a greater responsiveness to PF4. Finally, our RNA-sequencing analysis corroborated platelets as a sensitive element during the natural aging process, and indicated platelets play a pivotal role in antioxidant response during aging, as evidenced by significant enrichment of several age-related pathways. These findings reveal that, alongside PF4 levels, platelets undergo substantial alterations during aging. Taken together, our data identified age-related disparities in platelets and PF4-related elements during natural aging and underscored the potential of targeting platelet modulation as an intervention in the aging process.
衰老过程会对全身环境产生深远影响,特定的血液因子在其调节中起着关键作用。血小板释放的血小板因子4(PF4)已成为一种新型血液因子,有助于啮齿动物衰老大脑的年轻化。然而,人类PF4水平与年龄相关的差异仍知之甚少。为了探索PF4与人类自然衰老过程之间的关系,我们收集了年轻个体(23.40±2.13岁,n = 15)、老年个体(75.23±4.19岁,n = 13)的外周血(PB)样本以及脐带血(CB)样本(n = 15)。酶联免疫吸附测定(ELISA)分析显示,年轻PB富含血小板血浆裂解物中的PF4水平高于老年PB。与此一致,定量聚合酶链反应(qPCR)结果表明,三组中年轻PB的PF4表达最高。此外,荧光激活细胞分选(FACS)分析显示,年轻PB单核细胞中CXCR3的表达增加,表明对PF4的反应性更强。最后,我们的RNA测序分析证实血小板是自然衰老过程中的一个敏感元素,并表明血小板在衰老过程中的抗氧化反应中起关键作用,这一点从几个与年龄相关的途径的显著富集得到证明。这些发现表明,除了PF4水平外,血小板在衰老过程中也会发生实质性变化。综上所述,我们的数据确定了自然衰老过程中血小板和PF4相关元素与年龄相关的差异,并强调了靶向血小板调节作为衰老过程干预措施的潜力。