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铁蛋白纳米笼包封的ATP穿越血睾屏障并增强弱精子症模型中的精子活力。

Ferritin-Nanocaged ATP Traverses the Blood-Testis Barrier and Enhances Sperm Motility in an Asthenozoospermia Model.

作者信息

Pang Jing, Feng Xu, Liang Qian, Zheng Xiaoyan, Duan Yiman, Zhang Xin, Zhang Jubiao, Chen Yang, Fan Kelong, Gao Lizeng, Li Juxue

机构信息

State Key Laboratory of Reproductive Medicine, Nanjing Medical University, Nanjing, Jiangsu 211166, China.

Key Laboratory of Human Functional Genomics of Jiangsu Province, Nanjing Medical University, Nanjing, Jiangsu 211166, China.

出版信息

ACS Nano. 2022 Mar 22;16(3):4175-4185. doi: 10.1021/acsnano.1c10029. Epub 2022 Feb 15.

Abstract

Sperm motility can be enhanced by adding ATP exogenously during fertilization. However, administering exogenous ATP to the testis to improve sperm motility for asthenozoospermia treatment has not been investigated yet. Inspired by the recent advances in nanomedicine, we investigated whether the capability of drug delivery nanocarriers to traverse the blood-testis barrier (BTB) can facilitate ATP-dependent asthenozoospermia treatment. We found that the human H-ferritin (HFn) nanocarrier possesses the capability to traverse the BTB and specifically targets the head of elongated sperm cells. Specifically, the HFn nanocarrier traversed the BTB and accumulated in the sperm heads by binding with the HFn receptor (HFR), whose expression was relatively low in Sertoli cells but high in sperm heads. In a gossypol-induced mouse asthenozoospermia model, the administration of an ATP-loaded HFn nanocage through a tail vein injection significantly improved sperm motility. Moreover, the HFn nanocarrier was not toxic to mice in the short (1d) and long terms (30d, 90d) nor did it affect their reproductive health. Thus, the ATP-loaded HFn nanocarrier can potentially serve as a drug-delivery system for treating asthenozoospermia.

摘要

在受精过程中通过外源性添加ATP可增强精子活力。然而,向睾丸施用外源性ATP以改善弱精子症患者的精子活力尚未得到研究。受纳米医学最新进展的启发,我们研究了药物递送纳米载体穿越血睾屏障(BTB)的能力是否有助于ATP依赖型弱精子症的治疗。我们发现人H-铁蛋白(HFn)纳米载体具有穿越血睾屏障的能力,并特异性靶向伸长精子细胞的头部。具体而言,HFn纳米载体通过与HFn受体(HFR)结合穿越血睾屏障并在精子头部积累,HFR在支持细胞中的表达相对较低,但在精子头部中表达较高。在棉酚诱导的小鼠弱精子症模型中,通过尾静脉注射施用负载ATP的HFn纳米笼可显著改善精子活力。此外,HFn纳米载体在短期(1天)和长期(30天、90天)对小鼠均无毒,也不影响其生殖健康。因此,负载ATP的HFn纳米载体有潜力作为一种治疗弱精子症的药物递送系统。

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