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超顺磁性氧化铁纳米颗粒(SPIONS)睾丸注射对小鼠模型中睾丸间质细胞功能和精子生成的影响。

Effects of superparamagnetic iron oxide nanoparticles (SPIONS) testicular injection on Leydig cell function and sperm production in a murine model.

作者信息

Ferraz Fausto S, Dantas Graziela de P F, Coimbra John L P, López Jorge L, Lacerda Samyra M S N, Dos Santos Mara L, Vieira Carolina P, Lara Nathália de L E M, Viana Pedro I M, Ladeira Luiz O, Guarnieri Leonardo O, Marçal Eduardo M A, Moraes Márcio F D, Martins Estefânia M N, Andrade Lídia M, Costa Guilherme M J

机构信息

Department of Morphology, ICB, Federal University of Minas Gerais, Belo Horizonte, MG, Brazil.

Center for Biological and Natural Sciences, Federal University of Acre, Rio Branco, AC, Brazil.

出版信息

Reprod Toxicol. 2024 Jun;126:108584. doi: 10.1016/j.reprotox.2024.108584. Epub 2024 Mar 30.

Abstract

In the domain of medical advancement, nanotechnology plays a pivotal role, especially in the synthesis of biocompatible materials for therapeutic use. Superparamagnetic Iron Oxide Nanoparticles (SPIONs), known for their magnetic properties and low toxicity, stand at the forefront of this innovation. This study explored the reproductive toxicological effects of Sodium Citrate-functionalized SPIONs (Cit_SPIONs) in adult male mice, an area of research that holds significant potential yet remains largely unknown. Our findings reveal that Cit_SPIONs induce notable morphological changes in interstitial cells and the seminiferous epithelium when introduced via intratesticular injection. This observation is critical in understanding the interactions of nanomaterials within reproductive biological systems. A striking feature of this study is the rapid localization of Cit_SPIONs in Leydig cells post-injection, a factor that appears to be closely linked with the observed decrease in steroidogenic activity and testosterone levels. This data suggests a possible application in developing nanostructured therapies targeting androgen-related processes. Over 56 days, these nanoparticles exhibited remarkable biological distribution in testis parenchyma, infiltrating various cells within the tubular and intertubular compartments. While the duration of spermatogenesis remained unchanged, there were many Tunel-positive germ cells, a notable reduction in daily sperm production, and reduced progressive sperm motility in the treated group. These insights not only shed light on the intricate mechanisms of Cit_SPIONs interaction with the male reproductive system but also highlight the potential of nanotechnology in developing advanced biomedical applications.

摘要

在医学进步领域,纳米技术发挥着关键作用,尤其是在合成用于治疗的生物相容性材料方面。超顺磁性氧化铁纳米颗粒(SPIONs)以其磁性和低毒性而闻名,处于这一创新的前沿。本研究探讨了柠檬酸钠功能化的SPIONs(Cit_SPIONs)对成年雄性小鼠的生殖毒理学影响,这一研究领域具有巨大潜力,但在很大程度上仍不为人知。我们的研究结果表明,通过睾丸内注射引入Cit_SPIONs时,会在间质细胞和生精上皮中引起显著的形态学变化。这一观察结果对于理解纳米材料在生殖生物系统中的相互作用至关重要。本研究的一个显著特点是注射后Cit_SPIONs在睾丸间质细胞中的快速定位,这一因素似乎与观察到的类固醇生成活性和睾酮水平的降低密切相关。这些数据表明在开发针对雄激素相关过程的纳米结构疗法方面可能具有应用价值。在56天的时间里,这些纳米颗粒在睾丸实质中表现出显著的生物分布,渗透到小管和小管间隔内的各种细胞中。虽然精子发生的持续时间保持不变,但在治疗组中出现了许多Tunel阳性生殖细胞,每日精子产量显著降低,精子渐进性运动能力下降。这些见解不仅揭示了Cit_SPIONs与雄性生殖系统相互作用的复杂机制,也突出了纳米技术在开发先进生物医学应用方面的潜力。

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