Department of Obstetrics, Gynaecology and Reproduction, Faculty of Veterinary Science, Chulalongkorn University, 39 Henri-Dunant Rd., Pathumwan, Bangkok, 10330 Thailand.
Unit of Biochemistry, Department of Physiology, Faculty of Veterinary Science, Chulalongkorn University, Bangkok 10330 Thailand.
Theriogenology. 2025 Jan 1;231:240-249. doi: 10.1016/j.theriogenology.2024.10.022. Epub 2024 Oct 24.
Surgical castration is a primary method for controlling male fertility, but it is impractical for large-scale population control of stray animals. Developing nanoparticle-mediated sterilants that induce cell apoptosis rather than necrosis is a complex and promising area of research. This study aimed to investigate the impact of intratesticular administration of alpha-mangostin encapsulated in nanostructured lipid carriers (AM-NLC) on testicular changes and any associated adverse effects over a 168-day observation period. Thirty-two healthy mature tomcats were enrolled. None of the cats treated with either AM-NLC (n = 28) or blank NLC (n = 4) exhibited noticeable complications related to pain or stress throughout the study, as assessed by clinical examination, blood profiles, and serum amyloid A levels. Histopathological analysis of AM-NLC treated cats revealed seminiferous epithelium degeneration, leading to defective tubules. Key findings included germ cell depletion, disorganized spermatogenic cells without spermatids in certain areas, apoptotic bodies, and intracytoplasmic vacuolization. The intertubular compartment showed no signs of inflammation, hyalinization, fibrosis, or necrosis. Despite widespread degeneration, some normal tubules were present in focal areas. The severity score of seminiferous tubule degeneration significantly increased from day 56 onwards (P < 0.05), suggesting a gradual and progressive compromise of the seminiferous epithelium. In contrast, testes from the blank-NLC group exhibited normal spermatogenesis. Overall, there were no significant changes in the volume of dissected testes, serum testosterone levels, or apoptotic index in AM-NLC-treated cats (P > 0.05). In conclusion, this study represents the first in vivo investigation of apoptotic-inducing agents as a novel nanomedicine-based antifertility compound for non-surgical castration in male animals. While the AM-NLC formulation proved safe for intratesticular administration, it failed to induce infertility in cats, as epididymal spermatozoa persisted throughout the study. Further research into alternative apoptosis-inducing nanomedicine sterilants remains both essential and challenging.
手术去势是控制雄性生育力的主要方法,但对于流浪动物的大规模种群控制来说并不实用。开发纳米颗粒介导的绝育剂,诱导细胞凋亡而不是坏死,是一个复杂而有前途的研究领域。本研究旨在探讨经睾丸内给予α-倒捻子素包裹在纳米结构脂质载体(AM-NLC)对睾丸变化的影响,以及在 168 天观察期内任何相关的不良反应。纳入 32 只健康成熟的公猫。在整个研究过程中,接受 AM-NLC(n=28)或空白 NLC(n=4)治疗的猫均未出现与疼痛或应激相关的明显并发症,通过临床检查、血液谱和血清淀粉样蛋白 A 水平评估。AM-NLC 治疗猫的组织病理学分析显示生精上皮退化,导致小管缺陷。主要发现包括生精细胞耗竭、某些区域无精子的生精细胞排列紊乱、凋亡小体和细胞内空泡化。间质区无炎症、玻璃样变、纤维化或坏死的迹象。尽管广泛退化,但在局灶区域仍存在一些正常的小管。从第 56 天开始,生精小管退化的严重程度评分显著增加(P<0.05),表明生精上皮逐渐和进行性受损。相比之下,空白-NLC 组的睾丸显示正常的精子发生。总体而言,AM-NLC 治疗猫的睾丸解剖体积、血清睾酮水平或凋亡指数均无显著变化(P>0.05)。总之,本研究首次在体内研究了凋亡诱导剂作为一种新型基于纳米医学的抗生育化合物,用于雄性动物的非手术去势。虽然 AM-NLC 制剂经证实可安全用于睾丸内给药,但在研究过程中,附睾精子仍然存在,因此未能在猫中诱导不育。进一步研究替代的凋亡诱导纳米医学绝育剂仍然是必要且具有挑战性的。