Ma Meng-Hui, Chen Pei-Gen, He Jun-Xian, Chen Hai-Cheng, Xu Zhen-Han, Lv Lin-Yan, Li Yan-Qing, Liang Xiao-Yan, Liu Gui-Hua
Center of Reproductive Medicine, The Sixth Affiliated Hospital, Sun Yat-sen University, Guangzhou 510655, China.
Biomedical Innovation Center, The Sixth Affiliated Hospital, Sun Yat-sen University, Guangzhou 510655, China.
Asian J Androl. 2025 Jul 1;27(4):454-463. doi: 10.4103/aja202490. Epub 2024 Nov 12.
The aim of this investigation was to determine the optimal storage medium for testicular hypothermic transportation and identify the ideal concentration for the application of the protective agent 5-aminolevulinic acid (5-ALA). Furthermore, this study aimed to explore the underlying mechanism of the protective effects of 5-ALA. First, we collected and stored mouse testicular fragments in different media, including Hank's balanced salt solution (HBSS; n = 5), Dulbecco's Modified Eagle Medium/Nutrient Mixture F-12 (DMEM/F12; n = 5), and alpha-minimum essential medium (αMEM; n = 5). Storage of testicular tissue in HBSS preserved the integrity of testicular morphology better than that in the DMEM/F12 group ( P < 0.05) and the αMEM group ( P < 0.01). Testicular fragments were subsequently placed in HBSS with various concentrations of 5-ALA (0 [control], 1 mmol l -1 , 2 mmol l -1 , and 5 mmol l -1 ) to determine the most effective concentration of 5-ALA. The 2 mmol l -1 5-ALA group ( n = 3) presented the highest positive rate of spermatogonial stem cells compared with those in the control, 1 mmol l -1 , and 5 mmol l -1 5-ALA groups. Finally, the tissue fragments were preserved in HBSS with control ( n = 3) and 2 mmol l -1 5-ALA ( n = 3) under low-temperature conditions. A comparative analysis was performed against fresh testes ( n = 3) to elucidate the underlying mechanism of 5-ALA. Gene set enrichment analysis (GSEA) for WikiPathways revealed that the p38 mitogen-activated protein kinase (MAPK) signaling pathway was downregulated in the 2 mmol l -1 5-ALA group compared with that in the control group (normalized enrichment score [NES] = -1.57, false discovery rate [FDR] = 0.229, and P = 0.019). In conclusion, these data suggest that using 2 mmol l -1 5-ALA in HBSS effectively protected the viability of spermatogonial stem cells upon hypothermic transportation.
本研究的目的是确定睾丸低温运输的最佳储存介质,并确定保护剂5-氨基乙酰丙酸(5-ALA)的理想应用浓度。此外,本研究旨在探讨5-ALA保护作用的潜在机制。首先,我们将小鼠睾丸组织碎片收集并储存在不同的培养基中,包括汉克斯平衡盐溶液(HBSS;n = 5)、杜氏改良伊格尔培养基/营养混合物F-12(DMEM/F12;n = 5)和α-最低必需培养基(αMEM;n = 5)。与DMEM/F12组(P < 0.05)和αMEM组(P < 0.01)相比,将睾丸组织储存在HBSS中能更好地保持睾丸形态的完整性。随后,将睾丸组织碎片置于含有不同浓度5-ALA(0 [对照组]、1 mmol/L、2 mmol/L和5 mmol/L)的HBSS中,以确定5-ALA的最有效浓度。与对照组、1 mmol/L和5 mmol/L 5-ALA组相比,2 mmol/L 5-ALA组(n = 3)的精原干细胞阳性率最高。最后,将组织碎片在低温条件下保存在含有对照(n = 3)和2 mmol/L 5-ALA(n = 3)的HBSS中。与新鲜睾丸(n = 3)进行对比分析,以阐明5-ALA的潜在机制。对WikiPathways的基因集富集分析(GSEA)显示,与对照组相比,2 mmol/L 5-ALA组的p38丝裂原活化蛋白激酶(MAPK)信号通路下调(标准化富集分数 [NES] = -1.57,错误发现率 [FDR] = 0.229,P = 0.019)。总之,这些数据表明,在HBSS中使用2 mmol/L 5-ALA可有效保护低温运输过程中精原干细胞的活力。