Kumar Sunil, Roy Sohini, Chaudhury Koel, Sen Prasenjit, Guha Sujoy K
School of Medical Science and Technology, Indian Institute of Technology, Kharagpur 721302, India.
J Biomed Mater Res B Appl Biomater. 2008 Jul;86(1):154-61. doi: 10.1002/jbm.b.31001.
A new male contraceptive given the name RISUG (an acronym for reversible inhibition of sperm under guidance) and presently undergoing advanced clinical trials has been developed. When injected into the lumen of the vas deferens, its polyelectrolytic nature induces a surface charge imbalance on sperm membrane system leading to the leakage of enzymes essential for fertilization. Contact mode atomic force microscopy (AFM) has been used to analyze quantitatively the micro-structural properties of RISUG and its precipitate in various systems. Hydrolysis of the contraceptive gel resulted in the formation of pores of varying dimensions. RISUG being a highly charged molecule, as evident from zeta potential measurements, has a tendency to form a complex with ionic biomolecules present in the seminal plasma. This is supported by the experimental observations using AFM. This RISUG-biomolecule complex possibly acts as an ionic trap for spermatozoa passing through the vas deferens. Micro-structural properties of RISUG including amplitude (root mean square, peak-to-valley distance, skewness and kurtosis) and spatial roughness have been studied to understand its response to various physiological conditions. Significant alterations in the surface charge distribution of the sperm cell is observed on exposure to RISUG.
一种名为RISUG(可逆性引导下精子抑制的首字母缩写)的新型男性避孕药已研发出来,目前正在进行高级临床试验。当注入输精管腔时,其聚电解质性质会导致精子膜系统表面电荷失衡,从而导致受精所需酶的泄漏。接触模式原子力显微镜(AFM)已被用于定量分析RISUG及其在各种系统中的沉淀物的微观结构特性。避孕凝胶的水解导致形成了不同尺寸的孔。从zeta电位测量结果可以明显看出,RISUG是一种高电荷分子,它有与精浆中存在的离子生物分子形成复合物的倾向。使用AFM的实验观察结果支持了这一点。这种RISUG-生物分子复合物可能作为穿过输精管的精子的离子陷阱。已经研究了RISUG的微观结构特性,包括幅度(均方根、峰谷距离、偏度和峰度)和空间粗糙度,以了解其对各种生理条件的反应。在暴露于RISUG时,观察到精子细胞表面电荷分布有显著变化。