Geerts N, McGrath J, Stronk J N, Vanderlick T K, Huszar G
Chemical and Environmental Engineering, Yale University, New Haven, CT 06511, United States.
Department of Genetics, Yale University, New Haven, CT 06511, United States.
Reprod Biomed Online. 2014 Apr;28(4):451-61. doi: 10.1016/j.rbmo.2013.11.009. Epub 2013 Dec 4.
In addition to their role as man-made membranes, vesicles continue to be investigated as carriers for drug delivery. While most research focuses on their injectable properties, here a new delivery strategy is proposed. It is shown that spermatozoa can transport vesicles of variable composition. For human spermatozoa, the vesicles started to show binding after 20 mol% of the nonbinding vesicle backbone lipids were substituted with positive, negative, cerebroside or ganglioside lipids. Vesicle binding is a dynamic process with constant 'on' and 'off' binding. The physiological and motility attributes of the spermatozoa are not affected by the attached vesicles. Sperm swimming characteristics changed only marginally. Also, the activation status of the acrosomal membrane, tested with the fluorescent probe Pisum sativum agglutinin, was not affected by vesicle binding. Moreover, the hyaluronic acid-binding test showed that viable, fully developed spermatozoa will attach and remain bound to hyaluronic acid-coated slides regardless of vesicle binding. Therefore a new 'hybrid' delivery system was created with human spermatozoa, and tested with a mouse IVF system. Large unilamellar vesicles physisorbed to mouse spermatozoa can not only penetrate the mouse oocytes in these proof-of-principle experiments, but also deliver the cargo placed within the vesicles.
除了作为人造膜的作用外,囊泡作为药物递送载体也在持续被研究。虽然大多数研究集中在其可注射特性上,但本文提出了一种新的递送策略。研究表明,精子能够运输成分各异的囊泡。对于人类精子而言,当非结合性囊泡主链脂质的20摩尔%被正性、负性、脑苷脂或神经节苷脂取代后,囊泡开始显示出结合现象。囊泡结合是一个具有持续“结合”和“解离”的动态过程。精子的生理和运动属性不受附着囊泡的影响。精子的游动特性仅有轻微变化。此外,用荧光探针豌豆凝集素检测顶体膜的激活状态,结果显示其不受囊泡结合的影响。而且,透明质酸结合试验表明,无论是否结合囊泡,有活力、发育完全的精子都会附着并保持与透明质酸包被载玻片的结合。因此,利用人类精子构建了一种新的“混合”递送系统,并在小鼠体外受精系统中进行了测试。在这些原理验证实验中,物理吸附于小鼠精子的大单层囊泡不仅能够穿透小鼠卵母细胞,还能递送囊泡内的货物。