Morrell J M, Johannisson A, Rodriguez-Martinez H
Division of Reproduction, Department of Clinical Sciences, Swedish University of Agricultural Sciences (SLU), P.O. Box 7054, 75007 Uppsala, Sweden.
ISRN Vet Sci. 2011 Apr 28;2011:128984. doi: 10.5402/2011/128984. Print 2011.
The osmolarity and density of colloids used to prepare spermatozoa for assisted reproduction may affect sperm quality in the resultant preparation. In this study, two osmolarities of Androcoll-E for single-layer or density gradient centrifugation of stallion spermatozoa were compared: "normal" (320 mOsm) or "high" (345 mOsm). Mean yields for the two centrifugation techniques did not differ between treatments or osmolarities (single layer centrifugation: 30.19 ± 16.9 × 10(6) and 25.8 ± 18.5 × 10(6) spermatozoa; density gradient centrifugation: 31.84 ± 19.7 × 10(6) and 26.46 ± 20.0 × 10(6) spermatozoa respectively for the two osmolarities). However, use of the high osmolarity colloid for single layer centrifugation increased the proportion of morphologically normal spermatozoa (P < .05). Therefore, increasing the osmolarity of the colloid formulation may be beneficial for processing ejaculates containing a high proportion of abnormal spermatozoa by SLC. Reducing the density of the colloid used for the SLC substantially increased the yield of motile spermatozoa compared to the normal density colloid (mean ± SD: 72.6 ± 28.9 × 10(6) versus 28.9 ± 24.7 × 10(6)), while also prolonging sperm survival by 24 hours compared to the uncentrifuged ejaculate. This increased yield may render Single Layer Centrifugation practical for use in the field.
用于辅助生殖准备精子的胶体的渗透压和密度可能会影响最终制剂中的精子质量。在本研究中,比较了用于种马精子单层或密度梯度离心的两种渗透压的Androcoll-E:“正常”(320 mOsm)或“高”(345 mOsm)。两种离心技术的平均产量在处理或渗透压之间没有差异(单层离心:两种渗透压下分别为30.19±16.9×10⁶和25.8±18.5×10⁶个精子;密度梯度离心:分别为31.84±19.7×10⁶和26.46±20.0×10⁶个精子)。然而,使用高渗透压胶体进行单层离心增加了形态正常精子的比例(P <.05)。因此,提高胶体配方的渗透压可能有利于通过单层离心处理含有高比例异常精子的精液。与正常密度胶体相比,降低用于单层离心的胶体密度可显著提高活动精子的产量(平均值±标准差:72.6±28.9×10⁶对28.9±24.7×10⁶),同时与未离心的精液相比,还可使精子存活时间延长24小时。这种产量的增加可能使单层离心在现场使用成为现实。