标题: 利用奈米技术改善人工受孕治疗---单一精子分离与高筛选率流道
Using Nano Techniques to Improve Assisted Productive Technology (APT) by Single/High Throughput Sperm-Sorting
作者: 徐琅
HSU LONG
国立交通大学电子物理学系(所)
关键字: 不孕症;人工受孕;精子;电脑精子分析系统;分离精子;微流道;精子泳动性;精子数量;精子型态;Sperm;CASA;Computer Assisted Sperm Analyzer;Motility;Motile;Microfluid;PDMS;Polydimethylsiloxane;IUI;Intrauterine insemination
公开日期: 2010
摘要: 人工受孕是不孕症患者的一大福音,如何筛选出最好的精子以供卵子受孕是重点之
一,而目前的人工受孕治療技术中,精子的筛选仍是问题之ㄧ。就现有的筛选方法而言,
对于人工受孕(IUI)來說筛选率过低,这会导致成功率的下降。而显微注射法(ICSI)中,
问题在于无法准确的挑出最好的精子。本计划之目的在于改善现有的人工受孕技术,目
标为利用全像光学镊夹(holographic optical tweezers, HOT)系统研发准确的单一精子分離
技术,改善ICSI 的精子筛选过程;利用三维的微流道筛选出所有具有泳动力之精子,
提高精子筛选率,使IUI 成功机率上升。最后,依据医院的需求做改善,以求应用之实
用性。各年目标略述如下:
第一年: 旨在研发准确的单一精子分離技术。此技术的重要性在于我们可以在
一群精子或是杂碎组织中,准确且快速的单独分離出一个目标精子,使用
HOT 系统并以目标精子为中心,清空其四周,并用微吸管吸出,达成准确
且单一分離之目的,此种用微吸管吸出的应用方式符合目前医院的操作过
程,希望可以改善目前TESE 与ICSI 所遇到的问题。
第二年: 目的在解决IUI 中精子數量不够导致成功率不高的问题,利用三维的
微流道设计以筛选出更多的具活动力之精子,提高筛选率,期待能达成高
筛选率之目标。
第三年: 承续前兩年,为了使我们开发的技术更贴合医院的应用,第三年计画
将针对这些计画做改良与近一步检验。
改良部分首先考虑医院的需求,HOT 的单一精子分離中,预计缩小
系统之体积,使用光纤传导雷射光减少光路的耦合,达到方便且可携之目
的。高筛选率三维流道的改良方向,则是取决于当下医院的看法。
检验部分,首先检验单一精子分離系统中雷射造成之光伤害,比较
1064nm 与980nm 光伤害的差異,找出最好的波长;此外我们将藉由改变
培养液之折射率,使其折射率高于精子,精子得以被推離光焦点,雷射光
穿过精子的比例变少以降低雷射镊夹之光伤害。
高筛选率的三维流道方面,我们将做更进一步的分析,方法可以有
泳动速度、活化比例、顶体反应比例、IVF 比例、精子表面的AFM 分析
等,利用这些參數检验精子的品质,期待得到此种方法筛选出的精子品质
皆佳的结果。
Assisted productive technology(APT) is a good news for the patients with vibriosis. There
is always a important issue for APT that how to sort a good sperm for an ovum and the sperm
sorting is still a problem for nowadays technology. For intrauterine insemination(IUI), the less
sperms after sorting, the less probably IUI would work. For intracytoplasmic sperm
injection(ICSI), it’s hard to get the best sperm by sorting. The purposes in this plan are to
improve the APT nowadays. We use the holographic optical tweezers(HOT) system to help
sort a single sperm accurately and fast. It’s a necessary technology for ICSI. We design a 3D
micro-channel to promote the sorting rate by select all the sperms with motive force. It can
raise the success probability of IUI. All our efforts target on the final application in hospital .
The goals of every year are described below:
1st year :
We will try to develop the single sperm sorting technology which can suck the specific
sperm by a micro-pipet in a crowd of tissue fragments accurately and fast. We use HOT
system to clean the surroundings so that a micro-pipet can suck the specific sperm without the
interference of tissue fragments. The sperm sucking by a micro-pipet is the same as the
applied way in the hospital. We hope that the technology can help improve the ICSI
technique.
2nd year :
We will try to design a 3D micro-channel to promote the sorting rate by select all the
sperms with motive force. It can solve the problem of low success probability of IUI which is
caused by the low sorting rate of sperms.
3rd year :
To push our development forward to real application, we will try to improvement the
design of the results in 1st and 2nd year. We will try everything as long as the hospital want to
suit our design to application. In our thinking now, we want to try to setup a portable HOT
system.
We will exam the photo damage made by HOT system, too. We want to use a laser
source with the wavelength of 980nm to compare with the wavelength of 1064nm. We also
want to change the value of the refraction index of surroundings(medium) so that the sperm
will be pulled away from the focus point of laser. The photo damage will be less because
there are less rays pass through the sperm.
For 3D micro-channel, we will analyze the sperms after sorting and exam the quality of
them. We hope the result will be fine so that our 3D micro-channel’s function is proved.
官方说明文件#: NSC99-2221-E009-007
URI: http://hdl.handle.net/11536/100623
https://www.grb.gov.tw/search/planDetail?id=2144830&docId=345085
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