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The effect of polymer dots on bioactivity of mouse sperm in vitro

机译:聚合物点对小鼠精子体外生物活性的影响

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Objective: In recent years, semiconducting polymer dots (Pdots)have caught considerable attention for their outstanding optical characteristics in biomedical imaging applications. Not as semiconductor quantum dots, Pdots are composed of nonmetallic material and their biological effects remain unclear. In this work, we investigated the effects of a band new polymer dots on bioactivity of mouse sperm using a computer-aided sperm analysis system(CASA) and an in vitro fertilization (IVF) model. Methods: The semiconducting polymer dots used in this study is CN-PPV Pdots, which emits in the orange wavelength range with high brightness. Epididymal mouse sperm were collected from 7-8weeks old Balb/c mouse. Firstly, CN-PPV Pdots was added into the Human Tubal Fluid (HTF) media at various concentrations (0, 1, 10, 100 nmol/L respectively), then sperm bioactivity and vitality were evaluated every 10 minutes. Secondly, the treated sperm were co-cultured with matured oocytes in HTF media, fertilization rate and oocytes development were recorded after 24 hours co-incubation. Results: Sperm viability in the control group (0 nmol/L) and experimental group (1, 10,100 nmol/L) were 57.20±4.51%, 58.17±4.81%, 55.50±4.52%, 46.26%±3.83%, respectively. Fertilization rate in different groups showed no obvious differences, control group (0 nmol/L) and experimental group (1, 10, 100 nmol/L) were 38.75±1.71%, 37.01±4.69%, 32.75±1.71%, 35.24±2.37%, respectively. Conclusion: Our data indicated that the CN-PPV Pdots had a very high biocompatibility on sperm in both the activation and the IVF process, even in extreme high Pdots concentration,the sperm bioactivity only got slight restrained. The effect of CN-PPV Pdots seems has no or little toxicity,and the long-term embryonic development has yet to be verified.
机译:目的:近年来,半导体聚合物点(Pdots)因其在生物医学成像应用中的出色光学特性而备受关注。 Pdot不是由半导体量子点构成,而是由非金属材料组成,其生物学效应仍不清楚。在这项工作中,我们使用计算机辅助精子分析系统(CASA)和体外受精(IVF)模型,研究了条带状新聚合物点对小鼠精子生物活性的影响。方法:本研究中使用的半导体聚合物点是CN-PPV Pdot,它在橙色波长范围内发出高亮度。从7-8周龄的Balb / c小鼠中收集附睾小鼠精子。首先,将CN-PPV Pdots以各种浓度(分别为0、1、10、100 nmol / L)添加到人输卵管液(HTF)介质中,然后每10分钟评估一次精子的生物活性和活力。其次,将处理过的精子与成熟的卵母细胞在HTF培养基中共培养,共同孵育24小时后,记录受精率和卵母细胞的发育。结果:对照组(0 nmol / L)和实验组(1、10,100 nmol / L)的精子生存力分别为57.20±4.51%,58.17±4.81%,55.50±4.52%,46.26%±3.83%。不同组的受精率无明显差异,对照组(0 nmol / L)和实验组(1、10、100 nmol / L)分别为38.75±1.71%,37.01±4.69%,32.75±1.71%,35.24±2.37 %, 分别。结论:我们的数据表明,CN-PPV Pdots在激活和IVF过程中对精子都具有很高的生物相容性,即使在极高的Pdots浓度下,精子的生物活性也仅受到轻微的抑制。 CN-PPV Pdots的作用似乎没有毒性或毒性很小,长期的胚胎发育尚待证实。

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