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人工神经网络通过睾丸内源性大麻素基因表达谱预测精索静脉曲张对男性生育力的影响。

Artificial Neural Network to Predict Varicocele Impact on Male Fertility through Testicular Endocannabinoid Gene Expression Profiles.

机构信息

Faculty of Biosciences and Technology for Food, Agriculture and Environment, University of Teramo, 64100 Teramo, Italy.

Faculty of Veterinary Medicine, Agriculture and Environment, University of Teramo, 64100 Teramo, Italy.

出版信息

Biomed Res Int. 2018 Nov 13;2018:3591086. doi: 10.1155/2018/3591086. eCollection 2018.

Abstract

The relationship between varicocele and fertility has always been a matter of debate because of the absence of predictive clinical indicators or molecular markers able to define the severity of this disease. Even though accumulated evidence demonstrated that the endocannabinoid system (ECS) plays a central role in male reproductive biology, particularly in the testicular compartment, to date no data point to a role for ECS in the etiopathogenesis of varicocele. Therefore, the present research has been designed to investigate the relationship between testicular ECS gene expression and fertility, using a validated animal model of experimental varicocele (VAR), taking advantage of traditional statistical approaches and artificial neural network (ANN). Experimental induction of VAR led to a clear reduction of spermatogenesis in left testes ranging from a mild (Johnsen score 7: 21%) to a severe (Johnsen score 4: 58%) damage of the germinal epithelium. However, the mean number of new-borns recorded after two sequential matings was quite variable and independent of the Johnsen score. While the gene expression of biosynthetic and degrading enzymes of AEA (NAPE-PLD and FAAH, respectively) and of 2-AG (DAGL and MAGL, respectively), as well as their binding cannabinoid receptors (CB and CB), did not change between testes and among groups, a significant downregulation of vanilloid (TRPV1) expression was recorded in left testes of VAR rats and positively correlated with animal fertility. Interestingly, an ANN trained by inserting the left and right testicular ECS gene expression profiles (inputs) was able to predict varicocele impact on male fertility in terms of mean number of new-borns delivered (outputs), with a very high accuracy (average prediction error of 1%). The present study provides unprecedented information on testicular ECS gene expression patterns during varicocele, by developing a freely available predictive ANN model that may open new perspectives in the diagnosis of varicocele-associated infertility.

摘要

精索静脉曲张与生育力之间的关系一直存在争议,因为缺乏能够定义该疾病严重程度的预测性临床指标或分子标志物。尽管大量证据表明内源性大麻素系统 (ECS) 在男性生殖生物学中起着核心作用,尤其是在睾丸隔室中,但迄今为止,尚无数据表明 ECS 在精索静脉曲张的发病机制中起作用。因此,本研究旨在利用经过验证的精索静脉曲张实验动物模型(VAR),利用传统统计学方法和人工神经网络 (ANN),研究睾丸 ECS 基因表达与生育力之间的关系。实验性诱导的 VAR 导致左侧睾丸的生精明显减少,从轻度(Johnsen 评分 7:21%)到严重(Johnsen 评分 4:58%)的生殖上皮损伤。然而,两次连续交配后记录的新生儿平均数变化很大,与 Johnsen 评分无关。虽然 AEA(NAPE-PLD 和 FAAH,分别)和 2-AG(DAGL 和 MAGL,分别)的生物合成和降解酶以及它们的结合大麻素受体(CB 和 CB)的基因表达在睾丸之间和组间没有变化,但 TRPV1(TRPV1)在 VAR 大鼠左侧睾丸中的表达明显下调,并与动物生育力呈正相关。有趣的是,通过插入左侧和右侧睾丸 ECS 基因表达谱(输入)训练的 ANN 能够根据新生儿平均数(输出)预测精索静脉曲张对雄性生育力的影响,具有很高的准确性(平均预测误差为 1%)。本研究通过开发一种免费的预测性 ANN 模型,提供了精索静脉曲张期间睾丸 ECS 基因表达模式的前所未有的信息,该模型可能为精索静脉曲张相关不育症的诊断开辟新的视角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/90de/6258097/768db2094648/BMRI2018-3591086.001.jpg

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