Testis

睾丸
  • 文章类型: Journal Article
    全球育龄人口生育率呈下降趋势,人类面临生育问题的巨大挑战。因此,生育力保存技术应运而生。生育力保护包括干预措施和程序,目的是在患者的生育力可能因其医疗状况或治疗而受损时,保护其生育机会。例如,癌症的化疗和/或放疗。患者生育能力的变化可能是暂时或永久的损害。生育力保护可以帮助被诊断患有癌症或其他非恶性疾病的人。越来越多的生育力保存方法被用于保存癌症患者的生育力,保护其生殖器官免受性腺毒性。保留生育力可能适用于患有早期癌症和预后良好的年轻患者,然后再接受可能对其生育力产生负面影响的治疗(化学疗法和/或放射疗法)。它也适用于患有慢性病的患者或遇到影响其性腺功能的环境暴露的患者。生育力保存方法包括卵母细胞冷冻保存,胚胎冷冻保存,女性卵巢组织冷冻(OTC),男性精子冷冻和睾丸组织冷冻。由于癌症治疗的进展,被诊断患有恶性肿瘤的儿童和青少年的存活率一直在稳步增加。卵母细胞和精子的冷冻保存被认为是青春期患者生育能力保存的一种成熟且成功的策略。OTC是青春期前女孩的唯一选择。另一方面,未成熟睾丸组织的冷冻保存仍然是青春期前男孩的唯一选择,但是这项技术仍处于实验阶段。一项综述显示,冷冻保存精液的利用率为2.6%至21.5%。在冷冻保存的女性生殖材料的情况下,卵母细胞的利用率从3.1%到8.7%不等,胚胎大约从9%到22.4%,卵巢组织从6.9%到30.3%。当患者需要生育治疗时,冷冻保存的玻璃化卵母细胞复苏,并进行体外受精-胚胎移植(IVF-ET)以帮助患者实现其生殖目标,活产率(LBR)为32%。另一方面,当冷冻保存的胚胎复苏和转移时,LBR为41%。OTC具有恢复自然肥力的优势,LBR为33%,在266例IVF患者中,LBR为19%。此外,OTC具有恢复内分泌功能的益处。据观察,移植后第一次月经的最短恢复时间为3.9个月,卵巢功能恢复率达100%。迄今为止,越来越多的癌症幸存者和患有其他疾病的患者正在受益于保留生育能力的措施。面对人类生育率的下降,生育力保存为人类生殖提供了新的途径。生育保护应符合伦理原则,以充分保护患者及其后代的权益。
    There is a global trend of declining fertility among people of childbearing age and mankind is confronted with great challenges of fertility problems. As a result, fertility preservation technology has emerged. Fertility preservation involves interventions and procedures aimed at preserving the patients\' chances of having children when their fertility may have been impaired by their medical conditions or the treatments thereof, for example, chemotherapy and/or radiotherapy for cancer. The changes in patients\' fertility can be temporary or permanent damage. Fertility preservation can help people diagnosed with cancer or other non-malignant diseases. More and more fertility preservation methods are being used to preserve the fertility of cancer patients and protect their reproductive organs from gonadotoxicity. Fertility preservation may be appropriate for young patients with early-stage cancers and good prognosis before they undergo treatments (chemotherapy and/or radiotherapy) that can negatively affect their fertility. It is also appropriate for patients with chronic conditions or those who have encountered environmental exposures that affect their gonadal function. Fertility preservation methods include oocyte cryopreservation, embryo cryopreservation, and ovarian tissue cryopreservation (OTC) for women and sperm freezing and testicular tissue freezing for men. The survival rates of children and adolescents diagnosed with malignant tumors have been steadily increasing as a result of advances in cancer treatments. Cryopreservation of oocytes and sperm is recognized as a well-established and successful strategy for fertility preservation in pubertal patients. OTC is the sole option for prepubertal girls. On the other hand, cryopreservation of immature testicular tissue remains the only alternative for prepubertal boys, but the technology is still in the experimental stage. A review showed that the utilization rate of cryopreserved semen ranged from 2.6% to 21.5%. In the case of cryopreserved female reproductive materials, the utilization rate ranged from 3.1% to 8.7% for oocytes, approximately from 9% to 22.4% for embryos, and from 6.9% to 30.3% for ovarian tissue. When patients have needs for fertility treatment, cryopreserved vitrified oocytes are resuscitated and in vitro fertilization-embryo transfer (IVF-ET) was performed to help patients accomplish their reproductive objectives, with the live birth rate (LBR) being 32%. On the other hand, when cryopreserved embryos are resuscitated and transferred, the LBR was 41%. OTC has the advantage of restoring natural fertility and presents a LBR of 33%, compared with the LBR of 19% among 266 IVF patients. In addition, OTC has the benefit of restoring the endocrine function. It has been observed that the shortest recovery time of the first menstruation after transplantation was 3.9 months, and the recovery rate of ovarian function reached 100%. To date, a growing number of cancer survivors and patients with other diseases are benefiting from fertility preservation measures. In the face of declining human fertility, fertility preservation provides a new approach to human reproduction. Fertility preservation should be applied in line with the ethical principles so as to fully protect the rights and interests of patients and their offsprings.
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  • 文章类型: Journal Article
    全世界估计有10%到15%的夫妇受不孕症影响,大约一半的案件归因于男性相关问题。大多数被诊断患有不孕症的男性表现出诸如少精子症的症状,弱精子症,无精子症,精子质量受损。精子发生是生殖细胞分化的一个复杂而紧密协调的过程,精确调节转录,转录后,和翻译水平,以确保在生精细胞发育和正常生精过程中阶段特异性基因表达。N6-甲基腺苷(m6A)是真核mRNA上最普遍的修饰,在各种生物过程中发挥关键作用,包括mRNA剪接,交通运输,和翻译。RNA甲基化修饰是一个动态的可逆过程,主要由“作者”介导被“橡皮擦”删除,并被“读者”认可。在哺乳动物中,mRNA上m6A的异常甲基化修饰与多种疾病相关,包括男性不育.然而,m6A修饰在人类男性不育症发病机制中的确切参与仍未解决。有趣的是,已发现睾丸中m6A调节剂的表达水平与精子浓度的严重程度之间存在显着相关性,运动性,和形态学。在异常的人精液样本中检测到m6A调节蛋白的异常表达模式,包括少精子症,弱精子症,和无精子症.此外,对精子样本和睾丸组织的检查均显示m6AmRNA的异常修饰,导致不育男性精子活力和浓度降低。因此,据推测,m6A修饰的失调可能是男性不育机制中不可或缺的环节。本文对睾丸组织中m6A调节子的时空表达动力学以及m6A调节子与人类男性不育之间的相关性的最新发现进行了全面回顾。以前的研究主要使用组成型或条件敲除动物模型进行睾丸表型研究。然而,其他组织中的基因抑制可能会影响组成型敲除模型中的睾丸。此外,考虑到在组成型动物中观察到的精子发生受损,区分基因耗竭对睾丸发育的间接影响及其对生精过程的直接影响具有挑战性,由于他们错综复杂的关系。这些混杂因素可能会损害研究结果的有效性。为了应对这一挑战,诱导型和条件性基因敲除模型可能是一种更好的方法。迄今为止,几乎所有报道的研究都只集中在生殖细胞中m6A及其调节剂的水平变化上,而对m6A修饰在睾丸体细胞中的功能的理解仍然有限。睾丸体细胞,包括肾小管周围的肌样细胞,支持细胞,和Leydig细胞,在精子发生过程中起着不可或缺的作用。因此,有必要全面探索这些细胞内的m6A修饰作为额外的关键调节机制。此外,探索睾丸内独特的甲基化机制或m6A调节因子的存在是必要的.为了阐明m6A修饰在生殖细胞和睾丸体细胞中的作用,需要实施详细的实验策略。其中,操纵参与m6A甲基化和去甲基化的关键酶的水平可能是最有效的方法。此外,综合分析涉及各种信号通路的基因表达谱,如Wnt/β-catenin,Ras/MAPK,和河马,在m6A修饰的生殖细胞和睾丸体细胞中可以更深入地了解其在精子发生过程中的调节作用。该领域的进一步研究可以为制定治疗男性不育的创新策略提供有价值的见解。最后,考虑到M6A失衡调节对疾病的缓解影响,关于恢复m6A修饰调节的平衡是否可以恢复正常的精子发生功能的研究至关重要,可能阐明m6A调制在男性不育中的关键临床意义。
    Infertility affects an estimated 10 to 15 percent of couples worldwide, with approximately half of the cases attributed to male-related issues. Most men diagnosed with infertility exhibit symptoms such as oligospermia, asthenospermia, azoospermia, and compromised sperm quality. Spermatogenesis is a complex and tightly coordinated process of germ cell differentiation, precisely regulated at transcriptional, posttranscriptional, and translational levels to ensure stage-specific gene expression during the development of spermatogenic cells and normal spermiogenesis. N6-methyladenosine (m6A) stands out as the most prevalent modification on eukaryotic mRNA, playing pivotal roles in various biological processes, including mRNA splicing, transportation, and translation. RNA methylation modification is a dynamic and reversible process primarily mediated by \"writers\", removed by \"erasers\", and recognized by \"readers\". In mammals, the aberrant methylation modification of m6A on mRNA is associated with a variety of diseases, including male infertility. However, the precise involvement of disrupted m6A modification in the pathogenesis of human male infertility remains unresolved. Intriguingly, a significant correlation has been found between the expression levels of m6A regulators in the testis and the severity of sperm concentration, motility, and morphology. Aberrant expression patterns of m6A regulatory proteins have been detected in anomalous human semen samples, including those of oligospermia, asthenozoospermia, and azoospermia. Furthermore, the examination of both sperm samples and testicular tissues revealed abnormal mRNA m6A modification, leading to reduced sperm motility and concentration in infertile men. Consequently, it is hypothesized that dysregulation of m6A modification might serve as an integral link in the mechanism of male infertility. This paper presents a comprehensive review of the recent discoveries regarding the spatial and temporal expression dynamics of m6A regulators in testicular tissues and the correlation between deregulated m6A regulators and human male infertility. Previous studies predominantly utilized constitutive or conditional knockout animal models for testicular phenotypic investigations. However, gene suppression in additional tissues could potentially influence the testis in constitutive knockout models. Furthermore, considering the compromised spermatogenesis observed in constitutive animals, distinguishing between the indirect effects of gene depletion on testicular development and its direct impact on the spermatogenic process is challenging, due to their intricate relationship. Such confounding factors might compromise the validity of the findings. To address this challenge, an inducible and conditional gene knockout model may serve as a superior approach. To date, nearly all reported studies have concentrated solely on the level changes of m6A and its regulators in germs cells, while the understanding of the function of m6A modification in testicular somatic cells remains limited. Testicular somatic cells, including peritubular myoid cells, Sertoli cells, and Leydig cells, play indispensable roles during spermatogenesis. Hence, comprehensive exploration of m6A modification within these cells as an additional crucial regulatory mechanism is warranted. In addition, exploration into the presence of unique methylation mechanisms or m6A regulatory factors within the testes is warranted. To elucidate the role of m6A modification in germ cells and testicular somatic cells, detailed experimental strategies need to be implemented. Among them, manipulation of the levels of key enzymes involved in m6A methylation and demethylation might be the most effective approach. Moreover, comprehensive analysis of the gene expression profiles involved in various signaling pathways, such as Wnt/β-catenin, Ras/MAPK, and Hippo, in m6A-modified germ cells and testicular somatic cells can provide more insight into its regulatory role in the spermatogenesis process. Further research in this area could provide valuable insights for developing innovative strategies to treat male infertility. Finally, considering the mitigation impact of m6A imbalance regulation on disease, investigation concerning whether restoring the equilibrium of m6A modification regulation can restore normal spermatogenesis function is essential, potentially elucidating the pivotal clinical significance of m6A modulation in male infertility.
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  • 文章类型: Journal Article
    Notch是一个保守的细胞信号通路,参与精子发生调控。这项研究首先评估了存在,本地化模式,公牛精子Notch蛋白的获取起源及其与顶体反应的关系。蛋白质印迹分析检测到射精公牛精子中的所有Notch蛋白,免疫染色描述了它们的特定精子定位。从不同节段的精子回收表明,Notch蛋白具有睾丸起源(NOTCH1,NOTCH2,DLL4),在精子成熟过程中沿着附睾转运(NOTCH3,DLL3,JAGGED1-2)顺序获得,或射精后(DLL1,NOTCH4)。睾丸NOTCH2在所有生殖细胞系中普遍表达,而DLL4在高尔基体期间在圆形和细长的精子细胞中表达,Cap,顶体期和成熟期。体外自发和诱导的精子顶体反应诱导了NOTCH2,DLL4和JAGGED1的一致精子区域重新定位,并且这些重新定位模式与精子顶体状态显着相关。NOTCH2和JAGGED1从头部顶端迁移到赤道后区域,而DLL4与顶体一起丢失,证明NOTCH2和JAGGED1的精子空间再分布与顶体反应的发生有关,而DLL4丢失与AR完成有关。总的来说,结果提示在公牛精子顶体睾丸发育中具有相关的Notch作用,附睾成熟和顶体反应。
    Notch is a conserved cell-signaling pathway involved in spermatogenesis regulation. This study firstly evaluated the presence, localization patterns, acquisition origin and relation to acrosome reaction of Notch proteins in bull sperm. Western Blot analysis detected all Notch proteins in ejaculated bull sperm, and immunostaining described their specific sperm localization. Recovery of sperm from different segments showed that Notch proteins have testicular origin (NOTCH1, NOTCH2, DLL4), are sequentially acquired during sperm maturation along epididymal transit (NOTCH3, DLL3, JAGGED1-2), or post-ejaculation (DLL1, NOTCH4). Testis NOTCH2 is ubiquitously expressed in all germ-cell lines, whereas DLL4 is expressed in round and elongated spermatids during the Golgi, Cap, Acrosome and Maturation phases. In vitro spontaneous and induced sperm acrosome reaction induce consistent sperm regional relocation of NOTCH2, DLL4 and JAGGED1, and these relocation patterns are significantly associated to sperm acrosome status. NOTCH2 and JAGGED1 are relocated from the head apical to the post-equatorial regions, whereas DLL4 is lost along with the acrosome, evidencing that sperm spatial redistribution of NOTCH2 and JAGGED1 is linked to acrosome reaction onset, whereas DLL4 loss is linked to AR completion. Overall, results prompt for a relevant Notch role in bull sperm acrosome testicular development, epididymal maturation and acrosome reaction.
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  • 文章类型: Journal Article
    雄激素的产生主要发生在位于睾丸间质室的Leydig细胞中。在老年男性中,睾丸激素对维持肌肉质量和力量至关重要,骨密度,性功能,代谢健康,能级,认知功能,以及整体福祉。随着男人年龄的增长,睾丸的Leydig细胞产生的睾丸激素从30多岁开始以每年约1%的速度开始下降。这篇综述强调了有关使用天然多酚化合物的最新发现,如类黄酮,白藜芦醇,和酚酸,为了增加睾酮的产生,从而预防与睾酮不足相关的年龄相关的退行性疾病。有趣的是,大多数对睾丸激素产生有益作用的天然多酚抗氧化剂倾向于增强睾丸间质细胞中类固醇生成急性调节蛋白(Star)基因的表达。STAR蛋白促进类固醇前体胆固醇进入线粒体,雄激素生物合成的限速步骤。天然多酚化合物还可以提高类固醇生成酶的活性,下丘脑-垂体轴信号,和睾酮的生物利用度。因此,许多多酚化合物,如木犀草素,槲皮素,白藜芦醇,阿魏酸苯乙酯或gigantol可能有望延缓男性衰老引起的迟发性性腺机能减退。
    Androgen production primarily occurs in Leydig cells located in the interstitial compartment of the testis. In aging males, testosterone is crucial for maintaining muscle mass and strength, bone density, sexual function, metabolic health, energy levels, cognitive function, as well as overall well-being. As men age, testosterone production by Leydig cells of the testes begins to decline at a rate of approximately 1% per year starting from their 30s. This review highlights recent findings concerning the use of natural polyphenolics compounds, such as flavonoids, resveratrol, and phenolic acids, to enhance testosterone production, thereby preventing age-related degenerative conditions associated with testosterone insufficiency. Interestingly, most of the natural polyphenolic antioxidants having beneficial effects on testosterone production tend to enhance the expression of the steroidogenic acute regulatory protein (Star) gene in Leydig cells. The STAR protein facilitates the entry of the steroid precursor cholesterol inside mitochondria, a rate-limiting step for androgen biosynthesis. Natural polyphenolic compounds can also improve the activities of steroidogenic enzymes, hypothalamus-pituitary gland axis signaling, and testosterone bioavailability. Thus, many polyphenolic compounds such as luteolin, quercetin, resveratrol, ferulic acid phenethyl ester or gigantol may be promising in delaying the initiation of late-onset hypogonadism accompanying aging in males.
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  • 文章类型: Journal Article
    睾丸发育和精子发生受到编码和非编码基因的严格调控,mRNA和lncRNA在转录后基因表达调控中起着至关重要的作用。然而,性成熟前后的调节机制存在显著差异。然而,蒙古马睾丸中的mRNAs和lncRNAs尚未被系统鉴定。在这项研究中,我们首先在组织和蛋白质水平上鉴定了性不成熟和性成熟的蒙古马的睾丸组织,并综合分析了1岁(12个月,n=3)和使用RNA测序技术的10岁(n=3)蒙古马。通过基因表达分析,我们鉴定了16,582个mRNAs和2128个未知的lncRNAs,它们通常在性未成熟和性成熟的蒙古马中表达。同时,9217个mRNAs(p<0.05)和2191个未知的lncRNAs(p<0.05)被鉴定为在两个阶段之间差异表达,通过实时荧光定量PCR进一步验证,并使用基因本体论(GO)和京都基因和基因组百科全书(KEGG)进行分析。分析结果表明,性未成熟阶段的基因主要富集在与细胞基础设施相关的方面,虽然性成熟阶段的基因在与激素相关的方面得到了丰富,新陈代谢,和精子发生。总之,这项研究的发现为更深入地了解蒙古马睾丸发育和精子发生的分子机制提供了宝贵的资源,并为未来的相关研究提供了新的视角。
    Testicular development and spermatogenesis are tightly regulated by both coding and non-coding genes, with mRNA and lncRNA playing crucial roles in post-transcriptional gene expression regulation. However, there are significant differences in regulatory mechanisms before and after sexual maturity. Nevertheless, the mRNAs and lncRNAs in the testes of Mongolian horses have not been systematically identified. In this study, we first identified the testicular tissues of sexually immature and sexually mature Mongolian horses at the tissue and protein levels, and comprehensively analyzed the expression profiles of mRNA and lncRNA in the testes of 1-year-old (12 months, n = 3) and 10-year-old (n = 3) Mongolian horses using RNA sequencing technology. Through gene expression analysis, we identified 16,582 mRNAs and 2128 unknown lncRNAs that are commonly expressed in both sexually immature and sexually mature Mongolian horses. Meanwhile, 9217 mRNAs (p < 0.05) and 2191 unknown lncRNAs (p < 0.05) were identified as differentially expressed between the two stages, which were further validated by real-time fluorescent quantitative PCR and analyzed using Gene Ontology (GO) and the Kyoto Encyclopedia of Genes and Genomes (KEGG). The analysis results showed that genes in the sexually immature stage were mainly enriched in terms related to cellular infrastructure, while genes in the sexually mature stage were enriched in terms associated with hormones, metabolism, and spermatogenesis. In summary, the findings of this study provide valuable resources for a deeper understanding of the molecular mechanisms underlying testicular development and spermatogenesis in Mongolian horses and offer new perspectives for future related research.
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  • 文章类型: Journal Article
    神经肽加压素以其调节哺乳动物的渗透平衡而闻名。精氨酸血管生成素(AVT)是存在于鱼中的这种神经肽的非哺乳动物同系物。有限的信息表明,加压素及其同源物也可能影响生殖功能。在本研究中,我们研究了AVT对精子发生的直接影响,使用斑马鱼作为模型生物。结果表明,AVT及其受体(avpr1aa,avpr2aa,avpr1ab,avpr2ab,和avpr2l)在斑马鱼的大脑和睾丸中表达。使用成熟斑马鱼睾丸的离体培养7天,研究了AVT对精子发生的直接作用。使用组织学,形态计量学,和生化方法,我们观察到AVT对斑马鱼睾丸功能的直接作用。AVT治疗以雄激素依赖性方式直接增加精子数量,同时减少有丝分裂细胞和B型精原细胞的增殖活性。观察到的AVT对精子生成的刺激作用被氟他胺阻断,雄激素受体拮抗剂.本结果支持AVT刺激短期雄激素依赖性精子发生的新假设。然而,它的长期存在可能通过减少精原细胞B的增殖而导致精子发生减少,导致精原细胞的营业额减少,精子细胞,和精子.总体发现提供了对脊椎动物中加压素及其同源物作为男性生殖多因素调节因素的生理意义的见解。
    The neuropeptide vasopressin is known for its regulation of osmotic balance in mammals. Arginine vasotocin (AVT) is a non-mammalian homolog of this neuropeptide that is present in fish. Limited information suggested that vasopressin and its homologs may also influence reproductive function. In the present study, we investigated the direct effect of AVT on spermatogenesis, using zebrafish as a model organism. Results demonstrate that AVT and its receptors (avpr1aa, avpr2aa, avpr1ab, avpr2ab, and avpr2l) are expressed in the zebrafish brain and testes. The direct action of AVT on spermatogenesis was investigated using an ex vivo culture of mature zebrafish testes for 7 days. Using histological, morphometric, and biochemical approaches, we observed direct actions of AVT on zebrafish testicular function. AVT treatment directly increased the number of spermatozoa in an androgen-dependent manner, while reducing mitotic cells and the proliferation activity of type B spermatogonia. The observed stimulatory action of AVT on spermiogenesis was blocked by flutamide, an androgen receptor antagonist. The present results support the novel hypothesis that AVT stimulates short-term androgen-dependent spermiogenesis. However, its prolonged presence may lead to diminished spermatogenesis by reducing the proliferation of spermatogonia B, resulting in a diminished turnover of spermatogonia, spermatids, and spermatozoa. The overall findings offer an insight into the physiological significance of vasopressin and its homologs in vertebrates as a contributing factor in the multifactorial regulation of male reproduction.
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  • 文章类型: Journal Article
    蛋白酶体26S亚基,非ATP酶9(psmd9)在精子发生过程中对鱼精蛋白的平衡和核仁结构的稳定性起着重要作用。在这项研究中,我们克隆了半舌兰的psmd9,并分析了其表达模式。PSMD9在C.semilaevis的Z染色体上鉴定,它被认为是精子发生的一个有趣的候选基因。qRT-PCR和FISH实验表明psmd9基因在睾丸中显著高表达。值得注意的是,男性鱼睾丸中psmd9的表达水平明显高于假性鱼。为了进一步探讨psmd9在精子发生中的作用,雄性睾丸细胞系被用作实验材料。psmd9-RNAi和过表达实验结果表明,psmd9与精子发生相关基因dnd1、cfap69、dnah3和dnajb13有协同作用,但对ccne2有拮抗作用。我们的发现为理解psmd9在半毛精子发生调控网络中的作用提供了科学依据。
    Proteasome 26S Subunit, Non-ATPase 9 (psmd9) plays an important role in the balance of protamine and the stability of the nucleolar structure during spermatogenesis. In this study, we cloned the psmd9 of Cynoglossus semilaevis and analyzed its expression pattern. psmd9 was identified on the Z chromosome of C. semilaevis, which is considered an interesting candidate gene for spermatogenesis. qRT-PCR and FISH experiments showed that the psmd9 gene was significantly highly expressed in the testes. It is worth noting that the expression level of psmd9 in male fish testes is significantly higher than that in pseudomales. In order to further explore the role of psmd9 in spermatogenesis, a male testicular cell line was used as the experimental material. The results of the psmd9-RNAi and overexpression experiments showed that psmd9 had a synergistic effect with spermatogenesis-related genes dnd1, cfap69, dnah3 and dnajb13, but had an antagonistic effect with ccne2. Our findings offer a scientific foundation for comprehending the role of psmd9 in the spermatogenesis regulatory network of C. semilaevis.
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  • 文章类型: Journal Article
    白消安,癌症治疗中不可或缺的药物,会对男性造成严重的生殖系统损害,作为其其他出色治疗效果的副作用。它的广泛使用也导致了它在环境中的积累和随后的生态毒理学影响。作为中药,乌灵芝(WLZ)具有促进血液循环和改善女性生殖功能的作用。然而,WLZ在男性生殖和抵消白消安诱导的睾丸损伤中的潜在作用,以及其可能的机制,仍然模棱两可。在这项研究中,将白消安引入小鼠模型中以评估其睾丸损伤的产生。使用非靶向代谢组比较不同WLZ提取物的成分,以选择具有更大功效的提取物,在体内进一步证实。这里,我们证明白消安损伤睾丸的精子发生异常和精子质量低。WLZ提取物显示出恢复男性生殖系统的强大潜力;这种作用在室温提取物中更为突出。此外,室温下的水和乙醇WLZ提取物均减轻了白消安引起的各种不良反应。特别是,WLZ恢复精子发生,重新激活精氨酸生物合成,减轻了睾丸中氧化应激和炎症的增加,最终逆转白消安引起的睾丸损伤。总的来说,这些结果表明了一种有希望的方法来保护男性生殖系统免受白消安引起的不良副作用,以及其他类似的抗癌药物。
    Busulfan, an indispensable medicine in cancer treatment, can cause serious reproductive system damage to males as a side effect of its otherwise excellent therapeutic results. Its widespread use has also caused its accumulation in the environment and subsequent ecotoxicology effects. As a Chinese medicine, Wulingzhi (WLZ) has the effects of promoting blood circulation and improving female reproductive function. However, the potential effects of WLZ in male reproduction and in counteracting busulfan-induced testis damage, as well as its probable mechanisms, are still ambiguous. In this study, busulfan was introduced in a mouse model to evaluate its production of the testicular damage. The components of different WLZ extracts were compared using an untargeted metabolome to select extracts with greater efficacy, which were further confirmed in vivo. Here, we demonstrate abnormal spermatogenesis and low sperm quality in busulfan-injured testes. The WLZ extracts showed a strong potential to rehabilitate the male reproductive system; this effect was more prominent in room-temperature extracts. Additionally, both water and ethanol WLZ extracts at room temperature alleviated various busulfan-induced adverse effects. In particular, WLZ recovered spermatogenesis, re-activated arginine biosynthesis, and alleviated the increased oxidative stress and inflammation in the testis, ultimately reversing the busulfan-induced testicular injury. Collectively, these results suggest a promising approach to protecting the male reproductive system from busulfan-induced adverse side effects, as well as those of other similar anti-cancer drugs.
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  • 文章类型: Journal Article
    东亚普通章鱼(章鱼sinensis)是头足类动物中重要的经济物种。该物种表现出严格的雌雄异株和同卵生殖策略,伴随着表型性二态,雄性的第三只右臂分化为hectocotylus。然而,我们对该物种性别决定和分化的分子机制的理解仍然有限。在本研究中,我们调查了未成熟的男性和女性性腺的基因表达谱。基于RNA-seq,共产生47.83GB的高质量数据。与睾丸相比,我们在卵巢中鉴定出8302个差异表达基因(DEGs),其中4459个基因上调,3843个基因下调。基于GO富集,确定了许多与性别分化相关的GO术语,如性别分化(GO:0007548),有性生殖(GO:0019953)和男性性别分化(GO:0046661)。KEGG分类分析确定了与性别分化相关的三个保守的信号通路,包括Wnt信号通路,TGF-β信号通路和Notch信号通路。此外,选择了21个性别相关的DEGs,其中13个DEG是男性偏见,包括Dmrt1、Foxn5、Foxj1、Sox30等。,8个DEG有女性偏见,包括Sox14,Nanos3,β-微管蛋白,Suh,等。用10个DEGs用RT-qPCR方法验证其在睾丸和卵巢中的表达模式,结果表明,RT-qPCR显示的表达水平与RNA-seq的表达水平一致,这证实了转录组数据的可靠性。本研究的结果不仅有助于我们了解中华大黄的性别形成机制,而且为进一步研究强调其性腺发育的分子机制和促进章鱼人工繁殖的可持续发展提供了基础信息。
    The East Asian common octopus (Octopus sinensis) is an economically important species among cephalopods. This species exhibits a strict dioecious and allogamous reproductive strategy, along with a phenotypic sexual dimorphism, where the third right arm differentiates into hectocotylus in males. However, our understanding of the molecular mechanisms that underlie sex determination and differentiation in this species remains limited. In the present study, we surveyed gene-expression profiles in the immature male and female gonads of O. sinensis based on the RNA-seq, and a total of 47.83 Gb of high-quality data were generated. Compared with the testis, we identified 8302 differentially expressed genes (DEGs) in the ovary, of which 4459 genes were up-regulated and 3843 genes were down-regulated. Based on the GO enrichment, many GO terms related to sex differentiation were identified, such as sex differentiation (GO: 0007548), sexual reproduction (GO: 0019953) and male sex differentiation (GO: 0046661). A KEGG classification analysis identified three conserved signaling pathways that related to sex differentiation, including the Wnt signaling pathway, TGF-β signaling pathway and Notch signaling pathway. Additionally, 21 sex-related DEGs were selected, of which 13 DEGs were male-biased, including Dmrt1, Foxn5, Foxj1, Sox30, etc., and 8 DEGs were female-biased, including Sox14, Nanos3, β-tubulin, Suh, etc. Ten DEGs were used to verify the expression patterns in the testis and ovary using the RT-qPCR method, and the results showed that the expression level shown by RT-qPCR was consistent with that from the RNA-seq, which confirmed the reliability of the transcriptome data. The results presented in this study will not only contribute to our understanding of sex-formation mechanisms in O. sinensis but also provide the foundational information for further investigating the molecular mechanisms that underline its gonadal development and facilitate the sustainable development of octopus artificial breeding.
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  • 文章类型: Journal Article
    糖原合成酶激酶3β(GSK3β)不仅在调节精子成熟中起着至关重要的作用,而且在协调顶体反应中也至关重要。这里,我们整合了单分子长读数和短读数测序,以全面检查成年滇南小耳猪(DSE)睾丸中GSK3β的表达模式。我们鉴定了GSK3β的最重要的转录本ENSSSCT00000039364,获得其全长编码序列(CDS)跨越1263bp。基因结构分析将GSK3β定位在具有12个外显子的猪13号染色体上。蛋白质结构分析反映了GSK3β由含有PKc样保守结构域的420个氨基酸组成。系统发育分析强调了GSK3β在不同哺乳动物物种中的进化保守性和同源性。蛋白质相互作用网络的评估,KEGG,和GO通路暗示GSK3β与50种蛋白质相互作用,主要参与Wnt信号通路,乳头瘤病毒感染,河马信号通路,肝细胞癌,胃癌,结直肠癌,乳腺癌,子宫内膜癌,基底细胞癌,和老年痴呆症。功能注释确定GSK3β参与了13个GO,包括六个分子功能和七个生物过程。ceRNA网络分析提示DSEGSK3β受11个miRNA靶标调控。此外,跨15个组织的qPCR表达分析强调GSK3β在睾丸中高度表达。亚细胞定位分析表明,GSK3β蛋白大部分位于ST(猪睾丸)细胞的细胞质中,在细胞核中检测到少量。总的来说,我们的发现为GSK3β在DSE繁殖中的作用提供了新的思路,为进一步研究GSK3β功能奠定基础。
    Glycogen synthase kinase-3β (GSK3β) not only plays a crucial role in regulating sperm maturation but also is pivotal in orchestrating the acrosome reaction. Here, we integrated single-molecule long-read and short-read sequencing to comprehensively examine GSK3β expression patterns in adult Diannan small-ear pig (DSE) testes. We identified the most important transcript ENSSSCT00000039364 of GSK3β, obtaining its full-length coding sequence (CDS) spanning 1263 bp. Gene structure analysis located GSK3β on pig chromosome 13 with 12 exons. Protein structure analysis reflected that GSK3β consisted of 420 amino acids containing PKc-like conserved domains. Phylogenetic analysis underscored the evolutionary conservation and homology of GSK3β across different mammalian species. The evaluation of the protein interaction network, KEGG, and GO pathways implied that GSK3β interacted with 50 proteins, predominantly involved in the Wnt signaling pathway, papillomavirus infection, hippo signaling pathway, hepatocellular carcinoma, gastric cancer, colorectal cancer, breast cancer, endometrial cancer, basal cell carcinoma, and Alzheimer\'s disease. Functional annotation identified that GSK3β was involved in thirteen GOs, including six molecular functions and seven biological processes. ceRNA network analysis suggested that DSE GSK3β was regulated by 11 miRNA targets. Furthermore, qPCR expression analysis across 15 tissues highlighted that GSK3β was highly expressed in the testis. Subcellular localization analysis indicated that the majority of the GSK3β protein was located in the cytoplasm of ST (swine testis) cells, with a small amount detected in the nucleus. Overall, our findings shed new light on GSK3β\'s role in DSE reproduction, providing a foundation for further functional studies of GSK3β function.
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