摘要:前列腺癌是最常见的恶性肿瘤之一,并严重影响公共卫生。最近,当代微生物组研究发现,尿菌群至少在某种程度上可能影响前列腺癌的形成和治疗结果。全面的综述本文试图简要摘要和整合有关通过尿液微生物群,诊断能力以及治疗机会的当前参与前列腺癌发展的知识。审查着眼于与前列腺癌相关的微生物特征,并试图根据风险水平鉴定诊断疾病或患者分层的潜在生物标记物,以及预后的潜在预测指标。其次,尿液微生物群对治疗反应的潜在影响以及如何设计新型的治疗干预措施也构成了本研究的关键主题。在对现有文献和最新研究的全面回顾后,本文试图阐明尿液微生物群和前列腺癌之间复杂的相互关系。希望这项工作能够为未来的研究,临床应用,甚至是前列腺癌症护理中的精密中医学范式的可能性提供一些见解。
图1。Taxane mechanism of action ............................................................................ 2 Figure 2.Kaplan-Meier curve of the frequency of Grades 2-4 peripheral neuropathy separated by race ............................................................................................................. 5 Figure 3.曼哈顿的图3-4年级的tipn来自ECOG-5103中的AA患者................................................................................................................. 8图4。SBF2 expression across various tissues ........................................................... 10 Figure 5.Schematic of Schwann cells ........................................................................... 11 Figure 6.Simplified schematic representation of SBF2 protein and annotated functional domains ........................................................................................................ 13 Figure 7.Workflow of iPSC-dSN generation ................................................................ 20 Figure 8.Analysis pipeline of single-cell sequencing .................................................... 27 Figure 9.紫杉醇对IPSC-DSN生存能力和形态的影响........................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................... 34图10。Relative expression of SBF2 and cell viability .............................................. 38 Figure 11.Neurite outgrowth in iPSC-dSN ................................................................... 40 Figure 12.IPSC-DSN的电生理特性。 .............................................. 46 Figure 13. GMC203细胞系中线粒体含量的小提琴图.............................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................IPSC-DSN的电生理特性。.............................................. 46 Figure 13.GMC203细胞系中线粒体含量的小提琴图.............................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................Barcode rank plot ......................................................................................... 52 Figure 14.RSAA12细胞系中线粒体含量的小提琴图.................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................Violin plot of mitochondrial content in STAN601 cell line ........................... 57 Figure 17.线粒体含量的小提琴图06401单元线................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................. 58图18。每个测序样品的双重分布...................................................................................................................................................................................................................................................................................................................................................................IPSC-DSN的多维缩放(MDS)图............................................................................................................................................................................................................................................................................................................. 60图20。Single-cell RNA-sequencing of iPSC-dSN ................................................... 62 Figure 21.Distribution of differentially expressed mature sensory marker genes among cell type-specific clusters ................................................................................... 63 Figure 22.火山图强调了紫杉醇和IPSC-DSN的媒介物处理之间的显着基因表达变化。.............................................................. 66 Figure 23.Multidimensional scaling (MDS) plot of NTC and si SBF2 cells ................... 71 Figure 24.si SBF2 IPSC-DSN中的差异基因表达.......................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................
Elektrode 16旨在容纳3至8岁的骑手,并且具有高度可调的组件使其成为成长中的骑手的理想电动自行车。座椅中的可调节性超过4英寸,Elektrode 16可以舒适地适合37英寸至55英寸的儿童。用橡胶垫的折叠钢脚踏板在Elektrode 16上提供刚性和多功能性,从而使自行车轻松地转换为平衡自行车,并简单地折叠。孩子们可以学习使用Elektrode 16作为自行车的平衡自行车,而没有电动机摩擦/阻力,然后毕业于使用fotpegs和电动机/油门。车把设计促进了直立的骑行位置,而无需损害膝盖空间,随着孩子的成长提供额外的空间,并有了普通大小的车把和座椅,父母将有能力在他们认为合适的情况下更改和定制孩子的自行车。
*其他法案所需的许可证触发IAA OGD参与者| Illustrative – some components would not apply to same project YESAA – Yukon Environmental and Socio-Economic Assessment Act / MVRMA – Mackenzie Valley Resource Management Act / MBCA – Migratory Birds Convention Act / IBWTA – International Boundary Waters Treaty Act / CPRA – Canadian Petroleum Resource Act / Offshore Accords – Canada – NS and NFLD Offshore Accords / CEPA – Canadian Environmental Protection Act / Nuppaa - Nunavut计划和项目评估法(NUPPAA)< / div>
