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991.
992.
Jing Chen Jialin Meng Yi Liu Zichen Bian Qingsong Niu Junyi Chen Jun Zhou Li Zhang Meng Zhang Chaozhao Liang 《Journal of cellular and molecular medicine》2022,26(21):5379
To identify prostate cancer (PCa) patients with a high risk of recurrence is critical before delivering adjuvant treatment. We developed a classifier based on the Enzalutamide treatment resistance‐related genes to assist the currently available staging system in predicting the recurrence‐free survival (RFS) prognosis of PCa patients. We overlapped the DEGs from two datasets to obtain a more convincing Enzalutamide‐resistance‐related‐gene (ERRG) cluster. The five‐ERRG‐based classifier obtained good predictive values in both the training and validation cohorts. The classifier precisely predicted RFS of patients in four cohorts, independent of patient age, pathological tumour stage, Gleason score and PSA levels. The classifier and the clinicopathological factors were combined to construct a nomogram, which had an increased predictive accuracy than that of each variable alone. Besides, we also compared the differences between high‐ and low‐risk subgroups and found their differences were enriched in cancer progression‐related pathways. The five‐ERRG‐based classifier is a practical and reliable predictor, which adds value to the existing staging system for predicting the RFS prognosis of PCa after radical prostatectomy, enabling physicians to make more informed treatment decisions concerning adjuvant therapy. 相似文献
993.
ZhiHang Huang Hai Wang DongMei Wang XiuYun Zhao WenWen Liu Xin Zhong DongMei He BenRong Mu MeiHong Lu 《Journal of cellular and molecular medicine》2022,26(23):5779
Alzheimer''s disease (AD) is a neurodegenerative disorder with cognitive impairment and abnormal mental behaviour. There is currently no effective cure. The development of early diagnostic markers and the mining of potential therapeutic targets are one of the important strategies. This study aimed to explore potential biomarkers or therapeutic targets related to AD in the hippocampus and prefrontal cortex, two brain regions highly related to AD. Differentially expressed genes and miRNAs between AD patients and healthy controls were obtained from the Gene Expression Omnibus database. The mRNA‐miRNA network was constructed and key genes involved in AD were screened out by protein–protein interaction analysis, and were subsequently verified by independent datasets and qPCR in an AD mouse model. Our findings showed that six hub genes including CALN1, TRPM7, ATR, SOCS3, MOB3A and OGDH were believed to be involved in the pathogenesis of AD. Western blot analysis further determined that CALN1, ATR and OGDH were the possible biomarkers and therapeutic targets for AD. In addition, 6 possible miRNAs biomarkers have also been verified by qPCR on AD animal models. Our findings may benefit clinical diagnosis and early prevention of AD. 相似文献
994.
Sebastien Sart Chang Liu Eric Z. Zeng Chunhui Xu Yan Li 《Engineering in Life Science》2022,22(11):667
With the advancement in lineage‐specific differentiation from human pluripotent stem cells (hPSCs), downstream cell separation has now become a critical step to produce hPSC‐derived products. Since differentiation procedures usually result in a heterogeneous cell population, cell separation needs to be performed either to enrich the desired cell population or remove the undesired cell population. This article summarizes recent advances in separation processes for hPSC‐derived cells, including the standard separation technologies, such as magnetic‐activated cell sorting, as well as the novel separation strategies, such as those based on adhesion strength and metabolic flux. Specifically, the downstream bioprocessing flow and the identification of surface markers for various cell lineages are discussed. While challenges remain for large‐scale downstream bioprocessing of hPSC‐derived cells, the rational quality‐by‐design approach should be implemented to enhance the understanding of the relationship between process and the product and to ensure the safety of the produced cells. 相似文献
995.
Due to the overexploitation of farming, as well as habitat destruction, the wild population of Chinese giant salamander (CGS) Andrias davidianus, a species with seven genetically distinct lineages, has decreased by over 80% in the past 70 years. Traditional survey methods have proven to be unsuitable for finding this rare and elusive species. We evaluated the efficacy of environmental DNA (eDNA) sampling to detect CGS indirectly from its aquatic environment. We developed several species-specific primer sets; validated their specificity and sensitivity; and assessed their utility in silico, in the laboratory, and at two field sites harboring released farm-bred CGS. We detected the presence of CGS DNA by using polymerase chain reaction and Sanger sequencing. We also sequenced an amplicon mixture of seven haplotype-represented samples using high-throughput sequencing. Our eDNA methods could detect the presence of CGS at moderate densities reported across its range, proving them as a cost-effective way to establish broad-scale patterns of occupancy for CGS. In addition, our primers enabled the detection of mitochondrial lineage mixture or introduced individuals from geographically isolated populations of CGS. 相似文献
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当前新型冠状病毒肆虐,全球确诊患者超过3 500万例,累计死亡患者超过50万例,对于突发疫情,临床尚缺乏有效特异性治疗,新型冠状病毒已成为危害人类健康、社会发展的主要公共卫生问题。间充质干细胞具有抗炎和免疫调节功能,可降低重症患者体内由冠状病毒引发的细胞因子风暴,改善患者肺部纤维化,促进损伤肺组织修复,有望降低新冠肺炎的死亡率。目前已开展多项间充质干细胞治疗新型冠状病毒肺炎临床试验,初步证实了间充质干细胞应用在新冠肺炎方面的安全及有效性。在间充质干细胞治疗新冠肺炎取得进展的同期,还应看到该疗法独有特点及疫情严峻形势对临床试验开和及评价带来的问题与挑战,包括临床试验方案设计、干细胞质量管理以及治疗中的伦理考量。只有对其加以重视,才能保证在严峻疫情下安全有效地开展间充质干细胞治疗新型冠状病毒肺炎的临床试验。 相似文献
999.
文中旨在研究粒细胞集落刺激因子(Granule cell stimulating factor,GCSF)对绵羊颗粒细胞体外培养过程中细胞增殖和凋亡的影响,明确GCSF对绵羊颗粒细胞生存的调节作用,为今后该蛋白用于羊繁育方面的研究奠定基础。原核克隆表达纯化羊GCSF蛋白,纯化的蛋白用M-NSF60细胞检测生物学活性,将纯化的GCSF添加到颗粒细胞培养基中作为试验组,以培养基中未添加GCSF的细胞为对照,利用Alarmarblue检测细胞增殖情况,流式细胞仪检测细胞周期和凋亡的变化。结果表明,羊GCSF可以原核表达并纯化,并且具有生物学活性。在24 h和48 h时,在0.06–600 ng/mL的范围内随着加入GCSF的终浓度增加,细胞活力升高。试验组颗粒细胞体外培养24 h后,与阴性对照相比,细胞周期的分布显著改变,S期细胞比例显著减少(P<0.05),G2/M期细胞比例显著增多(P<0.05)。试验组凋亡率和对照组相比,48 h检测时凋亡率显著降低(P<0.05)。综上表明,GCSF在体外培养的绵羊颗粒细胞中,可调控绵羊颗粒细胞周期,促进细胞增殖,抑制细胞凋亡。 相似文献
1000.
抗原纯净度是口蹄疫(Foot-and-mouthdisease,FMD)灭活疫苗质量检验的一项重要内容,一般采用疫苗2–3次免疫动物后,检测非结构蛋白(Non-structuralprotein,NSP)抗体是否阳转,判断疫苗抗原的纯净度。文中旨在建立定量检测FMD灭活疫苗抗原中NSP3AB含量的ELISA方法,为疫苗质量控制提供参考方法。利用口蹄疫病毒(Foot-and-mouthdiseasevirus,FMDV)NSP3A单克隆抗体和辣根过氧化物酶(Horseradish peroxidase,HRP)标记的3B单克隆抗体,建立定量检测NSP3AB含量的双抗体夹心ELISA检测方法。采用原核表达并纯化的3AB蛋白作为标准品,标准品系列稀释,绘制标准曲线,以标准品与未加抗原的阴性对照吸光值(OD)的比值大于2.0的标准品最低浓度为最低检测限。标准品浓度介于4.7–600.0 ng/mL之间时,测得的OD值与浓度呈线性相关,回归曲线呈直线,相关系数R2=0.99,确定最低检测限为4.7ng/mL。检测12份未纯化灭活抗原中3AB蛋白含量介于9.3–200.0ng/mL之间;而纯化后的... 相似文献