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61.
稀土元素也称镧系元素,因其独特的发光性质和配位性质,其发光复合物被广泛研究于生物技术领域。其中稀土铽(Ⅲ)离子复合物因具有优异的光谱特性,关于其研究呈现出快速的发展趋势。主要从其发光特性的角度出发,探讨了其发光机理,并对铽(Ⅲ)离子与不同有机化合物结合形成的发光铽配合物以及铽(Ⅲ)离子及其配合物与不同纳米材料形成的复合物进行了分类综述。此外,还详细地阐述了铽离子及其复合物在荧光探针、生物传感器、药物递送、细胞成像、癌症治疗等相关领域的应用。最后,对其今后发展趋势和潜在的研究价值进行了展望。  相似文献   
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HU (Histone‐like protein from Escherichia coli strain U93) is the most conserved nucleoid‐associated protein in eubacteria, but how it impacts global chromosome organization is poorly understood. Using single‐molecule tracking, we demonstrate that HU exhibits nonspecific, weak, and transitory interactions with the chromosomal DNA. These interactions are largely mediated by three conserved, surface‐exposed lysine residues (triK), which were previously shown to be responsible for nonspecific binding to DNA. The loss of these weak, transitory interactions in a HUα(triKA) mutant results in an over‐condensed and mis‐segregated nucleoid. Mutating a conserved proline residue (P63A) in the HUα subunit, deleting the HUβ subunit, or deleting nucleoid‐associated naRNAs, each previously implicated in HU’s high‐affinity binding to kinked or cruciform DNA, leads to less dramatically altered interacting dynamics of HU compared to the HUα(triKA) mutant, but highly expanded nucleoids. Our results suggest HU plays a dual role in maintaining proper nucleoid volume through its differential interactions with chromosomal DNA. On the one hand, HU compacts the nucleoid through specific DNA structure‐binding interactions. On the other hand, it decondenses the nucleoid through many nonspecific, weak, and transitory interactions with the bulk chromosome. Such dynamic interactions may contribute to the viscoelastic properties and fluidity of the bacterial nucleoid to facilitate proper chromosome functions.  相似文献   
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Single-molecule imaging has gained momentum to quantify the dynamics of biomolecules in live cells, as it provides direct real-time measurements of various cellular activities under their physiological environment. Yeast, a simple and widely used eukaryote, serves as a good model system to quantify single-molecule dynamics of various cellular processes because of its low genomic and cellular complexities, as well as its facile ability to be genetically manipulated. In the past decade, significant developments have been made regarding the intracellular labeling of biomolecules (proteins, mRNA, fatty acids), the microscopy setups to visualize single-molecules and capture their fast dynamics, and the data analysis pipelines to interpret such dynamics. In this review, we summarize the current state of knowledge for the single-molecule imaging in live yeast cells to provide a ready reference for beginners. We provide a comprehensive table to demonstrate how various labs tailored the imaging regimes and data analysis pipelines to estimate various biophysical parameters for a variety of biological processes. Lastly, we present current challenges and future directions for developing better tools and resources for single-molecule imaging in live yeast cells.  相似文献   
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The highly conserved dual-specificity tyrosine phosphorylation–regulated kinase 1A (Dyrk1A) plays crucial roles during central nervous system development and homeostasis. Furthermore, its hyperactivity is considered responsible for some neurological defects in individuals with Down syndrome. We set out to establish a zebrafish model expressing human Dyrk1A that could be further used to characterize the interaction between Dyrk1A and neurological phenotypes. First, we revealed the prominent expression of dyrk1a homologs in cerebellar neurons in the zebrafish larval and adult brains. Overexpression of human dyrk1a in postmitotic cerebellar Purkinje neurons resulted in a structural misorganization of the Purkinje cells in cerebellar hemispheres and a compaction of this cell population. This impaired Purkinje cell organization was progressive, leading to an age-dependent dispersal of Purkinje neurons throughout the cerebellar molecular layer with larval swim deficits resulting in miscoordination of swimming and reduced exploratory behavior in aged adults. We also found that the structural misorganization of the larval Purkinje cell layer could be rescued by pharmacological treatment with Dyrk1A inhibitors. We further reveal the in vivo efficiency of a novel selective Dyrk1A inhibitor, KuFal194. These findings demonstrate that the zebrafish is a well-suited vertebrate organism to genetically model severe neurological diseases with single cell type specificity. Such models can be used to relate molecular malfunction to cellular deficits, impaired tissue formation, and organismal behavior and can also be used for pharmacological compound testing and validation.  相似文献   
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摘要 目的:研究磁共振成像(MRI)检查联合血清人附睾蛋白4(HE4)、细胞质胸苷激酶(TK1)、糖类抗原199(CA199)检测在卵巢癌诊断中的应用价值。方法:将2017年4月~2019年12月我院收治的卵巢癌患者54例作为卵巢癌组,卵巢良性肿瘤患者49例作为卵巢良性肿瘤组,所有受试者均进行MRI检测,并采集受试者血清检测HE4、TK1、CA199水平,以受试者工作特征(ROC)曲线分析MRI检查联合血清HE4、TK1、CA199检测诊断卵巢癌的效能。结果:卵巢癌MRI特点包括以下几点:①囊实性肿块;②形态不规则;③呈长T2/T1等信号;④病灶边界模糊;⑤增强扫描结果呈病灶显著强化;⑥腹膜转移者存在显著腹腔积液以及散在分布的结节状种植病灶。卵巢良性肿瘤MRI特点包括以下几点:①囊壁光滑;②呈长T1以及长T2信;③病灶边界清晰;④增强扫描结果提示病灶无强化/稍有强化。卵巢癌组血清HE4、TK1、CA199水平分别为(87.13±15.32)pmol/L、(2.15±0.13)pmol/L、(95.39±15.25)U/mL,明显高于卵巢良性肿瘤组的(66.42±10.19)pmol/L、(0.85±0.20)pmol/L、(37.94±1.05)U/mL(均P<0.05)。经ROC曲线分析可得:MRI检查联合血清HE4、TK1、CA199检测诊断卵巢癌的灵敏度、特异度以及曲线下面积均高于上述各项单独诊断。结论:卵巢癌患者血清HE4、TK1、CA199水平较高,MRI检查联合血清HE4、TK1、CA199检测诊断卵巢癌的价值较高,具有一定的临床应用价值。  相似文献   
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摘要 目的:研究3.0 T磁共振T2×mapping成像技术定量评估膝关节骨性关节炎(OA)的临床价值及与西安大略和麦克马斯特大学骨关节炎指数(WOMAC)评分的相关性。方法:将我院于2017年4月~2019年12月期间收治的膝关节OA患者80例纳入研究。根据K-L分级标准将膝关节OA患者分成轻度组(K-L分级为Ⅰ~Ⅱ级)32例,重度组(K-L分级为Ⅲ~Ⅴ级)48例。另取同期于我院进行体检的健康者30例作为对照组。所有受试者均接受3.0 T磁共振T2×mapping扫描,比较各组膝关节不同部位软骨T2值、WOMAC评分以及血清炎症因子水平,以Pearson相关性分析膝关节OA患者膝关节不同部位软骨T2值和WOMAC评分的关系。结果:重度组膝关节不同部位软骨T2值均高于轻度组以及对照组,且轻度组膝关节不同部位软骨T2值均高于对照组(均P<0.05)。重度组各项WOMAC评分及总分均高于轻度组以及对照组,且轻度组各项WOMAC评分及总分均高于对照组(均P<0.05)。经Pearson相关性分析发现:膝关节OA患者膝关节不同部位软骨T2值和各项WOMAC评分及总分均呈正相关(均P<0.05)。重度组血清白介素-1β(IL-1β)、白介素-18(IL-18)、肿瘤坏死因子α(TNF-α)均高于轻度组以及对照组,且轻度组血清IL-1β、IL-18、TNF-α均高于对照组(均P<0.05)。结论:3.0 T磁共振T2×mapping成像技术定量评估膝关节OA的临床价值较高,且患者膝关节不同部位软骨T2值与WOMAC评分密切相关。  相似文献   
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