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91.
Maternal separation and early stress cause long‐lasting effects on dopaminergic and endocannabinergic systems and alters dendritic morphology in the nucleus accumbens and frontal cortex in rats 下载免费PDF全文
Antonio Romano‐López Mónica Méndez‐Díaz Fabio García García Citlalli Regalado‐Santiago Alejandra E. Ruiz‐Contreras Oscar Prospéro‐García 《Developmental neurobiology》2016,76(8):819-831
A considerable amount experimental studies have shown that maternal separation (MS) is associated with adult offspring abnormal behavior and cognition disorder. Accordingly, this experimental procedure has been proposed as a predictor for alcohol and drug dependence based on the neurodevelopmental soon after birth. Endocannabinoid system (eCBs) has been implicated in reward processes, including drug abuse and dependence. MS and associated stress causes changes in the eCBs that seem to facilitate alcohol consumption. In this study, we seek to evaluate potential morphological changes in neurons of the frontal cortex (FCx) and nucleus accumbens (NAcc), in the expression of receptors and enzymes of the endocannabinoid and dopamine systems and in second messengers, such as Akt, in adult rats subjected to MS and early stress (MS + ES; 2 × 180 min daily) vs. nonseparated rats (NMS). Results showed that MS + ES induces higher D2R expression and lower D3R, FAAH, and MAGL expression compared with NMS rats. Alterations in total dendritic length were also detected and were characterized by increases in the NAcc while there were decreases in the FCx. We believe MS + ES‐induced changes in the dopaminergic and endocannabinergic systems and in the neuronal microstructure might be contributing to alcohol seeking behavior and, potential vulnerability to other drugs in rats. © 2015 Wiley Periodicals, Inc. Develop Neurobiol 76: 819–831, 2016 相似文献
92.
《Expert review of proteomics》2013,10(5):649-657
It has been proved that the progress of proteomics is mostly determined by the development of advanced and sensitive protein separation technologies. Immobilized metal affinity chromatography (IMAC) is a powerful protein fractionation method used to enrich metal-associated proteins and peptides. In proteomics, IMAC has been widely employed as a prefractionation method to increase the resolution in protein separation. The combination of IMAC with other protein analytical technologies has been successfully utilized to characterize metalloproteome and post-translational modifications. In the near future, newly developed IMAC integrated with other proteomic methods will greatly contribute to the revolution of expression, cell-mapping and structural proteomics. 相似文献
93.
通过对不同孔径和材质的微孔滤膜对苦楝提取液过滤分离比较,优选出孔径为0.45μm的聚醚砜微滤膜对苦楝提取液具有良好的过滤性能。确定的膜分离提纯苦楝素优化工艺条件是:在料液浓度为0.374 mg/mL,料液温度35℃,操作压力差为0.08 MPa,循环流量为0.15 L/h,pH=7.0,苦楝素的转移率为99.4%,除杂率为8.3%,通量为147.2 L/m2.h,苦楝素的纯度为由提取液的0.89%,提高到了8.79%。 相似文献
94.
Lara A Gruijs da Silva Francesca Simonetti Saskia Hutten Henrick Riemenschneider Erin L Sternburg Lisa M Pietrek Jakob Gebel Volker Dtsch Dieter Edbauer Gerhard Hummer Lukas S Stelzl Dorothee Dormann 《The EMBO journal》2022,41(8)
Post‐translational modifications (PTMs) have emerged as key modulators of protein phase separation and have been linked to protein aggregation in neurodegenerative disorders. The major aggregating protein in amyotrophic lateral sclerosis and frontotemporal dementia, the RNA‐binding protein TAR DNA‐binding protein (TDP‐43), is hyperphosphorylated in disease on several C‐terminal serine residues, a process generally believed to promote TDP‐43 aggregation. Here, we however find that Casein kinase 1δ‐mediated TDP‐43 hyperphosphorylation or C‐terminal phosphomimetic mutations reduce TDP‐43 phase separation and aggregation, and instead render TDP‐43 condensates more liquid‐like and dynamic. Multi‐scale molecular dynamics simulations reveal reduced homotypic interactions of TDP‐43 low‐complexity domains through enhanced solvation of phosphomimetic residues. Cellular experiments show that phosphomimetic substitutions do not affect nuclear import or RNA regulatory functions of TDP‐43, but suppress accumulation of TDP‐43 in membrane‐less organelles and promote its solubility in neurons. We speculate that TDP‐43 hyperphosphorylation may be a protective cellular response to counteract TDP‐43 aggregation. 相似文献
95.
Protein liquid-liquid phase separation drives the dynamic assembly of membraneless organelles for fulfilling different physiological functions. Under diseased condition, protein may undergo liquid-to-solid condensation to form pathological amyloid aggregates closely associated with neurodegenerative diseases. Chemical probe serves as an important chemical tool not only for exploring the basic principle of the dynamic assembly of different protein condensates in vitro and in cell but also for clinical diagnosis and therapeutics of the related diseases. In this review, we first introduce chemical probes to image and regulate protein condensates. Then, we summarized three different categories of chemical probes including general amyloid dye, selective positron emission tomography tracer, and disaggregating binder, which feature distinct interaction pattern and activity upon binding to different pathological amyloid fibrillar aggregates. Next, we discuss the development of chemical probes for tracking protein amorphous aggregates in cells. Finally, we point out future direction in expanding the probes’ chemical space and applications. 相似文献
96.
97.
Summary Cultures generated from tissues consisting of multiple types of cells are often heterogeneous. Unless the cell type of interest
has or can be given some selective growth advantage it may be overgrown by other cells. While developing techniques for the
tissue culture of microvascular endothelial cells we evaluated an electrosurgical generator (diathermy) to selectively kill
nonendothelail cells. Primary cell cultures were observed at ×100 magnification under phase contrast microscopy and a needle
electrode apposed to the cell to be destroyed. A return electrode was constructed by placing a sterile clip in contact with
the culture medium. The diathermy power setting controlled the area of lysis. Use of this technique allowed weeding of unwanted
cells without damage to endothelial cells, which were able to grow to confluence in pure culture.
Dr. Marks receives a Medical Postgraduate Research Scholarship from the National Health and Medical Research Council of Australia.
Financial support was received from the Leo Leukaemia and Cancer Research Trust and the Scleroderma Association of New South
Wales. 相似文献
98.
Glareh Azadi Anuj Chauhan Anubhav Tripathi 《Protein science : a publication of the Protein Society》2013,22(9):1258-1265
Dilution of protein–surfactant complexes is an integrated step in microfluidic protein sizing, where the contribution of free micelles to the overall fluorescence is reduced by dilution. This process can be further improved by establishing an optimum surfactant concentration and quantifying the amount of protein based on the fluorescence intensity. To this end, we study the interaction of proteins with anionic sodium dodecyl sulfate (SDS) and cationic hexadecyl trimethyl ammonium bromide (CTAB) using a hydrophobic fluorescent dye (sypro orange). We analyze these interactions fluourometrically with bovine serum albumin, carbonic anhydrase, and beta‐galactosidase as model proteins. The fluorescent signature of protein–surfactant complexes at various dilution points shows three distinct regions, surfactant dominant, breakdown, and protein dominant region. Based on the dilution behavior of protein–surfactant complexes, we propose a fluorescence model to explain the contribution of free and bound micelles to the overall fluorescence. Our results show that protein peak is observed at 3 mM SDS as the optimum dilution concentration. Furthermore, we study the effect of protein concentration on fluorescence intensity. In a single protein model with a constant dye quantum yield, the peak height increases with protein concentration. Finally, addition of CTAB to the protein–SDS complex at mole fractions above 0.1 shifts the protein peak from 3 mM to 4 mM SDS. The knowledge of protein–surfactant interactions obtained from these studies provides significant insights for novel detection and quantification techniques in microfluidics. 相似文献
99.
Rui Peng Juan Le Shu-Lin Yang Jing-Ru Cheng Yan Li Shao-Ting Wang 《Journal of lipid research》2022,63(1):100158
Sex hormones, including androgens, estrogens, and progestogens, are important biomarkers for various diseases. Quantification of sex hormones is typically conducted by LC-MS/MS. At present, most methods require liquid-liquid extraction or solid phase extraction for sample preparation. However, these pretreatments are prone to compromise LC-MS/MS throughput. To improve on the current standard practices, we investigated cold-induced phase separation for sex hormone extraction. After protein precipitation with acetonitrile and adjusting the solution constitution with water, samples were stored at ?30°C for 10 min to generate two distinct phases: an acetonitrile-rich layer on top of a water-rich layer. During this process, the hydrophobic sex hormones spontaneously separate into the upper layer. This simple and reliable cold-induced phase separation-based LC-MS/MS methodology was used here to simultaneously detect estrone, estradiol, estriol, testosterone, androstenedione, dehydroepiandrosterone, progesterone, and 17-hydroxyprogesterone in serum. Validation of this method indicated satisfactory performance, including acceptable linearity, accuracy, precision, and tractability. Compared with the mainstream liquid-liquid extraction-based method, this new method exhibits significant progress in throughput, which shortens the time cost of sample preparation from 90 to 40 min. We propose that this method can be an excellent alternative for sex hormone analysis in routine clinical laboratories. 相似文献
100.
为进一步阐明雷公藤中的主要物质基础,并评价其抗肿瘤活性。该研究采用柱层析、HPLC等技术,对雷公藤提取物进行研究。结果表明:(1)从雷公藤95%乙醇提取物中分离得到12个化合物,根据理化性质及波谱数据鉴定各化合物的结构分别为α,β-amyrenone(1)、3β-acetoxyolean-12-en-28-oic acid(2)、antriptolactone(3)、ω-hydroxypropioquaiacone(4)、3-(4-hydroxy-3-methoxyphenyl)-propenal(5)、3-methoxy-4-hydroxy phenylethanol(6)、vanillin(7)、3,4,5-三甲氧基苯酚(8)、对羟基苯甲酸(9)、对羟基苯甲醛(10)、vanillyl alcohol(11)、2,6-dimethxy-1,4-benzoquinone(12)。其中,化合物1、2、5、12为首次在该属植物中分离得到。(2)采用噻唑蓝(MTT)法对12个化合物进行抗SH-SY5Y细胞株、K562细胞株和Hel细胞株3种肿瘤细胞系细胞增殖活性的筛选,并对活性较好的化合物12进行Hoechst荧光染色和促凋亡作用的检测发现,化合物2、3、5、12具有一定的抗肿瘤活性,其中化合物12的抗肿瘤活性最为显著(SH-SY5Y细胞、Hel细胞、K562细胞的IC_(50)值分别为35.6、14.3、28.8μmol·L^(-1))。该研究结果进一步丰富了雷公藤的化学成分,发现了1个具有明显抗肿瘤活性的单体物质,为雷公藤的进一步开发提供了科学依据。 相似文献