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61.
目的:多甲氧基黄酮(PMFs)因其抗氧化、抗癌、抗炎及抗动脉粥样硬化等多样的生物学活性受到国内外学者的广泛关注,但其在神经胶质瘤治疗中的潜在作用尚未见报道。本研究对多甲氧基黄酮处理人胶质母细胞瘤细胞系对其生物学特性的影响,初步探讨PMFs在神经胶质瘤治疗中的潜在应用。方法:不同浓度(0,20,40,60,80,100μg/mL)的PMFs处理人胶质母细胞瘤细胞系U251不同时间后.分别用Annexinv/PI双染法检测细胞凋亡的变化,MTT法检细胞活力的变化,Transwell小室实验检测细胞侵袭能力的变化。结果:随着多甲氧基黄酮的浓度及处理时间的增加,细胞的增殖明显受到抑制,同时诱导细胞大量凋亡,促使细胞生长停滞于G2/M期;此外,多甲氧基黄酮剂量依赖性的抑制胶质瘤细胞的侵袭。结论:PMFs能剂量和时间依赖性降低人胶质母细胞瘤细胞系U251的,同时显著诱导细胞瘤的凋亡和侵袭能力,提示PMFs可能对神经胶质瘤的高增殖性和侵袭性有一定的抑制作用,因此可能具有成为治疗神经胶质瘤药物的潜在应用价值。 相似文献
62.
龙芝2号和鹿角灵芝均为赤芝的栽培品种,且在生长发育过程中均不产生孢子。目前,尚缺乏对两者化学成分和药理活性的系统比较研究。本研究以灵芝两个无孢品种——龙芝2号和鹿角灵芝为原料,研究对比两者子实体水提物成分差异及免疫活性的强弱。采用化学及仪器分析相结合的方法,分析两者水提物中的多糖得率、含量、重均分子量分布特征及核苷、蛋白质、氨基酸含量差异,并研究了灵芝两个无孢品种水提物样品刺激RAW 264.7细胞释放NO活性。结果表明,两者多糖得率及含量差异不大,但龙芝2号中重均分子量分布范围较广,多糖分子量较大,其含有3种多糖,分子量分别为2.021×106、1.802×106和4.825×105,而鹿角灵芝中仅含有1种多糖,分子量为1.589×104;两者中含有的核苷种类相似,但各核苷的含量存在差异;鹿角灵芝和龙芝2号中蛋白质含量分别为10.70%和10.32%,两者均不含有组氨酸,蛋氨酸在两者中含量均较高,分别达到2.556%和2.591%。从鹿角灵芝和龙芝2号中得到的水提物样品均具有体外刺激巨噬细胞释放NO的活性。 相似文献
63.
突触泡蛋白2(SV2)是一类跨膜糖蛋白,定位于脊椎动物神经元及内分泌细胞,与神经递质的释放、内分泌泡胞吐作用、突触泡稳态的维持、神经肌肉接头的形成及肾上腺素能受体α2C的定位密切相关。最近还发现SV2是肉毒神经毒素BoNT/A的受体,介导BoNT/A进入神经元。SV2可作为突触泡标记蛋白,广泛应用于生物学研究及肿瘤诊断。此外,SV2还是抗癫痫药物的作用靶标。 相似文献
64.
Wei M Tai G Gao Y Li N Huang B Zhou Y Hao S Zeng X 《The Journal of biological chemistry》2004,279(28):29202-29210
Accumulating evidence indicates that the formation of tumor cell platelet emboli complexes in the blood stream is a very important step during metastases and that the anti-metastasis effects of heparin are partially due to a blockade of P-selectin on platelets. In this study, heparin and chemically modified heparins were tested as inhibitors of three human colon carcinoma cell lines (COLO320, LS174T, and CW-2) binding to P-selectin, adhering to CHO cells expressing a transfected human P-selectin cDNA, and adhering to surface-anchored platelets expressing P-selectin under static and flow conditions. The aim was to screen for heparin derivatives with high anti-adhesion activity but negligible anticoagulant activity. In this study, four modified heparins with high anti-adhesion activity were identified including RO-heparin, CR-heparin, 2/3ODS-heparin, and N/2/3DS-heparin. NMR analysis proved the reliability of structure of the four modified heparins. Our findings suggested that the 6-O-sulfate group of glucosamine units in heparin is critical for the inhibition of P-selectin-mediated tumor cell adhesion. Heparan sulfate-like proteoglycans on these tumor cell surfaces are implicated in adhesion of the tumor cells to P-selectin. Some chemically modified heparins with low anticoagulant activities, such as 2/3ODS-heparin, may have potential value as therapeutic agents that block P-selectin-mediated cell adhesion and prevent tumor metastasis. 相似文献
65.
66.
Claire E. Reynolds-Peterson Na Zhao Jie Xu Taryn M. Serman Jielin Xu 《Autophagy》2017,13(8):1262-1279
Heparan sulfate-modified proteoglycans (HSPGs) are important regulators of signaling and molecular recognition at the cell surface and in the extracellular space. Disruption of HSPG core proteins, HS-synthesis, or HS-degradation can have profound effects on growth, patterning, and cell survival. The Drosophila neuromuscular junction provides a tractable model for understanding the activities of HSPGs at a synapse that displays developmental and activity-dependent plasticity. Muscle cell-specific knockdown of HS biosynthesis disrupted the organization of a specialized postsynaptic membrane, the subsynaptic reticulum (SSR), and affected the number and morphology of mitochondria. We provide evidence that these changes result from a dysregulation of macroautophagy (hereafter referred to as autophagy). Cellular and molecular markers of autophagy are all consistent with an increase in the levels of autophagy in the absence of normal HS-chain biosynthesis and modification. HS production is also required for normal levels of autophagy in the fat body, the central energy storage and nutritional sensing organ in Drosophila. Genetic mosaic analysis indicates that HS-dependent regulation of autophagy occurs non-cell autonomously, consistent with HSPGs influencing this cellular process via signaling in the extracellular space. These findings demonstrate that HS biosynthesis has important regulatory effects on autophagy and that autophagy is critical for normal assembly of postsynaptic membrane specializations. 相似文献
67.
68.
已有研究表明叶绿体内有200种蛋白酶,然而,多数蛋白酶的作用机制尚不清楚,尤其哪些蛋白酶参与了D1蛋白周转.其中Deg2蛋白酶体外实验证明,其参与了光损伤D1蛋白的的初步剪切.为了进一步研究Deg2蛋白酶在植物体内的作用机制,我们筛选了拟南芥Deg2蛋白酶功能缺陷型突变体.在120 μmol·m-2·s-1光照生长条件下,deg2突变体与野生型的生长曲线基本一致;在进一步的高光胁迫(1 800 μmol·m-2·s-1)处理及相同的光胁迫处理条件下,无论林可霉素存在与否,突变体PSⅡ的最大光化学效率(Fv/Fm)都和野生型没有区别;利用蛋白免疫印迹实验同样证明了光损伤D1蛋白的降解速度在deg2突变体和野生型之间也没有明显区别.我们认为Deg2蛋白酶在光抑制情况下对于光损伤D1蛋白的降解以及PSⅡ的修复不是必需的. 相似文献
69.
Bone marrow-derived mesenchymal stem cells (BMSCs) are of particular interest in the field of tissue engineering because of
their potential to differentiate into osteoblasts, chondrocytes, and neuronal cells. In order to promote the differentiation
of BMSCs into specific cell types, appropriate scaffold biomaterials and bioactive molecules that can support the differentiation
of BMSCs into specific cell types are needed. We hypothesized that β-mercaptoethanol (BME), which has been reported to induce
the differentiation of BMSCs into neural-like cells, promotes BMSCs to differentiate into neural-like cells when BME is added
to polymeric scaffolds containing the BMSCs. We fabricated biocompatible film shaped scaffolds composed of poly(lacti-co-glycolic)
acid (PLGA) and various concentrations of BME to confirm that BME-promoted differentiation of BMSCs is concentration-dependent.
Cell proliferation increased as the BME concentration in the films increased at the early stage, and the proliferation rate
remained similar on the PLGA films for 3 weeks following the BMSC seeding. The expression of neuronal markers in differentiated
BMSCs was assessed by RT-PCR. At 2- and 3-week time-points, mRNA expression of neurofilament and neuron specific enolase was
significantly increased in PLGA/BME films containing 400 μM BME compared to PLGA films. Thus, we have identified BMSC-seeded
PLGA/BME films with 200 μM and 400 μM BME as potentially useful candidates for neural tissue engineering applications by promoting
BMSC proliferation and differentiation towards neural-like cells. 相似文献
70.
气道平滑肌细胞(airway smooth muscle cells,ASMCs)是引起哮喘患者气道收缩狭窄、呼吸阻力增加的主要效应细胞。ASMCs收缩效应检测是研究哮喘病理生理机制、评估或研发新的支气管舒张药物的重要实验依据。而常用的活体组织张力检测以及单层培养ASMCs显微镜形态观察等方法存在样品取材或测量误差等问题。该研究利用胶原蛋白凝胶构建气道平滑肌细胞的三维立体培养模型,将凝胶与培养孔壁分离,在不同的时间点记录细胞收缩力作用下凝胶面积的变化值,以此反映ASMCs的收缩效应。结果显示,0.1,1,10 mmol/L的乙酰胆碱(acetylcholine,Ach)刺激后,凝胶面积均显著缩小,随着剂量增加ASMCs的收缩反应增强。提前加入肌球蛋白ATP酶抑制剂BDM(butanedione monoxime),能明显抑制Ach诱导的ASMCs收缩反应,说明该方法的可重复性和准确性好。 相似文献