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1.
目的:建立基于聚(乳酸-羟基乙酸)纳米粒(PLGA)载DNA的基因转染体系,比较用空白聚(乳酸-羟基乙酸)纳米粒(PLG-A-E)吸附质粒DNA和用分枝PEI修饰后的PLGA纳米粒(PLGA-BPEI)吸附质粒DNA优缺点。方法:用乳化蒸发法制备纳米粒,对纳米粒进行表征研究,包括包封率、Zeta电位、粒径大小、稳定性,用荧光显微镜观察它们对NIH3T3和HEK293细胞的转染效率,用MTT检测对它们细胞的毒性。结果:制备了两种基于PLGA的纳米粒,PLGA-E和PLGA-BPEI粒径大小为200-270nm,zeta电位为0-30mV,在血清和不同的pH值时两者均较稳定,转染效率PLGA-BPEI较PLGA-E高,且释放时间早,但前者较后者对细胞毒性大。结论:这两种基于PLGA纳米粒均能有效转染质粒DNA,它们存在不同的优缺点,应根据不同需要进行选择。  相似文献   

2.
外源表达的人copine V诱导细胞死亡的研究   总被引:1,自引:1,他引:1  
目的:copines蛋白家族是新近发现的一类分布广泛、进化保守的Ca2+依赖性磷脂结合蛋白,copineV是其成员之一.为研究copineV基因的功能,构建了人copineV基因的真核表达质粒并转染HEK293细胞,以进一步研究其功能.方法:构建人copineV编码区序列的真核表达质粒pCDNA4/copineV,脂质体法转染HEK293细胞.通过RT-PCR、克隆形成实验和Hochesst33342染色等方法观察copineV基因对HEK293细胞生长的影响.结果:外源表达的人copine V可以诱导HEK293细胞死亡,无法筛选到稳定克隆.结论:人copineV可以诱导HEK293细胞死亡,为进一步研究copineV基因的生物功能提供了线索.  相似文献   

3.
目的:copines蛋白家族是新近发现的一类分布广泛、进化保守的Ca2 依赖性磷脂结合蛋白,copineⅤ是其成员之一。为研究copineⅤ基因的功能,构建了人copineⅤ基因的真核表达质粒并转染HEK293细胞,以进一步研究其功能。方法:构建人copineⅤ编码区序列的真核表达质粒pCDNA4/copineⅤ,脂质体法转染HEK293细胞。通过RT-PCR、克隆形成实验和Hochesst33342染色等方法观察copineⅤ基因对HEK293细胞生长的影响。结果:外源表达的人copineⅤ可以诱导HEK293细胞死亡,无法筛选到稳定克隆。结论:人copineⅤ可以诱导HEK293细胞死亡,为进一步研究copineⅤ基因的生物功能提供了线索。  相似文献   

4.
目的:利用基因工程原理构建人胰岛素样生长因子1(hIGF-1)全长基因的真核表达栽体pIRES2-EGFP-hIGF-1,并观察其在人胚肾293细胞中的表达.方法:应用PCR方法从人肝细胞文库中提取人hIGF-1全长cDNA序列,克隆入T-pMD18载体中,经测序证实序列正确后,利用XhoI/EcoRI进行双酶切并定向插入真核表达载体pIRES2-EGFP中,利用双酶切、电泳和PCR进行鉴定证实插入片段的正确性.应用高效转染试剂X-treme GENE HP DNA Transfection reagent介导真核表达载体pIRES2-EGFP-hIGF-1转染人胚肾细胞(HEK293),转染后利用倒置荧光显微镜与RT-PCR观察目的基因在靶细胞中的表达.结果:经酶切和测序证实重组质粒栽体构建正确,转染后48小时可观察到绿色荧光的表达,RT-PCR结果证实转染pIRES2-EGFP-hIGF-1后可有hIGF-1基因靶细胞中表达.结论:成功构建真核表达载体pIRES2-EGFP-hIGF-1,目的基因与标记基因可同时在靶细胞中表达,为后续研究奠定基础.  相似文献   

5.
目的:构建含自杀基因胞嘧啶脱氨酶(CD)的真核表达载体pcDNA3.1/HA—myc-His(-)Z—CD,并进行哺乳动物细胞HEK293转染研究。方法:以本实验室保存的含CD基因全长的质粒为模版,用PcR方法扩增CD基因阅读框序列,并定向克隆到带有HAtag的pcDNA3.1/HA—myc-His(-)Z载体上,使目的基因与HAtag在同一阅读框。重组体质粒经EcoRI和BamHI双酶切鉴定,并对插入的CD基因片段进行测序,将鉴定好的阳性重组质粒pcDNA3.1/HA—myc-His(-)Z—CD用脂质体介导转染HEK293,提取细胞蛋白,western blot检测CD基因的表达情况.结果:阳性重组质粒pcDNA3.1/HA—myc-His(-)ZCD经Eco砌和BanHI双酶切后,获得约为5.5kb片段和1.3kb插入片段,序列分析表明插入的片段与GenBank发布的序列一致.western blot检测到CD基因的表达。结论:成功构建了含自杀基因CD的真核表达质粒。  相似文献   

6.
目的构建大肠埃希菌(Escherichia coli)嘌呤核苷磷酸化酶(purine nucleoside phosphorylase,PNP)基因表达载体,研究其生物活性,为肿瘤的基因治疗奠定基础。方法PCR扩增大肠埃希菌K12的PNP基因,T4连接酶将PNP连接人pMSCV逆转录病毒载体,构建重组逆转录病毒载体pMSCV/PNP。pM—SCV/PNP转化感受态大肠埃希菌XLI-Blue,提取pMSCV/PNP,酶切、PCR和测序鉴定。病毒包装细胞293产生重组逆转录病毒pMSCV/PNP,流式细胞仪测病毒滴度。pMSCV/PNP转染胰腺癌细胞BXPC-3,倒置荧光显微镜观察,FACS分离转染阳性细胞(GFP阳性)。RT—PCR检测PNPmRNA在胰腺癌细胞BXPC-3细胞中的表达,MTT法检测PNP基因的生物活性。结果PCR扩增出大肠埃希菌PNP基因(738bp),酶切和PCR的电泳条带显示pMSCV/PNP,测序结果正常。293包装细胞产生高滴度(3.6×10^7U/m1)重组逆转录病毒pMSCV/PNP。RT—PCR实验结果表明,pMSCV/PNP转染的胰腺癌细胞BXPC-3表达PNPmRNA。前药6-甲基嘌呤-2’-脱氧核苷(MePdR)作用72h浓度达1.00mg/L,BXPC-3/PNP细胞存活率为10.09%,随着MePdR浓度加大,BXPC-3/PNP细胞存活率继续下降直至为0。结论构建了pMSCV/PNP载体,获得了表达大肠埃希菌PNP基因的BXPC-3细胞克隆,PNP/MePdR自杀基因系统对胰腺癌细胞BXPC-3有较强的抑杀作用。  相似文献   

7.
目的:构建人P2X7基因的真核表达载体,并通过转染获得稳定表达P2X7分子的HEK293细胞株。方法:以人脑组织P2X7cDNA为模板扩增出P2X7基因,插入到真核表达载体pEGFP-N1中,构建重组质粒pEGFP-N1/P2X7。用X-fect试剂盒将重组质粒转染HEK293细胞,通过G418辅助荧光筛选建立稳定表达P2X7-EGFP细胞株。经流式细胞仪、Western blot和激光共聚焦显微镜检测,了解人P2X7在HEK293细胞中的表达水平及细胞内定位。结果:重组质粒pEGFP-N1/P2X7构建正确,建立了稳定表达人P2X7的HEK293细胞系。Western blot和流式细胞仪检测证实,P2X7在HEK293细胞系中成功表达,激光共聚焦显微镜检测显示P2X7-EGFP定位在细胞膜上。结论:重组载体pEGFP-N1/P2X7构建成功并建立了稳定表达人P2X7的HEK293细胞系,为进一步研究P2X7离子通道结构和功能奠定基础。  相似文献   

8.
阳离子脂质体转染人类骨骼肌原代细胞的初步研究   总被引:1,自引:0,他引:1  
探讨不同脂质体介导基因转染人类骨骼肌原代细胞的转染效率和基因的表达.将含有β-半乳糖苷酶LacZ结构基因的质粒,用三种不同的阳离子脂质体导入人类骨骼肌原代细胞中,通过X-Gal染色观察不同的转染效率.结果发现,Fugene 6转染效率最高,蓝染细胞达10%,其脂质体与DNA的最佳比例为3∶ 2.Fugene 6可有效地将外源基因导入骨骼肌原代细胞,而且外源基因可以长效高效地表达,有望用来作为基因治疗的载体.  相似文献   

9.
稳定表达hHCN2基因 HEK293细胞系的建立   总被引:1,自引:0,他引:1  
目的:培育稳定表达hHCN2基因的细胞系,建立一种表达研究心肌离子通道的有效模型。方法:通过脂质体转染的方法,将重组pcDNA3-hHCN2真核表达载体导入人胚肾细胞(HEK293细胞),以G418压力筛选转染细胞,并对其进行全细胞膜片钳记录。结果:经600μg/ml压力筛选后,获得抗性细胞克隆,并用全细胞膜片钳技术记录到克隆hHCN2通道编码电流。结论:本实验采用脂质体转染法成功地培育出G418抗性HEK293细胞。为进一步研究克隆离子通道结构和功能的关系奠定基础。  相似文献   

10.
通过扫描电子显微镜和Zeta电位仪对磁性纳米颗粒的形貌、粒径、表面电位等进行了表征。利用凝胶电泳阻滞试验分析磁性纳米颗粒与DNA的结合情况,研究磁性纳米颗粒对DNA的保护效果,运用MTT和流式细胞术分析磁性纳米颗粒对细胞的毒性。以绿色荧光蛋白基因为报告基因进行293T细胞的转染,研究磁性纳米颗粒与质粒DNA不同比例条件下对293T细胞的转染效率,并与脂质体(Lipofectamine2000)介导的转染进行比较分析。结果表明,磁性纳米颗粒与DNA可以稳定结合,可以保护DNA免受酶的消化作用,当磁性纳米颗粒与DNA比为1 1时,转染效率最高,优于脂质体(Lipotamine2000)介导的转染,且对细胞的毒害作用小于Lipotamine2000。  相似文献   

11.
Defects in mitochondrial energy metabolism have been implicated in the pathology of several neurodegenerative disorders. In addition, the reactive metabolites generated from the metabolism and oxidation of the neurotransmitter dopamine (DA) are thought to contribute to the damage to neurons of the basal ganglia. We have previously demonstrated that infusions of the metabolic inhibitor malonate into the striata of mice or rats produce degeneration of DA nerve terminals. In the present studies, we demonstrate that an intrastriatal infusion of malonate induces a substantial increase in DA efflux in awake, behaving mice as measured by in vivo microdialysis. Furthermore, pretreatment of mice with tetrabenazine (TBZ) or the TBZ analogue Ro 4-1284 (Ro-4), compounds that reversibly inhibit the vesicular storage of DA, attenuates the malonate-induced DA efflux as well as the damage to DA nerve terminals. Consistent with these findings, the damage to both DA and GABA neurons in mesencephalic cultures by malonate exposure was attenuated by pretreatment with TBZ or Ro-4. Treatment with these compounds did not affect the formation of free radicals or the inhibition of oxidative phosphorylation resulting from malonate exposure alone. Our data suggest that DA plays an important role in the neurotoxicity produced by malonate. These findings provide direct evidence that inhibition of succinate dehydrogenase causes an increase in extracellular DA levels and indicate that bioenergetic defects may contribute to the pathogenesis of chronic neurodegenerative diseases through a mechanism involving DA.  相似文献   

12.
2018年中国植物科学若干领域重要研究进展   总被引:1,自引:0,他引:1  
2018年中国植物科学继续呈现快速发展的态势, 我国科学家在国际植物科学主流学术刊物发表论文数量大幅增加, 取得了多项具有重要影响的成果。调控植物生长-代谢平衡实现可持续农业发展入选2018年度中国科学十大进展; 中国被子植物区系进化历史研究入选2018年度中国生命科学十大进展。以水稻为代表的农作物和果蔬等经济作物研究在国际上已呈现出明显的优势, 若干领域已从“追赶”状态跨越到“领跑”地位。该文对2018年中国科学家在植物科学若干领域取得的重要研究成果进行了概括性评述, 旨在全面追踪和报道当前中国植物科学领域的发展前沿和热点, 展示中国科学家所取得的杰出成就。  相似文献   

13.
2017年中国植物科学若干领域重要研究进展   总被引:1,自引:0,他引:1  
2017年中国植物科学继续保持高速发展态势, 重大成果频出, 具体表现在中国植物学家在国际顶级学术期刊发表的文章数量平稳上升。中国植物科学领域的研究工作者成果精彩纷呈, 如新型广谱抗病机制的发现、水稻广谱抗病遗传基础及机制和疫霉菌诱发病害成灾机制研究等。2017年中国生命科学领域十大进展评选中, 有两项植物科学领域的研究成果入选。水稻生物学、进化与基因组学和激素生物学等领域学科发展突出。另外, 值得一提的是, 长期从事高等植物与代谢途径调控分子网络研究和水稻品种设计育种的李家洋院士的研究成果“水稻高产优质性状形成的分子机理及品种设计”荣获2017年国家自然科学一等奖。这一具有重大国际影响的开创性贡献标志着中国植物科学在该领域的国际科学前沿居于引领和卓越地位。该文对2017年中国本土科学家在植物科学若干领域取得的重要研究成果进行了系统梳理, 旨在全面追踪和报道当前中国植物科学领域发展的最新前沿动态, 与广大读者共同分享我国科学家所取得的辉煌成就。  相似文献   

14.
葫芦科植物包括多种瓜类蔬菜,对其进行离体培养研究具有重要的理论和实践意义。综述了国内在葫芦科植物器官培养、体细胞胚胎发生、花药培养、原生质体培养和体细胞杂交及离体遗传转化等方面取得的研究进展,并对葫芦科植物离体培养、遗传转化与育种的前景作了展望。  相似文献   

15.
Somatostatin (SST) peptide is a potent inhibitor of insulin secretion and its effect is mediated via somatostatin receptor 5 (SSTR5) in the endocrine pancreas. To investigate the consequences of gene ablation of SSTR5 in the mouse pancreas, we have generated a mouse model in which the SSTR5 gene was specifically knocked down in the pancreatic beta cells (betaSSTR5Kd) using the Cre-lox system. Immunohistochemistry analysis showed that SSTR5 gene expression was absent in beta cells at three months of age. At the time of gene ablation, betaSSTR5Kd mice demonstrated glucose intolerance with lack of insulin response and significantly reduced serum insulin levels. Insulin tolerance test demonstrated a significant increase of insulin clearance in vivo at the same age. In vitro studies demonstrated an absence of response to SST-28 stimulation in the betaSSTR5Kd mouse islet, which was associated with a significantly reduced SST expression level in betaSSTR5Kd mice pancreata. In addition, betaSSTR5Kd mice had significantly reduced serum glucose levels and increased serum insulin levels at 12 months of age. Glucose tolerance test at an older age also indicated a persistently higher insulin level in betaSSTR5Kd mice. Further studies of betaSSTR5Kd mice had revealed elevated serum C-peptide levels at both 3 and 12 months of age, suggesting that these mice are capable of producing and releasing insulin to the periphery. These results support the hypothesis that SSTR5 plays a pivotal role in the regulation of insulin secretion in the mouse pancreas.  相似文献   

16.
2018年中国植物科学继续呈现快速发展的态势, 我国科学家在国际植物科学主流学术刊物发表论文数量大幅增加, 取得了多项具有重要影响的成果。调控植物生长-代谢平衡实现可持续农业发展入选2018年度中国科学十大进展; 中国被子植物区系进化历史研究入选2018年度中国生命科学十大进展。以水稻为代表的农作物和果蔬等经济作物研究在国际上已呈现出明显的优势, 若干领域已从“追赶”状态跨越到“领跑”地位。该文对2018年中国科学家在植物科学若干领域取得的重要研究成果进行了概括性评述, 旨在全面追踪和报道当前中国植物科学领域的发展前沿和热点, 展示中国科学家所取得的杰出成就。  相似文献   

17.
我国葫芦科植物离体培养研究进展   总被引:5,自引:0,他引:5  
葫芦科植物包括多种瓜类蔬菜,对其进行离体培养研究具有重要的理论和实践意义.综述了国内在葫芦科植物器官培养、体细胞胚胎发生、花药培养、原生质体培养和体细胞杂交及离体遗传转化等方面取得的研究进展,并对葫芦科植物离体培养、遗传转化与育种的前景作了展望.  相似文献   

18.
Abstract. Changes are described in aquatic vegetation in oligotrophic, groundwater-fed Rhine floodplain streams in Alsace (eastern France), resulting from disturbance. Disturbance factors include changes in nutrients, either permanent ones - effluent from a waste water treatment plant or trout hatcheries - or periodic ones: flooding. Regular inputs of high levels of phosphate and ammonia modified the macrophyte vegetation in these streams. The floristic composition, which was characteristic of oligotrophic waters upstream of the eutrophicated sector, changed to that of a eutrophic situation as originally found downstream. Periodic disturbance by floods which normally occur once a year, irregularly eutrophicates the small streams, causing the development of a mixture of eutrophic and oligotrophic species. Six macrophyte communities are distinguished, indicating different trophic levels. The aquatic vegetation is adapted to the variations of phosphate and ammonia levels. Hence, aquatic macrophytes can be used as bio-indicators of fluctuations in water nutrient levels in relation to the type of disturbance.  相似文献   

19.
We report the appearance of apoptotic cells in experimental myocardial infarction (rabbit heart) in in situ and in vitro preparations. Apoptosis was recognized by intravital staining with Hoechst 33342 (Ho342), by nick-end labeling (TUNEL) and by DNA laddering. A steady rise in the relative number of apoptotic cardiomyocytes (apoptotic index) was noted in in situ preparations. Apoptosis was first noted 6 h after the onset of ischemia with its highest value occurring after 72 h. Apoptotic nuclei were absent in remote areas of the left and right ventricles. Apoptotic nuclei within the infarcted area showed diminished intensity of Ho342 fluorescence. Three days after ischemia, a border zone adjacent to the infarcted area consisting of apoptotic macrophages was recognized. A novel finding was the appearance of apoptotic cardiomyocytes in the isolated perfused ischemic heart. Occurring as early as 50 min after the onset of ischemia, a high apoptotic index was present adjacent to the ligature placed around the coronary artery. This observation provides the opportunity to selectively examine factors leading to apoptosis in the ischemic heart under controlled experimental conditions.  相似文献   

20.
The detailed mechanisms underlying morphine-signaling pathways in platelets remain obscure. Therefore, we systematically examined the influence of morphine on washed human platelets. In this study, washed human platelet suspensions were used for in vitro studies. Furthermore, platelet thrombus formation induced by irradiation of mesenteric venules with filtered light in mice pretreated with fluorescein sodium was used for an in vivo thrombotic study. Morphine concentration dependently (0.6, 1, and 5 microM) potentiated platelet aggregation and the ATP release reaction stimulated by agonists (i.e., collagen and U46619) in washed human platelets. Yohimbine (0.1 microM), a specific alpha(2)-adrenoceptor antagonist, markedly abolished the potentiation of morphine in platelet aggregation stimulated by agonists. Morphine also potentiated phosphoinositide breakdown and intracellular Ca(2+) mobilization in human platelets stimulated by collagen (1 microg/ml). Moreover, morphine (0.6-5 microM) markedly inhibited prostaglandin E(1) (10 microM)-induced cyclic AMP formation in human platelets, while yohimbine (0.1 microM) significantly reversed the inhibition of cyclic AMP by morphine (0.6 and 1 microM) in this study. The thrombin-evoked increase in pH(i) was markedly potentiated in the presence of morphine (1 and 5 microM). Morphine (2 and 5 mg/g) significantly shortened the time require to induce platelet plug formation in mesenteric venules. We concluded that morphine may exert its potentiation in platelet aggregation by binding to alpha(2)-adrenoceptors in human platelets, with a resulting inhibition of adenylate cyclase, thereby reducing intracellular cyclic AMP formation followed by increased activation of phospholipase C and the Na(+)/H(+) exchanger. This leads to increased intracellular Ca(2+) mobilization, and finally potentiation of platelet aggregation and of the ATP release reaction.  相似文献   

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