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1.
胆固醇逆转运相关蛋白基因在骨骼肌的表达   总被引:1,自引:0,他引:1  
构建载脂蛋白AI(apoAI)、载脂蛋白E(apoE)和卵磷脂胆固醇酰基转移酶(LCAT)的病毒或非病毒载体,分别转染离体成肌细胞或直接注入小鼠骨骼肌,观察其表达程序及分泌人血等情况,探讨借用骨骼肌异源表达这些在胆固醇逆转运中起关键作用的重要候选基因,进而发展一种简易安全基因治疗方法的可能性。结果显示,质粒表达载体pCMVapoE3和重组腺病毒载体Ad-RSV-apoAI在原代培养小鼠成肌细胞和成  相似文献   

2.
目的:构建神经生长因子(NGF)的慢病毒表达载体,并观察其转染人脐带间充质干细胞后的表达情况。方法:采用实时定量PCR(RT-PCR)方法获取NGF基因编码片段,并将构建的慢病毒载体质粒与包装质粒和包膜质粒共转染293T细胞,包装生产慢病毒。应用相同滴度的慢病毒转导等量间充质干细胞(MSCs),观察转染后细胞的生长形态及生长曲线,再采用RT-PCR、Western Blot方法检测NGF m RNA、蛋白质的表达水平。结果:经PCR、酶切和测序结果证明成功构建NGF基因重组慢病毒载体。同时NGF基因重组慢病毒载体能够成功转染人脐带间充质干细胞,转染率达95.35%,转染后干细胞在NGF m RNA及蛋白质的表达方面较对照组明显升高,同时经倒置显微镜观察及生长曲线实验证实转染后干细胞的生长与对照组相比无明显差异。结论:重组NGF的慢病毒表达载体能够高效的转染人脐带间充质干细胞,基因转染后干细胞的增殖分化能力与未转染细胞差异无统计学意义,可作为一种高效的干细胞转染方法。  相似文献   

3.
基因治疗为治疗先天性遗传疾病和严重后天获得性疾病提供了一条新途径.目前,基因载体分为两类:病毒载体和非病毒载体.病毒载体转染效率高,但由于某些病毒载体存在免疫原性、致癌性、宿主DNA插入整合等缺点,从而限制了它们的应用.非病毒载体具有价格低、制备简单、安全有效、无免疫原性等优点,成为基因载体研究的热点.阳离子多聚物是非病毒载体的典型代表.文中综述近年来阳离子多聚物作为基因载体的研究现状和进展,重点介绍了阳离子多聚物基因载体的分类和与DNA的相互作用和传递机制.  相似文献   

4.
介导siRNA传递的非病毒载体及其研究进展   总被引:1,自引:0,他引:1  
RNA干扰(RNAi)是一种疾病治疗的新途径,其中小干扰RNA(siRNA)可破坏mRNA的完整性,抑制疾病相关基因的表达,而开发安全有效的siRNA传递载体仍面临巨大挑战。相较于病毒载体系统,非病毒载体系统安全性高、负载量大、生物相容性好,更适用于疾病治疗。综述了可用于siRNA传递的一些非病毒载体(包括脂质体、细胞穿膜肽、水凝胶、树枝状大分子、磷酸钙、碳纳米管等),阐述了载体与siRNA的结合,靶向疾病组织或细胞并诱导特异基因沉默的机制、瓶颈问题等。  相似文献   

5.
骨骼肌基因靶向转移研究进展   总被引:1,自引:0,他引:1  
近年来,骨骼肌靶向基因转移主要有两条途径;一是间接体外基因修饰成肌细胞后将植入骨骼肌组织;二是直接体内骨骼肌内注射,原位转染成熟的非分裂肌细胞。间接体外实验周期长,临床适用性较差,但易获得较高水平和较长期的外源性基因的体内表达;直接体内法直接简便,接近临床应用的实际情况,本文对两条途径进行的基因免疫,基因治疗及外源性基因在骨骼肌中表达的调控有关进展进行了一综述。  相似文献   

6.
非病毒载体在基因表达质粒,反义寡核苷酸或反义表达质粒直核细胞的靶向转移中,有着病毒载体不可替代的作用,对这方面的研究人们投入了很大的精力,以期在基因治疗方面有所突破。本文综述了近年来非病毒载体的研究现状,分别阐明了质粒DNA肌肉注射,脂质体载体、多聚阳离子载体、多肽导向载体以及嵌合载体,指出了非病毒载体亟需发展这外以及病毒载体与非病毒载体联合发展的必要性。  相似文献   

7.
一项新研究提出,将细胞生长因子基因的额外拷贝导入阿尔茨海默病病人脑中,可减缓脑退行性变.阿尔茨海默病杀死神经元,而神经元协调全身神经系统信息信号发出.该项研究中所加入的基因,编码神经生长因子(NGF),它为一种蛋白质,作用是维持神经元的生存,并促进神经元之间的信号传递.该基因的载体是病人自身的皮肤细胞.研究者从8位诊断为早期阿尔茨海默病的病人身上,每人取下一小块皮肤,并用无复制能力的病毒将携带人的NGF的基因转移到皮肤细胞中去.然后,科学家将经基因修饰的皮肤细胞注射到每个病人脑中.其中有2个病人因手术后发生脑出血,而被…  相似文献   

8.
《基因转移和表达:实验室手册》(Gene transfer and expression:a laboratorymanual)由Michael Kriegler著,1990年Stockton出版社出版,242页。该书是本综合性手册,描述了外源基因导入哺乳动物细胞最佳表达,病毒和细胞顺式作用成份及最新颖的表达载体。其中包括选择转移基因导入哺乳动物最优程序、基因转移和表达的分析。它详细地叙述了制备细胞和细胞系的基本技术;DNA转移技术;药物筛选和基因放大技术;表达克隆;减性杂交及逆病毒—传递基因转移技术。其它还有应用同位素和非  相似文献   

9.
RNA复制子是一种能自主复制的RNA载体,保留了病毒非结构蛋白(复制/转录酶)基因,而结构蛋白基因缺失或由外源抗原基因替代,复制/转录酶可控制载体RNA在细胞质中高水平复制以及外源基因的高水平表达。在黄病毒属病毒感染性克隆基础上,其复制子载体得到了成功的构建。黄病毒属病毒复制子为病毒基因组结构功能研究、表达载体构建、假病毒包装及新型疫苗制备等提供了新的技术平台。本文综述黄病毒属病毒复制子的构建原理、方法及应用。  相似文献   

10.
近年来,随着基因治疗技术的不断进步,为心肌缺血的治疗开辟了一条全新的途径,并取得了一些令人鼓舞的进展。基因治疗主要包括治疗基因、基因转移载体以及基因导入途径三个方面。基因转移载体又在治疗基因和基因表达之间起着桥梁作用,因此,发展安全、高效的基因转移系统是基因治疗的关键之一。目前用于基因治疗心肌缺血基因转移的载体主要有病毒载体和非病毒载体。下面将就不同载体在心肌缺血的基因治疗中的应用进展进行简要的总结。  相似文献   

11.
Injury to the rat sciatic nerve leads to the induction of nerve growth factor (NGF) receptors on the denervated Schwann cells and their disappearance on the regenerating axons of the axotomized, normally NGF-sensitive sensory and sympathetic neurons. This disappearance in the axonal expression and retrograde transport of NGF receptors is associated with a similarly dramatic reduction in the axonal uptake and retrograde transport of NGF following axotomy and during regeneration. In view of the massive NGF synthesis occurring in the injured nerve, these results suggest that, while sensory and sympathetic neurons are the primary targets of NGF in the normal peripheral nervous system, the denervated Schwann cells may become its primary target in the aftermath of nerve injury.  相似文献   

12.
The signaling events regulating the retrograde axonal transport of neurotrophins are poorly understood, but a role for phosphatidylinositol kinases has been proposed. In this study, we used phenylarsine oxide (PAO) to examine the participation of phosphatidylinositol 4-kinases in nerve growth factor (NGF) retrograde axonal transport within sympathetic and sensory neurons. The retrograde transport of 125I-labeled betaNGF was inhibited by PAO (0.5-2 nmol/eye), and this effect was diminished by dilution. Coinjection of 2,3-dimercaptopropanol with PAO reduced its ability to inhibit 125I-betaNGF retrograde transport. PAO (20 nM to 200 microM) also inhibited NGF-dependent survival of both sympathetic and sensory neuronal populations. F-actin staining in sympathetic and sensory neuronal growth cones was disrupted by PAO at 10 and 2 nM, respectively, and occurred within 5 min of exposure to the drug. The actin inhibitor latrunculin A also rapidly affected F-actin staining in vitro and reduced 125I-betaNGF retrograde axonal transport in vivo to the same extent as PAO. These results suggest that both phosphatidylinositol 4-kinase isoforms and the actin cytoskeleton play significant roles in the regulation of 125I-betaNGF retrograde axonal transport in vivo.  相似文献   

13.
We evaluated the feasibility of gene delivery into the peripheral and central nervous systems via retrograde axonal transport following injection of a haemagglutinating virus of Japan (HVJ)-liposome-DNA complex vector into an innervated muscle. Transfection efficiency was assessed by measuring luciferase activity, and was compared statistically with that achieved using a liposome-DNA control vector. High luciferase activity was observed in the injected muscle, the ipsilateral sciatic nerve, and the ipsilateral dorsal root ganglia on day 1 after gene transfer. The spinal cord also showed luciferase activity, although this was lower than in the other tissues. However, no activity was observed in the contralateral sciatic nerve or the contralateral dorsal root ganglia. In addition, we performed gene transfer twice, with a 1-week interval, to evaluate the feasibility of repeated therapeutic gene delivery. Again, a high transfection efficiency was observed immediately, even after the second gene transfer, and transfection efficiency was significantly higher at each defined time-point using the HVJ-liposome complex vector than using a control vector. These results indicate that this method could be used for repeated therapeutic gene delivery into muscle, nerve, dorsal root ganglia, and possibly spinal cord, without the need for a surgical approach, making it well suited to clinical applications.  相似文献   

14.
The levels of nerve growth factor (NGF) and its mRNA in the rat central nervous system were determined by two-site enzyme immunoassay and quantitative Northern blots, respectively. Relatively high NGF levels (0.4-1.4 ng NGF/g wet weight) were found both in the regions innervated by the magnocellular cholinergic neurons of the basal forebrain (hippocampus, olfactory bulb, neocortex) and in the regions containing the cell bodies of these neurons (septum, nucleus of the diagonal band of Broca, nucleus basalis of Meynert). Comparatively low, but significant NGF levels (0.07-0.21 ng NGF/g wet weight) were found in various other brain regions. mRNANGF was found in the hippocampus and cortex but not in the septum. This suggests that magnocellular cholinergic neurons of the basal forebrain are supplied with NGF via retrograde axonal transport from their fields of innervation. These results, taken together with those of previous studies showing that these neurons are responsive to NGF, support the concept that NGF acts as trophic factor for magnocellular cholinergic neurons.  相似文献   

15.
目的考察神经生长因子对视神经损害的疗效。方法腹腔注射二硫化碳致视神经损害的大鼠模型,给药组球后注射或肌内注射神经生长因子,每天一次,每周6d,共计3周,空白对照组球后注射等量生理盐水,于治疗前后测定大鼠模式翻转(FREP)和闪光视觉诱发电位。结果球后注射高剂量组大鼠在治疗10d和20d时各波潜伏时比对照组有显著缩短,而球后注射低剂量组和肌内注射高剂量组大鼠于治疗10d时FVEP各波潜伏时也显著缩短,肌内注射低剂量组大鼠于治疗20d时FEP的P1和P2波潜伏时也显著或非常显著缩短。结论神经生长因子对大鼠视神经损害有明显的治疗作用。  相似文献   

16.

Background

Gene transduction has been considered advantageous for the sustained delivery of proteins to specific target tissues. However, in the case of hard tissues, such as bone, local gene delivery remains problematic owing to anatomical accessibility limitations of the target sites.

Methodology/Principal Findings

Here, we evaluated the feasibility of exogenous gene transduction in the interior of bone via axonal transport following intramuscular administration of a nonviral vector. A high expression level of the transduced gene was achieved in the tibia ipsilateral to the injected tibialis anterior muscle, as well as in the ipsilateral sciatic nerve and dorsal root ganglia. In sciatic transection rats, the gene expression level was significantly lowered in bone.

Conclusions/Significance

These results suggest that axonal transport is critical for gene transduction. Our study may provide a basis for developing therapeutic methods for efficient gene delivery into hard tissues.  相似文献   

17.
Nerve growth factor: Cellular localization and regulation of synthesis   总被引:1,自引:0,他引:1  
1. The role of nerve growth factor (NGF) as a retrograde messenger between peripheral target tissues and innervating sympathetic and neural crest-derived sensory neurons is supported by the observations that (a) the interruption of retrograde axonal transport has the same effects as the neutralization of endogenous NGF by anti-NGF antibodies and (b) the close correlation between the density of innervation by fibers of NGF-responsive neurons and the levels of NGF and mRNANGF in their target organs. 2. In situ hybridization experiments have demonstrated that a great variety of cells in the projection field or NGF-responsive neurons is synthesizing NGF, among them epithelial cells, smooth muscle cells, fibroblasts, and Schwann cells. 3. The temporal correlation between the growth of trigeminal sensory fibers into the whisker pad of the mouse and the commencement of NGF synthesis initially suggested a causal relationship between these two events. However, in chick embryos rendered aneural by prior removal of the neural tube or the neural crest, it was shown that the onset of NGF synthesis in the periphery is independent of neurons, and is controlled by an endogenous "clock" whose regulatory mechanism remains to be established. 4. A comparison between NGF synthesis in the nonneuronal cells of the newborn rat sciatic nerve and that in the adult sciatic nerve after lesion provided evidence for the important regulatory role played by a secretory product of activated macrophages. The identity of this product is currently under investigation.  相似文献   

18.
We previously demonstrated that the immature rat ovary synthesizes nerve growth factor (NGF), and that interference of NGF actions by immunoneutralization during neonatal life prevents development of the ovarian sympathetic innervation and delays follicular maturation. Since the actions of NGF are exerted via binding to specific cell surface receptors, the present study was undertaken to define and characterize the presence of NGF receptors (NGFrec) in the developing rat ovary. NGF interacts with two classes of NGFrec. The most abundant is a low affinity form expressed in the central nervous system and peripheral tissues. This receptor is encoded by a single 3.8-kilobase mRNA species. Cross-linking of [125I]NGF to ovarian membranes followed by immunoprecipitation, sodium dodecyl sulfate-polyacrylamide gel electrophoresis, and autoradiography showed the presence of a approximately 90-kilodalton molecular species which corresponds in size to the predominant NGF receptor species cross-linked to its ligand. While ovarian NGFrec may be of neuronal origin and reach the gland exclusively by anterograde axonal transport, RNA blot hybridization demonstrated that the ovary expresses the NGFrec mRNA species that encodes the low affinity NGF receptor and, thus, implicated the ovary itself as a site of NGFrec synthesis. NGFrec mRNA levels decreased abruptly after the first ovulation, suggesting that NGFrec may be synthesized in growing follicles and that this capacity is lost after follicular rupture and luteinization.(ABSTRACT TRUNCATED AT 250 WORDS)  相似文献   

19.
Cell adhesion molecules of the immunoglobulin superfamily (IgCAMs) have been shown to modulate growth factor signaling and follow complex trafficking pathways in neurons. Similarly, several growth factors, including members of the neurotrophin family, undergo axonal retrograde transport that is required to elicit their full signaling potential in neurons. We sought to determine whether IgCAMs that enter the axonal retrograde transport route co-operate with neurotrophin signaling. We identified activated leukocyte cell adhesion molecule (ALCAM), a protein involved in axon pathfinding and development of the neuromuscular junction, to be associated with an axonal endocytic compartment that contains neurotrophins and their receptors. Although ALCAM enters carriers that are transported bidirectionally in motor neuron axons, it is predominantly co-transported with the neurotrophin receptor p75(NTR) toward the cell body. ALCAM was found to specifically potentiate nerve growth factor (NGF)-induced differentiation and signaling. The extracellular domain of ALCAM is both necessary and sufficient to potentiate NGF-induced neurite outgrowth, and its homodimerization is required for this novel role. Our findings indicate that ALCAM synergizes with NGF to induce neuronal differentiation, raising the possibility that it functions not only as an adhesion molecule but also in the modulation of growth factor signaling in the nervous system.  相似文献   

20.
神经生长因子是神经营养因子家族成员之一,对不同时期神经元的存活、分化、生长及损伤后的修复和再生都有着十分重要的作用。不仅在神经系统中,随着人类的其他正常和肿瘤组织中同样也检测得到了NGF,神经生长因子在各方面的应用也得到了重视并均已得到了证实。NGF功能的发挥离不开与其受体的结合,根据NGF表面糖蛋白与凝集素结合能力的不同,其受体可被分为高亲和力受体酪氨酸激酶A和低亲和力受体p75。Trk A与NGF结合后所介导的信号通路主要有:1MAPK通路;2PLC-γ通路;3PI3K/PKB通路。而p75与NGF结合介导的信号传导通路主要包括:1NF-κB通路;2JNK-p53-Bax凋亡通路;3神经酰胺通路。Trk A一般介导的是正性信号,如促进神经细胞生长、维持神经细胞的存活等;而p75既可促进神经细胞存活,也可诱导神经细胞凋亡,但以后者为主。当Trk A与p75同时表达时,Trk A可抑制p75诱导细胞凋亡,使受损神经细胞大量增殖,所以其生物学总效应是促进神经细胞的生长和存活。  相似文献   

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