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1.
Neurofilament (NF) proteins are distributed in a diminishing proximodistal gradient along rat sciatic nerve when compared with total noncollagen or other proteins in nerve. About a twofold decline of NF proteins can be detected by quantitating nerve proteins that have been separated by gel electrophoresis. A similar decrease of immunoreactivity to each NF subunit is seen in distal nerve segments when noncollagen nerve proteins are immunoblotted. Parallel decreases occur in all three NF proteins, thereby maintaining neurofilament subunit stoichiometry along the neuraxis. The same NF gradient can be detected when the NF contents in nerve branches to the gluteus and gastrocnemius muscles are compared with each other and with those in nerve segments taken from the same proximodistal levels of the parent sciatic nerve. The gradient of NF proteins increases during postnatal development and is readily detected by postnatal day 16. During the same period of development, the heavy NF subunit appears for the first time and is rapidly incorporated throughout the sciatic nerve. Hence, the NF gradient becomes manifest during the development and maturation of the adult form of the axonal cytoskeleton. The basis for the proximodistal gradient of NF proteins in peripheral nerve is presently unknown. The extent of the gradient cannot be accounted for on the basis of diminishing numbers of nerve fibers or increasing amounts of other nerve proteins, e.g., collagen, in distal nerve. An alternative interpretation is that the gradient reflects a low level of NF protein turnover during axonal transport.  相似文献   
2.
Importin β1 (KPNB1) is a nucleocytoplasmic transport factor with critical roles in both cytoplasmic and nucleocytoplasmic transport, hence there is keen interest in the characterization of its subcellular interactomes. We found limited efficiency of BioID in the detection of importin complex cargos and therefore generated a highly specific and sensitive anti-KPNB1 monoclonal antibody to enable biotinylation by antibody recognition analysis of importin β1 interactomes. The monoclonal antibody recognizes an epitope comprising residues 301-320 of human KPBN1 and strikingly is highly specific for cytoplasmic KPNB1 in diverse applications, with little reaction with KPNB1 in the nucleus. Biotinylation by antibody recognition with this novel antibody revealed numerous new interactors of importin β1, expanding the KPNB1 interactome to cytoplasmic and signaling complexes that highlight potential new functions for the importins complex beyond nucleocytoplasmic transport. Data are available via ProteomeXchange with identifier PXD032728.  相似文献   
3.
条件培养液中含有细胞分泌的活性物质,因此,条件培养液可再现体外培养细胞或组织的微环境,促进或抑制来源不同的细胞或组织的生长、增殖和分化,也被用于研究各种生理或病理现象的机制。当前,国内外研究较多的有乳腺癌细胞系MDA-MB-231细胞、骨髓内皮细胞、坐骨神经和肝细胞等的条件培养液。  相似文献   
4.
目的观察Tropic1808基因重组蛋白对坐骨神经损伤后再生的影响。方法SD大鼠16只,分为Tropic1808基因重组蛋白组和生理盐水组,切断左侧坐骨神经,硅胶管套接后两神经断端间距10mm,再生室内注入Tropic 1808基因重组蛋白液(500μg/ml)或生理盐水13μl。术后每4周做一次足迹试验,16周时作神经干动作电位、脊髓前角运动神经元数、腓肠肌纤维截面积、硅胶管中段再生神经等检测。结果Tropic1808基因重组蛋白组SFI的恢复、神经干动作电位、脊髓前角运动神经元数、腓肠肌纤维截面积、硅胶管中段再生神经有髓神经纤维数等结果均明显优于生理盐水组,有统计学意义。电镜观察表明Tropic1808组再生轴突较NS组粗,髓鞘较生理盐水组厚。结论Tropic1808基因重组蛋白有促进大鼠坐骨神经再生的作用。  相似文献   
5.
Abstract

A nanofibrous PHBV nerve conduit has been used to evaluate its efficiency based on the promotion of nerve regeneration in rats. The designed conduits were investigated by physical, mechanical and microscopic analyses. The conduits were implanted into a 30-mm gap in the sciatic nerves of the rats. Four months after surgery, the regenerated nerves were evaluated by macroscopic assessments and histology. This polymeric conduit had sufficiently high mechanical properties to serve as a nerve guide. The results demonstrated that in the nanofibrous graft with cells, the sciatic nerve trunk had been reconstructed with restoration of nerve continuity and formatted nerve fibers with myelination. For the grafts especially the nanofibrous conduits with cells, muscle cells of gastrocnemius on the operated side were uniform in their size and structures. This study proves the feasibility of artificial conduit with Schwann cells for nerve regeneration by bridging a longer defect in a rat model.  相似文献   
6.
目的:观察人参皂苷Rg2对慢性坐骨神经损伤大鼠痛觉敏化、抑郁状态的影响。方法: 将50只 SD 大鼠随机分为 5组(n=10): 空白对照组(Normal+生理盐水腹腔注射)、假手术组(手术但不结扎+生理盐水腹腔注射) 、坐骨神经慢性压迫损伤(CCI)组(CCI +生理盐水腹腔注射) 、人参皂苷Rg2低剂量组(CCI+ Rg2 5 mg/kg腹腔注射)、人参皂苷Rg2高剂量组(CCI+ Rg2 10 mg/kg 腹腔注射)。CCI模型建立后,药物通过注射器进行腹腔内注射 5 ml/kg,每天1次,连续14 d。分别在术前1 d和术后 1、3、5、7、10、14 d测定大鼠的机械性缩足反射阈值(MWT)和热缩足潜伏期(TWL);术前1 d和术后第14日时检测明暗箱实验和强迫游泳试验。 结果:与假手术组比较,CCI组术后14 d机械痛阈值和热痛潜伏期明显缩短(P<0.01),明箱内停留时间明显缩短(P<0.01),穿梭次数明显减少(P<0.01),游泳潜伏期明显延长(P<0.01)。与CCI组比较,人参皂苷Rg2组术后14 d机械痛阈和热痛潜伏期明显增加(P<0.01),大鼠在明箱内时间明显延长(P<0.01),穿梭次数明显增多(P<0.01),且游泳潜伏期明显缩短(P<0.01)。结论:人参皂苷Rg2能抑制 CCI 大鼠的机械痛敏和热痛敏,同时改善其抑郁状态。  相似文献   
7.
Alternative splicing (AS) regulates a variety of biological activities in numerous tissues and organs, including the nervous system. However, the existence and specific roles of AS events during peripheral nerve repair and regeneration remain largely undetermined. In the current study, by mapping splice-crossing sequence reads, we identified AS events and relevant spliced genes in rat sciatic nerve stumps following sciatic nerve crush. AS-related genes at 1, 4, 7, and 14 days post nerve crush were compared with those at 0 day to discover alternatively spliced genes induced by sciatic nerve crush. These injury-induced alternatively spliced genes were then categorized to diseases and biological functions, genetic networks, and canonical signaling pathways. Bioinformatic analysis indicated that these alternatively spliced genes were mainly correlated to immune response, cellular growth, and cellular function maintenance. Our study elucidated AS events following peripheral nerve injury and might help deepen our understanding of the molecular mechanisms underlying peripheral nerve regeneration.  相似文献   
8.
Basic fibroblast growth factor (FGF‐2) is expressed in the peripheral nervous system and is up‐regulated after nerve lesion. It has been demonstrated that administration of FGF‐2 protects neurons from injury‐induced cell death and promotes axonal regrowth. Using transgenic mice over‐expressing FGF‐2 (TgFGF‐2), we addressed the importance of endogenously generated FGF‐2 on sensory neuron loss and sciatic nerve regeneration. After sciatic nerve transection, wild‐type and transgenic mice showed the same degree of cell death in L5 spinal ganglia. Also, the number of chromatolytic, eccentric, and pyknotic sensory neurons was not changed under elevated levels of FGF‐2. Morphometric evaluation of intact nerves from TgFGF‐2 mice revealed no difference in number and size of myelinated fibers compared to wild‐type mice. One week after crush injury, the number of regenerated axons was doubled and the myelin thickness was significantly smaller in transgenic mice. After 2 and 4 weeks, morphometric analysis and functional tests revealed no differences in recovery of sensory and motor nerve fibers. To study the role of FGF‐2 over‐expression on Schwann cell proliferation during the early regeneration process, we used BrdU‐labeling to mark dividing cells. In transgenic mice, the number of proliferating cells was significantly increased distal to the crush site compared to wild‐types. We propose that endogenously synthesized FGF‐2 influences early peripheral nerve regeneration by regulating Schwann cell proliferation, axonal regrowth, and remyelination. © 2006 Wiley Periodicals, Inc. J Neurobiol, 2006  相似文献   
9.
10.
Generator of spatial magnetic field is one of most recent achievements among the magnetostimulators. This apparatus allows to obtain the rotating magnetic field. This new method may be more effective than other widely used techniques of magnetostimulation and magnetotherapy. We investigated the influence of alternating, spatial magnetic field on the regeneration of the crushed rat sciatic nerves. Functional and morphological evaluations were used. After crush injury of the right sciatic nerve, Wistar C rats (n?=?80) were randomly divided into four groups (control and three experimental). The experimental groups (A, B, C) were exposed (20?min/day, 5?d/week, 4 weeks) to alternating spatial magnetic field of three different intensities. Sciatic Functional Index (SFI) and tensometric assessments were performed every week after nerve crush. Forty-eight hours before the sacrificing of animals, DiI (1,1’-di-octadecyl-3,3,3’,3’-tetramethyloindocarbocyanine perchlorate) was applied 5?mm distally to the crush site. Collected nerves and dorsal root ganglia (DRG) were subjected to histological and immunohistochemical staining. The survival rate of DRG neurons was estimated. Regrowth and myelination of the nerves was examined. The results of SFI and tensometric assessment showed improvement in all experimental groups as compared to control, with best outcome observed in group C, exposed to the strongest magnetic field. In addition, DRG survival rate and nerve regeneration intensity were significantly higher in the C group. Above results indicate that strong spatial alternating magnetic field exerts positive effect on peripheral nerve regeneration and its application could be taken under consideration in the therapy of injured peripheral nerves.  相似文献   
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