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Silk-based nerve guidance conduits with macroscopic holes modulate the vascularization of regenerating rat sciatic nerve
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作者 Carina Hromada Patrick Heimel +10 位作者 Markus Kerbl LászlóGál Sylvia Nürnberger Barbara Schaedl James Ferguson Nicole Swiadek Xavier Monforte Johannes C.Heinzel Antal Nógrádi Andreas H.Teuschl-Woller David Hercher 《Neural Regeneration Research》 SCIE CAS 2025年第6期1789-1800,共12页
Peripheral nerve injuries induce a severe motor and sensory deficit. Since the availability of autologous nerve transplants for nerve repair is very limited, alternative treatment strategies are sought, including the ... Peripheral nerve injuries induce a severe motor and sensory deficit. Since the availability of autologous nerve transplants for nerve repair is very limited, alternative treatment strategies are sought, including the use of tubular nerve guidance conduits(tNGCs). However, the use of tNGCs results in poor functional recovery and central necrosis of the regenerating tissue, which limits their application to short nerve lesion defects(typically shorter than 3 cm). Given the importance of vascularization in nerve regeneration, we hypothesized that enabling the growth of blood vessels from the surrounding tissue into the regenerating nerve within the tNGC would help eliminate necrotic processes and lead to improved regeneration. In this study, we reported the application of macroscopic holes into the tubular walls of silk-based tNGCs and compared the various features of these improved silk^(+) tNGCs with the tubes without holes(silk^(–) tNGCs) and autologous nerve transplants in an 8-mm sciatic nerve defect in rats. Using a combination of micro-computed tomography and histological analyses, we were able to prove that the use of silk^(+) tNGCs induced the growth of blood vessels from the adjacent tissue to the intraluminal neovascular formation. A significantly higher number of blood vessels in the silk^(+) group was found compared with autologous nerve transplants and silk^(–), accompanied by improved axon regeneration at the distal coaptation point compared with the silk^(–) tNGCs at 7 weeks postoperatively. In the 15-mm(critical size) sciatic nerve defect model, we again observed a distinct ingrowth of blood vessels through the tubular walls of silk^(+) tNGCs, but without improved functional recovery at 12 weeks postoperatively. Our data proves that macroporous tNGCs increase the vascular supply of regenerating nerves and facilitate improved axonal regeneration in a short-defect model but not in a critical-size defect model. This study suggests that further optimization of the macroscopic holes silk^(+) tNGC approach containing macroscopic holes might result in improved grafting technology suitable for future clinical use. 展开更多
关键词 axon regeneration blood vessel functional recovery macroporous nerve lesion peripheral nerve repair sciatic nerve silk-based nerve guidance conduit VASCULARIZATION
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The interaction of stem cells and vascularity in peripheral nerve regeneration 被引量:4
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作者 Sara Saffari Tiam M.Saffari +2 位作者 Dietmar J.O.Ulrich Steven E.R.Hovius Alexander Y.Shin 《Neural Regeneration Research》 SCIE CAS CSCD 2021年第8期1510-1517,共8页
The degree of nerve regeneration after peripheral nerve injury can be altered by the microenvironment at the site of injury. Stem cells and vascularity are postulated to be a part of a complex pathway that enhances pe... The degree of nerve regeneration after peripheral nerve injury can be altered by the microenvironment at the site of injury. Stem cells and vascularity are postulated to be a part of a complex pathway that enhances peripheral nerve regeneration;however, their interaction remains unexplored. This review aims to summarize current knowledge on this interaction, including various mechanisms through which trophic factors are promoted by stem cells and angiogenesis. Angiogenesis after nerve injury is stimulated by hypoxia, mediated by vascular endothelial growth factor, resulting in the growth of preexisting vessels into new areas. Modulation of distinct signaling pathways in stem cells can promote angiogenesis by the secretion of various angiogenic factors. Simultaneously, the importance of stem cells in peripheral nerve regeneration relies on their ability to promote myelin formation and their capacity to be influenced by the microenvironment to differentiate into Schwann-like cells. Stem cells can be acquired through various sources that correlate to their differentiation potential, including embryonic stem cells, neural stem cells, and mesenchymal stem cells. Each source of stem cells serves its particular differentiation potential and properties associated with the promotion of revascularization and nerve regeneration. Exosomes are a subtype of extracellular vesicles released from cell types and play an important role in cell-to-cell communication. Exosomes hold promise for future transplantation applications, as these vesicles contain fewer membrane-bound proteins, resulting in lower immunogenicity. This review presents pre-clinical and clinical studies that focus on selecting the ideal type of stem cell and optimizing stem cell delivery methods for potential translation to clinical practice. Future studies integrating stem cell-based therapies with the promotion of angiogenesis may elucidate the synergistic pathways and ultimately enhance nerve regeneration. 展开更多
关键词 ANGIOGENESIS EXOSOMES nerve graft nerve regeneration peripheral nerve injury REVASCULARIZATION Schwann cells stem cells stem cell delivery VASCULARITY
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Sustained delivery of vascular endothelial growth factor mediated by bioactive methacrylic anhydride hydrogel accelerates peripheral nerve regeneration after crush injury 被引量:3
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作者 Wanlin Xu Yifan Wu +3 位作者 Hao Lu Yun Zhu Jinhai Ye Wenjun Yang 《Neural Regeneration Research》 SCIE CAS CSCD 2022年第9期2064-2071,共8页
Neurotrophic factors,currently administered orally or by intravenous drip or intramuscular injection,are the main method for the treatment of peripheral nerve crush injury.However,the low effective drug concentration ... Neurotrophic factors,currently administered orally or by intravenous drip or intramuscular injection,are the main method for the treatment of peripheral nerve crush injury.However,the low effective drug concentration arriving at the injury site results in unsatisfactory outcomes.Therefore,there is an urgent need for a treatment method that can increase the effective drug concentration in the injured area.In this study,we first fabricated a gelatin modified by methacrylic anhydride hydrogel and loaded it with vascular endothelial growth factor that allowed the controlled release of the neurotrophic factor.This modified gelatin exhibited good physical and chemical properties,biocompatibility and supported the adhesion and proliferation of RSC96 cells and human umbilical vein endothelial cells.When injected into the epineurium of crushed nerves,the composite hydrogel in the rat sciatic nerve crush injury model promoted nerve regeneration,functional recovery and vascularization.The results showed that the modified gelatin gave sustained delivery of vascular endothelial growth factors and accelerated the repair of crushed peripheral nerves. 展开更多
关键词 bioactive material controlled release crush injury HYDROGEL muscle function nerve regeneration peripheral nerve sciatic function index vascular endothelial growth factor VASCULARIZATION
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Animal models of vascularized nerve grafts:a systematic review 被引量:1
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作者 Francesca Toia Daniele Matta +2 位作者 Federico De Michele Roberto Pirrello Adriana Cordova 《Neural Regeneration Research》 SCIE CAS CSCD 2023年第12期2615-2618,共4页
The aim of this review is to present and compare the various animal models of vascularized nerve grafts described in the literature as well as to summarize preclinical evidence for superior functional results compared... The aim of this review is to present and compare the various animal models of vascularized nerve grafts described in the literature as well as to summarize preclinical evidence for superior functional results compared to non-vascularized free nerve grafts. We also will present the state of the art on prefabricated vascularized nerve grafts. A systematic literature review on vascularized nerve graft models was conducted via the retrieval with the Pub Med database on March 30, 2019. Data on the animal, nerve, and vascularization model, the recipient bed, the evaluation time points and methods, and the results of the study results were extracted and analyzed from selected articles. The rat sciatic nerve was the most popular model for vascularized nerve grafts, followed by the rabbit;however, rabbit models allow for longer nerve grafts, which are suitable for translational evaluation, and produced more cautious results on the superiority of vascularized nerve grafts. Compared to free nerve grafts, vascularized nerve grafts have better early but similar long-term results, especially in an avascular bed. There are few studies on avascular receiving beds and prefabricated nerve grafts. The clinical translation potential of available animal models is limited, and current experimental knowledge cannot fully support that the differences between vascularized nerve grafts and free nerve grafts yield a clinical advantage that justifies the complexity of the procedure. 展开更多
关键词 nerve animal models nerve grafts nerve regeneration peripheral nerves prefabricated vascularized nerve grafts vascularized nerve grafts
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Optimal duration of percutaneous microballoon compression for treatment of trigeminal nerve injury 被引量:19
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作者 Fuyong Li Shuai Han +3 位作者 Yi Ma Fuxin Yi Xinmin Xu Yunhui Liu 《Neural Regeneration Research》 SCIE CAS CSCD 2014年第2期179-189,共11页
Percutaneous microballoon compression of the trigeminal ganglion is a brand new operative technique for the treatment of trigeminal neuralgia. However, it is unclear how the procedure mediates pain relief, and there a... Percutaneous microballoon compression of the trigeminal ganglion is a brand new operative technique for the treatment of trigeminal neuralgia. However, it is unclear how the procedure mediates pain relief, and there are no standardized criteria, such as compression pressure, com- pression time or balloon shape, for the procedure. In this study, percutaneous microballoon compression was performed on the rabbit trigeminal ganglion at a mean inflation pressure of 1,005 + 150 mmHg for 2 or 5 minutes. At 1, 7 and 14 days after percutaneous microballoon compression, the large-diameter myelinated nerves displayed axonal swelling, rupture and demy- elination under the electron microscope. Fragmentation of myelin and formation of digestion chambers were more evident after 5 minutes of compression. Image analyzer results showed that the diameter of trigeminal ganglion cells remained unaltered after compression. These experi- mental findings indicate that a 2-minute period of compression can suppress pain transduction. Immunohistochemical staining revealed that vascular endothelial growth factor expression in the ganglion cells and axons was significantly increased 7 days after trigeminal ganglion compression, however, the changes were similar after 2-minute compression and 5-minute compression. The upregulated expression of vascular endothelial growth factor in the ganglion cells after percu- taneous microballoon compression can promote the repair of the injured nerve. These findings suggest that long-term compression is ideal for patients with recurrent trigeminal neuralgia. 展开更多
关键词 nerve regeneration peripheral nerve injury trigeminal neuralgia percutaneous micro-balloon compression trigeminal ganglion cell DEMYELINATION AXONS vascular endothelial growthfactor neural regeneration
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The role of vascularization in nerve regeneration of nerve graft 被引量:9
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作者 Tiam M.Saffari Meiwand Bedar +2 位作者 Caroline A.Hundepool Allen T.Bishop Alexander Y.Shin 《Neural Regeneration Research》 SCIE CAS CSCD 2020年第9期1573-1579,共7页
Vascularization is an important factor in nerve graft survival and function. The specific molecular regulations and patterns of angiogenesis following peripheral nerve injury are in a broad complex of pathways. This r... Vascularization is an important factor in nerve graft survival and function. The specific molecular regulations and patterns of angiogenesis following peripheral nerve injury are in a broad complex of pathways. This review aims to summarize current knowledge on the role of vascularization in nerve regeneration, including the key regulation molecules, and mechanisms and patterns of revascularization after nerve injury. Angiogenesis, the maturation of pre-existing vessels into new areas, is stimulated through angiogenic factors such as vascular endothelial growth factor and precedes the repair of damaged nerves. Vascular endothelial growth factor administration to nerves has demonstrated to increase revascularization after injury in basic science research. In the clinical setting, vascularized nerve grafts could be used in the reconstruction of large segmental peripheral nerve injuries. Vascularized nerve grafts are postulated to accelerate revascularization and enhance nerve regeneration by providing an optimal nutritional environment, especially in scarred beds, and decrease fibroblast infiltration. This could improve functional recovery after nerve grafting, however, conclusive evidence of the superiority of vascularized nerve grafts is lacking in human studies. A well-designed randomized controlled trial comparing vascularized nerve grafts to non-vascularized nerve grafts involving patients with similar injuries, nerve graft repair and follow-up times is necessary to demonstrate the efficacy of vascularized nerve grafts. Due to technical challenges, composite transfer of a nerve graft along with its adipose tissue has been proposed to provide a healthy tissue bed. Basic science research has shown that a vascularized fascial flap containing adipose tissue and a vascular bundle improves revascularization through excreted angiogenic factors, provided by the stem cells in the adipose tissue as well as by the blood supply and environmental support. While it was previously believed that revascularization occurred from both nerve ends, recent studies propose that revascularization occurs primarily from the proximal nerve coaptation. Fascial flaps or vascularized nerve grafts have limited applicability and future directions could lead towards off-the-shelf alternatives to autografting, such as biodegradable nerve scaffolds which include capillary-like networks to enable vascularization and avoid graft necrosis and ischemia. 展开更多
关键词 ANGIOGENESIS fascial flap nerve graft nerve injury nerve regeneration peripheral nerve vascular endothelial growth factor VASCULARIZATION vascularized nerve graft
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Application of neurotrophic and proangiogenic factors as therapy after peripheral nervous system injury 被引量:9
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作者 Kamilla Faritovna Idrisova Alina Kazymovna Zeinalova +9 位作者 Galina Andreevna Masgutova Alexey Andreevich Bogov Jr. Cinzia Allegrucci Valeriia Yurievna Syromiatnikova Ilnur Ildusovich Salafutdinov Ekaterna Evgenievna Garanina Dina Ivanovna Andreeva Adilet Abdullaatovich Kadyrov Albert Anatolevich Rizvanov Ruslan Faridovich Masgutov 《Neural Regeneration Research》 SCIE CAS CSCD 2022年第6期1240-1247,共8页
The intrinsic ability of peripheral nerves to regenerate after injury is extremely limited,especially in case of severe injury.This often leads to poor motor function and permanent disability.Existing approaches for t... The intrinsic ability of peripheral nerves to regenerate after injury is extremely limited,especially in case of severe injury.This often leads to poor motor function and permanent disability.Existing approaches for the treatment of injured nerves do not provide appropriate conditions to support survival and growth of nerve cells.This drawback can be compensated by the use of gene therapy and cell therapy-based drugs that locally provide an increase in the key regulators of nerve growth,including neurotrophic factors and extracellular matrix proteins.Each growth factor plays its own specific angiotrophic or neurotrophic role.Currently,growth factors are widely studied as accelerators of nerve regeneration.Particularly noteworthy is synergy between various growth factors,that is essential for both angiogenesis and neurogenesis.Fibroblast growth factor 2 and vascular endothelial growth factor are widely known for their proangiogenic effects.At the same time,fibroblast growth factor 2 and vascular endothelial growth factor stimulate neural cell growth and play an important role in neurodegenerative diseases of the peripheral nervous system.Taken together,their neurotrophic and angiogenic properties have positive effect on the regeneration process.In this review we provide an in-depth overview of the role of fibroblast growth factor 2 and vascular endothelial growth factor in the regeneration of peripheral nerves,thus demonstrating their neurotherapeutic efficacy in improving neuron survival in the peripheral nervous system. 展开更多
关键词 fibroblast growth factor 2 growth factors nerve growth factor peripheral nerve injury peripheral nervous system vascular endothelial growth factor
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Angiogenesis and nerve regeneration induced by local administration of plasmid pBud-coVEGF165-coFGF2 into the intact rat sciatic nerve 被引量:5
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作者 Ruslan Masgutov Alina Zeinalova +11 位作者 Alexey Bogov Galina Masgutova Ilnur Salafutdinov Ekaterina Garanina Valeriia Syromiatnikova Kamilla Idrisova Adelya Mullakhmetova Dina Andreeva Liliya Mukhametova Adilet Kadyrov Igor Pankov Albert Rizvanov 《Neural Regeneration Research》 SCIE CAS CSCD 2021年第9期1882-1889,共8页
Vascular endothelial growth factor(VEGF) and fibroblast growth factor 2(FGF2) are well-known growth factors involved in the regeneration of various tissues and organs, including peripheral nerve system. In the present... Vascular endothelial growth factor(VEGF) and fibroblast growth factor 2(FGF2) are well-known growth factors involved in the regeneration of various tissues and organs, including peripheral nerve system. In the present study, we elucidated the local and systemic effects of plasmid construct рBud-coVEGF165-coFGF2 injected into the epineurium of intact rat sciatic nerve. Results of histological examination of sciatic nerve and multiplex immunoassays of serum showed the absence of immunogenicity and biosafety of plasmid рBud-coVEGF165-coFGF2. Moreover, local administration of plasmid DNA construct resulted in significantly decreased levels of pro-inflammatory cytokines in the peripheral blood, including tumor necrosis factor α(TNFα) and interleukin-12, and significantly increased levels of cytokines and chemokines including Regulated upon Activation, Normal T Cell Expressed and Presumably Secrete(RANTES), epidermal growth factor, interleukin-2, and monocyte chemoattractant protein 1. These changes in the peripheral blood on day 7 after injection of plasmid construct рBud-coVEGF165-coFGF2 show that the plasmid construct has systemic effects and may modulate immune response. At the same time, reverse transcriptionpolymerase chain reaction revealed transient expression of coFGF2, coVEGF165, ratFGF2 and ratVEGFA with direct transport of transcripts from distal part to proximal part of the sciatic nerve. Immunohistochemical staining revealed prolonged presence of VEGFA in sciatic nerve till 14 days post-injection. These findings suggest that local administration of plasmid construct рBud-coVEGF165-coFGF2 at a concentration of 30 ng/μL results in the formation of pro-angiogenic stimuli and, and the plasmid construct, used as a drug for gene therapy, might potentially facilitate regeneration of the sciatic nerve. The study was approved by the Animal Ethics Committee of Kazan Federal University, procedures were approved by the Local Ethics Committee(approval No. 5) on May 27, 2014. 展开更多
关键词 CHEMOKINES CYTOKINES fibroblast growth factor gene therapy growth factors peripheral nerve system sciatic nerve regeneration vascular endothelial growth factor
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Cartilage oligomeric matrix protein enhances the vascularization of acellular nerves 被引量:1
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作者 Wei-ling Cui Long-hai Qiu +3 位作者 Jia-yan Lian Jia-chun Li Jun Hu Xiao-lin Liu 《Neural Regeneration Research》 SCIE CAS CSCD 2016年第3期512-518,共7页
Vascularization of acellular nerves has been shown to contribute to nerve bridging.In this study,we used a 10-mm sciatic nerve defect model in rats to determine whether cartilage oligomeric matrix protein enhances the... Vascularization of acellular nerves has been shown to contribute to nerve bridging.In this study,we used a 10-mm sciatic nerve defect model in rats to determine whether cartilage oligomeric matrix protein enhances the vascularization of injured acellular nerves.The rat nerve defects were treated with acellular nerve grafting(control group) alone or acellular nerve grafting combined with intraperitoneal injection of cartilage oligomeric matrix protein(experimental group).As shown through two-dimensional imaging,the vessels began to invade into the acellular nerve graft from both anastomotic ends at day 7 post-operation,and gradually covered the entire graft at day 21.The vascular density,vascular area,and the velocity of revascularization in the experimental group were all higher than those in the control group.These results indicate that cartilage oligomeric matrix protein enhances the vascularization of acellular nerves. 展开更多
关键词 nerve regeneration peripheral nerve injuries acellular nerves radiography nerve repair nerve tissue engineering two-dimensional evaluation vascularized models angiogenesis neural regeneration
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夹脊电针结合跑台训练对坐骨神经离断损伤大鼠胫骨重建及血管内皮生长因子表达的影响
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作者 王艳 支金草 +6 位作者 赵乐乐 裴飞 赵彬 陈慧杰 赵明月 张雪薇 吴珊红 《中国康复医学杂志》 CAS CSCD 北大核心 2024年第10期1401-1408,共8页
目的:观察夹脊电针结合跑台训练对大鼠坐骨神经离断损伤后的胫骨骨密度、血管体积和数量、血管内皮生长因子(vascular endothelial growth factor,VEGF)表达的影响,为夹脊电针结合跑台训练促进坐骨神经离断损伤大鼠胫骨重建提供理论依... 目的:观察夹脊电针结合跑台训练对大鼠坐骨神经离断损伤后的胫骨骨密度、血管体积和数量、血管内皮生长因子(vascular endothelial growth factor,VEGF)表达的影响,为夹脊电针结合跑台训练促进坐骨神经离断损伤大鼠胫骨重建提供理论依据。方法:将180只SD大鼠随机分为正常对照组、模型对照组、夹脊电针组、跑台组、夹脊电针+跑台组(以下简称结合组),每组36只;再按术后干预2、4、8周分为3个亚组,每个亚组12只。行坐骨神经离断损伤缝合术进行造模。正常对照组无任何干预;模型对照组造模后无干预;夹脊电针组、跑台组和结合组于术后第3天分别开始进行夹脊电针、跑台训练以及二者结合治疗。采用Micro-CT扫描并分析胫骨骨密度;血管造影分析胫骨近端血管的数量和体积;RT-PCR和Western Blot检测胫骨VEGF m RNA和蛋白的表达;ELISA测定胫骨骨髓中VEGF浓度。结果:在干预2、4、8周后,模型对照组大鼠的胫骨骨密度、近端血管体积和数量、骨组织VEGF mRNA和蛋白表达以及骨髓中VEGF浓度均低于同一时间点的正常对照组(P<0.05)。而随着干预时间的延长,夹脊电针组、跑台组和结合组大鼠的胫骨骨密度、近端血管体积和数量、骨组织VEGF mRNA及蛋白表达和骨髓中VEGF浓度均显著高于同一时间点的模型对照组(P<0.05),且在各时间点以结合组表达更优(P<0.05)。结论:夹脊电针结合跑台训练可能通过上调胫骨及骨髓中VEGF的表达,改善胫骨骨密度。 展开更多
关键词 夹脊电针 跑台训练 周围神经损伤 胫骨重建 血管内皮生长因子
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大鼠周围神经损伤后外周血内皮祖细胞动员及相关因子含量变化
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作者 赵斌 赵志虎 +2 位作者 骆巍 马剑雄 马信龙 《天津医药》 CAS 2024年第5期459-462,共4页
目的探讨大鼠周围神经损伤(PNI)后外周血内皮祖细胞(EPCs)、碱性成纤维细胞生长因子(bFGF)、血管内皮生长因子(VEGF)及基质金属蛋白酶-9(MMP-9)水平变化及EPCs与其他指标的相关性。方法42只SD大鼠按随机数字表法分为对照组、PNI 1 d组、... 目的探讨大鼠周围神经损伤(PNI)后外周血内皮祖细胞(EPCs)、碱性成纤维细胞生长因子(bFGF)、血管内皮生长因子(VEGF)及基质金属蛋白酶-9(MMP-9)水平变化及EPCs与其他指标的相关性。方法42只SD大鼠按随机数字表法分为对照组、PNI 1 d组、PNI 3 d组、PNI 5 d组、PNI 7 d组及PNI 14 d组,每组7只,除对照组外其余组均采用钳夹法建立坐骨神经损伤模型。对每组在预定时间点采用活体心脏穿刺法采血;采用Ficoll密度梯度离心法提取单个核细胞,CD34和CD133双阳性细胞标记EPCs,应用流式细胞仪检测各组EPCs数量。采用酶联免疫吸附试验检测各组外周血bFGF、VEGF及MMP-9含量,分析EPCs数量与bFGF、VEGF、MMP-9水平的相关性。结果与对照组相比,PNI 3 d组、PNI 5 d组、PNI 7 d组外周血EPCs数量升高,PNI 3 d组、PNI 5 d组、PNI 7 d组及PNI 14 d组外周血bFGF含量升高,其余各组外周血VEGF含量升高,PNI 5 d组、PNI 7 d组及PNI 14 d组外周血MMP-9含量升高(P<0.05)。PNI 5 d组和PNI 7 d组外周血EPCs数量与血清bFGF水平呈正相关(r分别为0.784和0.788,P<0.05),与血清VEGF水平呈正相关(r分别为0.889和0.852,P<0.05);PNI 5 d组、PNI 7 d组和PNI 14 d组外周血EPCs数量与血清MMP-9水平呈正相关(r分别为0.788、0.852和0.873,P<0.05)。结论EPCs与bFGF、VEGF和MMP-9共同参与了PNI后血供修复的病理生理过程。 展开更多
关键词 周围神经损伤 坐骨神经 内皮祖细胞 基质金属蛋白酶9 血管内皮生长因子 碱性成纤维细胞生长因子
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血管束置入硅胶管内桥接周围神经缺损的临床应用 被引量:10
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作者 罗永湘 王体沛 方煌 《中国修复重建外科杂志》 CAS CSCD 1997年第6期340-342,共3页
为提高非神经组织桥接周围神经缺损的疗效,改善桥接物内的血供,利于再生神经的延伸和成熟。以硅胶管为桥接物,游离与置入邻近的血管束,再将两神经断端切除神经瘤后分别套入硅胶管内,以7/0无损伤针线将神经外膜与硅胶管壁固定数... 为提高非神经组织桥接周围神经缺损的疗效,改善桥接物内的血供,利于再生神经的延伸和成熟。以硅胶管为桥接物,游离与置入邻近的血管束,再将两神经断端切除神经瘤后分别套入硅胶管内,以7/0无损伤针线将神经外膜与硅胶管壁固定数针。1990年~1995年修复11例15条上肢神经,其中正中神经7条,尺神经5条,桡神经3条,切除神经瘤后缺损长度3cm13条,3.1cm~5cm2条。术后随访到10例13条神经,随访时间为1年~5年,优(M4S4)8条,良(M3S3)3条,差(M1S1)2条。认为,此法有一定优点,对神经缺损不能直接缝合,患者又不愿取自体神经移植者,可列为手术指征。 展开更多
关键词 周围神经缺损 血管刺 硅胶管 桥接
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高压氧促进成鼠脊髓损伤后功能恢复的实验研究 被引量:2
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作者 杜全印 王爱民 +1 位作者 郑世刚 郭庆山 《中国组织工程研究》 CAS CSCD 2001年第8期49-63,共2页
目的研究高压氧(HBO)对带血供周围神经(VPN)移植修复成鼠脊髓损伤(SCI)功能恢复 的作用。方法将40只成年Wistar大鼠做成脊髓半切损伤模型,随机分为A、B两组,A组单纯V PN移植修复SCI,B组为VPN移植后给予HBO治疗。手术后1、2、4、8、1... 目的研究高压氧(HBO)对带血供周围神经(VPN)移植修复成鼠脊髓损伤(SCI)功能恢复 的作用。方法将40只成年Wistar大鼠做成脊髓半切损伤模型,随机分为A、B两组,A组单纯V PN移植修复SCI,B组为VPN移植后给予HBO治疗。手术后1、2、4、8、10周进行感觉诱发电位 (SEP)和运动诱发电位(MEP)检查。结果SEP和MEP潜峰时的恢复B组优于A组。结论HBO与VPN移 植对成鼠损伤脊髓功能恢复有较好的促进作用。 展开更多
关键词 高压氧 带血供周围神经 移植 脊髓损伤
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电针介入时机对大鼠面神经损伤再生修复的影响 被引量:5
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作者 马斌 柳刚 +3 位作者 宋书婷 王友刚 张国庆 杨骏 《辽宁中医药大学学报》 CAS 2023年第12期107-110,共4页
目的探讨电针治疗周围性面瘫大鼠最佳介入时机及其功能机制。方法选用SD大鼠50只,随机分为5组(假手术组、模型组、急性期组、静止期组、恢复期组),每组10只,采用神经卡压法建立左侧周围性面瘫模型。急性期组、静止期组、恢复期组分别于... 目的探讨电针治疗周围性面瘫大鼠最佳介入时机及其功能机制。方法选用SD大鼠50只,随机分为5组(假手术组、模型组、急性期组、静止期组、恢复期组),每组10只,采用神经卡压法建立左侧周围性面瘫模型。急性期组、静止期组、恢复期组分别于术后1 d、1周、2周开始给予电针治疗,术后4周,比较各组治疗前后行为学评分和面运动神经传导速度,采用Western blot法检测神经生长因子(nerve growth factor,NGF)、血管内皮生长因子(vascular endothelial growth factor,VEGF)蛋白表达。结果急性期组、静止期组、恢复期组术后4周行为学评分均低于模型组(P<0.05),面运动神经传导速度均高于模型组(P<0.05);急性期组、静止期组、恢复期组术后4周行为学评分均低于术后(P<0.05),面运动神经传导速度均高于术后(P<0.05);术后4周行为学评分静止期组低于恢复期组(P<0.05),急性期组低于静止期组和恢复期组(P<0.05),面运动神经传导速度静止期组高于恢复期组(P<0.05),急性期组高于静止期组和恢复期组(P<0.05)。术后4周急性期组、静止期组、恢复期组面神经组织的NGF、VEGF表达高于模型组(P<0.05),静止期组高于恢复期组(P<0.05),急性期组高于静止期组(P<0.05)。结论电针介入时间越早对损伤面神经的再生修复效果越佳,其部分机制可能与电针上调NGF、VEGF的表达有关。 展开更多
关键词 电针 周围性面瘫 运动神经传导速度 神经生长因子 血管内皮生长因子
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VEGF在小剂量超短波促进种植骨髓间充质干细胞脱细胞支架修复大鼠坐骨神经损伤中的表达 被引量:3
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作者 庞超见 佟晓杰 +4 位作者 刘贵波 李奇 贾桦 王莹 高海 《中国医科大学学报》 CAS CSCD 北大核心 2010年第4期262-265,共4页
目的探讨血管内皮生长因子(VEGF)在小剂量超短波对种植骨髓间充质干细胞(BMSC)脱细胞支架修复大鼠坐骨神经损伤中的表达。方法将培养至第3代的大鼠BMSC注入已制备的脱细胞支架内,然后置于培养箱内联合培养3d,无菌条件下缝合到神经缺损... 目的探讨血管内皮生长因子(VEGF)在小剂量超短波对种植骨髓间充质干细胞(BMSC)脱细胞支架修复大鼠坐骨神经损伤中的表达。方法将培养至第3代的大鼠BMSC注入已制备的脱细胞支架内,然后置于培养箱内联合培养3d,无菌条件下缝合到神经缺损处。实验鼠分为3组,即达尔伯克改良伊格尔培养基(DMEM)组、支架内注射BMSC组和注射BMSC后应用超短波(USW)治疗组;超短波治疗组在术后2d用小剂量超短波对移植动物的神经缺损处治疗;移植后第2,4,8和12周检测再生的神经中VEGF、S-100蛋白表达。结果各组VEGF在损伤后再生即有表达,并随时间延长呈上升趋势,在第4周达到顶峰,超短波治疗组表达高于其他组(P<0.05)。结论VEGF在超短波治疗早期的高水平表达可加速种植的BMSC分化或迁移的速度,并能促使再生神经周围的血供增加。 展开更多
关键词 脱细胞支架 超短波治疗 周围神经再生 血管内皮生长因子 骨髓间充质干细胞
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NGF促再生周围神经中血管生成及其机制研究 被引量:12
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作者 张玉波 伍亚民 +2 位作者 刘磊 宋川 龙在云 《脑与神经疾病杂志》 2007年第6期401-404,共4页
目的:探讨再生周围神经中NGF促血管生成及其有关机制。方法:用单通道的硅胶管硅胶45只Wistar大鼠1cm的坐骨神经缺损,在硅胶管内给药,并将它们随机分为四组:生理盐水组、几丁糖组(医用几丁糖简称几丁糖,此组15只,其中5只用作透射电镜观察... 目的:探讨再生周围神经中NGF促血管生成及其有关机制。方法:用单通道的硅胶管硅胶45只Wistar大鼠1cm的坐骨神经缺损,在硅胶管内给药,并将它们随机分为四组:生理盐水组、几丁糖组(医用几丁糖简称几丁糖,此组15只,其中5只用作透射电镜观察),NGF+几丁糖组,NGF+几丁糖+抗VEGF组,每组10只,在术后14天时,用免疫组化的方法检测大鼠再生坐骨神经新生血管内皮细胞中CD34、vWf、VEGF、trkA的表达,并作半定量分析。同时用激光共聚焦扫描显微镜检测其表达情况。结果:生理盐水组、几丁糖组再生坐骨神经中的血管内皮细胞能表达TrkA、CD34、vWf、VEGF,两组间比较没有显著性差异,NGF+几丁糖组上述四抗原的表达比生理盐水组、几丁糖组有明显增加(P<0.01或P<0.05),NGF+几丁糖+抗VEGF组再生坐骨神经血管中的CD34和VEGF的表达完全被抑制,vWf、TrkA的表达与NGF+几丁糖组相比也显著减少(P<0.01)。激光共聚焦扫描发现,再生坐骨神经的血管中VEGF与CD34其表达明显而强烈,凡CD34表达阳性的,VEGF也表达阳性,VEGF的阳性表达比CD34要多。VEGF与vWf也呈明显其表达。结论:NGF能促进再生周围神经的血管生成;NGF促再生周围神经血管生成过程中,VEGF起着重要的作用,trkA、CD34也与之相关;NGF经trkA-VEGF-CD34通路来促进周围神经中毛细血管的生成;NGF促较大管径血管生成时,除经trkA-VEGF通路外,还可能存在其它途径。 展开更多
关键词 神经生长因子(NGF) 血管内皮细胞生长因子(VEGF) 内皮细胞(ECs) 共表达
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自体和异体神经组织联合移植修复脊髓损伤的实验研究 被引量:3
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作者 郭庆山 王爱民 +2 位作者 蒋祖言 孙红振 杜全印 《中国矫形外科杂志》 CAS CSCD 2000年第6期559-561,共3页
目的 :探讨神经组织联合移植对成鼠急性脊髓损伤的修复能力。方法 :成年雌性Wistar鼠 36只随机分为3组 ,损伤T1~ 3脊髓左后柱 ,移植孕 14d胚胎脊髓 (FSC组 15只 )或带血管正中神经加胚胎脊髓 (V +F组 15只 ) ,另 6只做对照组。术后 8... 目的 :探讨神经组织联合移植对成鼠急性脊髓损伤的修复能力。方法 :成年雌性Wistar鼠 36只随机分为3组 ,损伤T1~ 3脊髓左后柱 ,移植孕 14d胚胎脊髓 (FSC组 15只 )或带血管正中神经加胚胎脊髓 (V +F组 15只 ) ,另 6只做对照组。术后 8周行体感诱发电位、光、电镜和免疫组化检查。结果 :V +F组胚胎组织体积增长速度、神经纤维和神经元数目显著高于FSC组 (P <0 .0 1) ,细胞大多分化较好 ,有少数类似运动神经元 ,突触较成熟。界面区无明显胶质增生 ,SEP示P1、N1波潜伏期显著缩短 (P <0 .0 1)。结论 :带血管周围神经与胚胎脊髓联合移植优于单一移植物 ,对胚胎脊髓的生长发育。 展开更多
关键词 带血管周围神经 胚胎脊髓 修复 脊髓损伤
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高压氧与带血供周围神经移植对成鼠损伤脊髓诱发电位的影响 被引量:1
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作者 杜全印 王爱民 +1 位作者 郭庆山 郑世刚 《中国矫形外科杂志》 CAS CSCD 2001年第5期483-484,共2页
目的 :研究高压氧对带血供周围神经移植修复成鼠损伤脊髓功能恢复的作用。方法 :将 40只成年Wistar大鼠作成脊髓半切损伤模型 ,随机分为A、B两组 ,A组单纯带血供周围神经移植修复脊髓损伤 ,B组为带血供周围神经移植后给予高压氧治疗。... 目的 :研究高压氧对带血供周围神经移植修复成鼠损伤脊髓功能恢复的作用。方法 :将 40只成年Wistar大鼠作成脊髓半切损伤模型 ,随机分为A、B两组 ,A组单纯带血供周围神经移植修复脊髓损伤 ,B组为带血供周围神经移植后给予高压氧治疗。手术后 1、2、4、8、10周进行感觉诱发电位 (SEP)和运动诱发电位 (MEP)检查。结果 :SEP和MEP潜峰时的恢复B组优于A组。结论 展开更多
关键词 高压氧 带血供周围神经 移植 脊髓损伤
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高压氧与带血供周围神经移植修复鼠脊髓损伤的研究 被引量:1
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作者 杜全印 王爱民 +4 位作者 蒋祖言 郑世刚 王湘渝 王强 郭庆山 《中国组织工程研究与临床康复》 CAS CSCD 2001年第12期33-34,共2页
目的探索联合应用高压氧与带血供周围神经移植修复脊髓损伤的作用。方法将40只雌性Wistar成年鼠分为A、B两组,A组为单纯带血供的正中神经移植修复脊髓损伤;B组为带血供的正中神经移植后给予高压氧治疗。结果在组织学、神经传导速度及... 目的探索联合应用高压氧与带血供周围神经移植修复脊髓损伤的作用。方法将40只雌性Wistar成年鼠分为A、B两组,A组为单纯带血供的正中神经移植修复脊髓损伤;B组为带血供的正中神经移植后给予高压氧治疗。结果在组织学、神经传导速度及移植神经内再生轴突形态计量分析诸方面,效果明显好于A组。结论带血供周围神经是修复脊髓损伤较为理想的移植材料,高血氧能够提高带血供周围神经移植修复脊髓损伤的能力。 展开更多
关键词 脊髓损伤 带血供周围神经 神经移植 高压氧
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芪黄除痹汤结合外洗方对糖尿病周围神经病变神经传导速度改善作用的研究 被引量:11
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作者 苗佳晶 贺颖 刘艳杰 《中华中医药学刊》 CAS 北大核心 2021年第6期175-178,共4页
目的探究芪黄除痹汤结合外洗方对糖尿病周围神经病变患者神经传导速度的改善作用。方法将2015年5月—2020年3月接诊的336例2型糖尿病周围血管病变患者336例纳入研究,依据随机对照法将患者分为组实验组和对照组,每组168例,两组患者均给... 目的探究芪黄除痹汤结合外洗方对糖尿病周围神经病变患者神经传导速度的改善作用。方法将2015年5月—2020年3月接诊的336例2型糖尿病周围血管病变患者336例纳入研究,依据随机对照法将患者分为组实验组和对照组,每组168例,两组患者均给予基础治疗,包括规律作息、糖尿病科学的饮食及运动,控制血糖,对照组患者口服甲钴胺胶囊,0.5 mg/次,3次/d。实验组在对照组治疗的基础上,口服芪黄除痹汤结合外洗方治疗。两组患者均治疗2个月。比较两组治疗前后中医症状积分和治疗疗效;比较两组治疗前后ABI、FIB和TC水平;比较治疗前后正中神经和腓总神经的感觉传导速度和运动传导速度。结果实验组治疗总有效率91.67%(154/168)高于对照组的81.55%(137/168)(P<0.05);实验组治疗后中医证候积分低于对照组(P<0.05);实验组治疗后FIB和TC水平低于对照组,ABI水平高于对照组(P<0.05);实验组治疗后正中神经和腓总神经的感觉传导速度和运动传导速度高于对照组(P<0.05)。结论芪黄除痹汤结合外洗方可有效的缓解患者的临床症状,改善血液黏稠度及脂代谢紊乱,提高神经传导速度,延缓糖尿病周围神经病变的进程,提高治疗疗效。 展开更多
关键词 芪黄除痹汤 外洗方 糖尿病 周围血管病变 神经传导速度 影响
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