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For: Yılmaz T, Kaptanoğlu E. Current and future medical therapeutic strategies for the functional repair of spinal cord injury. World J Orthop 2015; 6(1): 42-55 [PMID: 25621210 DOI: 10.5312/wjo.v6.i1.42]
URL: https://www.wjgnet.com/2218-5836/full/v6/i1/42.htm
Number Citing Articles
1
Masoumeh Alishahi, Amir Anbiyaiee, Maryam Farzaneh, Seyed E. Khoshnam. Human Mesenchymal Stem Cells for Spinal Cord InjuryCurrent Stem Cell Research & Therapy 2020; 15(4): 340 doi: 10.2174/1574888X15666200316164051
2
Markus Rövekamp, Alexander von Glinski, Stefan Volkenstein, Stefan Dazert, Christina Sengstock, Thomas A. Schildhauer, Marina Breisch. Olfactory Stem Cells for the Treatment of Spinal Cord Injury—A New Pathway to the Cure?World Neurosurgery 2022; 161: e408 doi: 10.1016/j.wneu.2022.02.019
3
Xiaodong Guo, Yaping Feng, Tiansheng Sun, Shiqing Feng, Jiaguang Tang, Lin Chen, Xiaojian Cao, Haodong Lin, Xijing He, Meihua Li, Zhicheng Zhang, Guoyong Yin, Xifan Mei, Hongyun Huang. Clinical guidelines for neurorestorative therapies in spinal cord injury (2021 China version)Journal of Neurorestoratology 2021; 9(1): 31 doi: 10.26599/JNR.2021.9040003
4
Yang Wang, Jianhang Jiao, Pengfei Ren, Minfei Wu. Upregulation of miRNA‐223‐3p ameliorates RIP3‐mediated necroptosis and inflammatory responses via targeting RIP3 after spinal cord injuryJournal of Cellular Biochemistry 2019; 120(7): 11582 doi: 10.1002/jcb.28438
5
Zoltán Borbély, Benedek Krisztián Csomó, Ágnes Kittel, Gábor Gerber, Gábor Varga, E. Sylvester Vizi. Effect of rat spinal cord injury (hemisection) on the ex vivo uptake and release of [ 3 H]noradrenaline from a slice preparationBrain Research Bulletin 2017; 131: 150 doi: 10.1016/j.brainresbull.2017.04.007
6
Joseph J. Volpe. Volpe's Neurology of the Newborn2018; : 1093 doi: 10.1016/B978-0-323-42876-7.00036-3
7
Junyoung Park, Dongsoo Yi, Jiyoon Jang, Jiseon Hong. The Value of MicroRNAs as an Indicator of the Severity and the Acute Phase of Spinal Cord InjuryAnnals of Rehabilitation Medicine 2019; 43(3): 328 doi: 10.5535/arm.2019.43.3.328
8
Songlin Zhou, Fei Ding, Xiaosong Gu. Non-coding RNAs as Emerging Regulators of Neural Injury Responses and RegenerationNeuroscience Bulletin 2016; 32(3): 253 doi: 10.1007/s12264-016-0028-7
9
Gregory D. Schroeder, Jefferson R. Wilson, Douglas A. Hollern, Eric Hartjen, Erik C. Olsson, Alexander R. Vaccaro. Update on Medical Management of Acute Spinal Cord InjuriesContemporary Spine Surgery 2017; 18(2): 1 doi: 10.1097/01.CSS.0000512162.75076.f4
10
Hyun Joon Lee, Jung Su Ryu, Parminder JS Vig. Current strategies for therapeutic drug delivery after traumatic CNS injuryTherapeutic Delivery 2019; 10(4): 251 doi: 10.4155/tde-2019-0006
11
Dafin F. Muresanu, Aruna Sharma, José V. Lafuente, Ranjana Patnaik, Z. Ryan Tian, Fred Nyberg, Hari S. Sharma. Nanowired Delivery of Growth Hormone Attenuates Pathophysiology of Spinal Cord Injury and Enhances Insulin-Like Growth Factor-1 Concentration in the Plasma and the Spinal CordMolecular Neurobiology 2015; 52(2): 837 doi: 10.1007/s12035-015-9298-8
12
Lu-Yao Tong, Yong-Bing Deng, Wei-Hong Du, Wen-Zhu Zhou, Xin-Yu Liao, Xue Jiang. Clemastine Promotes Differentiation of Oligodendrocyte Progenitor Cells Through the Activation of ERK1/2 via Muscarinic Receptors After Spinal Cord InjuryFrontiers in Pharmacology 2022; 13 doi: 10.3389/fphar.2022.914153
13
Yuan Wang, Qing‐Jie Kong, Jin‐Chuan Sun, Xi‐Ming Xu, Yong Yang, Ning Liu, Jian‐Gang Shi. Protective effect of epigenetic silencing of CyclinD1 against spinal cord injury using bone marrow‐derived mesenchymal stem cells in ratsJournal of Cellular Physiology 2018; 233(7): 5361 doi: 10.1002/jcp.26354
14
Fahri Eryilmaz, Umar Farooque. The Efficacy of Combined Medication With Methylprednisolone and Erythropoietin in the Treatment of Ischemia-Reperfusion Injury to the Spinal Cord in Patients With Cervical Spondylotic MyelopathyCureus 2021;  doi: 10.7759/cureus.14018
15
Jingxuan Wang, Cai Cheng, Zhongbing Liu, Yan Lin, Lingling Yang, Zijun Zhang, Xiaoduan Sun, Meiling Zhou, Pei Jing, Zhirong Zhong. Inhibition of A1 Astrocytes and Activation of A2 Astrocytes for the Treatment of Spinal Cord InjuryNeurochemical Research 2023; 48(3): 767 doi: 10.1007/s11064-022-03820-9
16
Atiyeh Mohammadshirazi, Hoda Sadrosadat, Razieh Jaberi, Masoomeh Zareikheirabadi, Sara Mirsadeghi, Zahra Naghdabadi, Mahdieh Ghaneezabadi, Mehdi Fardmanesh, Hossein Baharvand, Sahar Kiani. Combinational therapy of lithium and human neural stem cells in rat spinal cord contusion modelJournal of Cellular Physiology 2019; 234(11): 20742 doi: 10.1002/jcp.28680
17
Xiao Xiao, Weiwei Li, Dingchao Rong, Zhenchao Xu, Zhen Zhang, Hongru Ye, Liqiong Xie, Yunqi Wu, Yilu Zhang, Xiyang Wang. Human umbilical cord mesenchymal stem cells-derived extracellular vesicles facilitate the repair of spinal cord injury via the miR-29b-3p/PTEN/Akt/mTOR axisCell Death Discovery 2021; 7(1) doi: 10.1038/s41420-021-00572-3
18
Kevin C. Hoy, Warren J. Alilain. Acute theophylline exposure modulates breathing activity through a cervical contusionExperimental Neurology 2015; 271: 72 doi: 10.1016/j.expneurol.2015.04.024
19
Hong Zeng, Yao Lu, Meng-Jie Huang, Yan-Yan Yang, Hua-Yi Xing, Xiao-Xie Liu, Mou-Wang Zhou. Ketogenic diet-mediated steroid metabolism reprogramming improves the immune microenvironment and myelin growth in spinal cord injury rats according to gene and co-expression network analysesAging 2021; 13(9): 12973 doi: 10.18632/aging.202969
20
Atousa Janzadeh, Arash Sarveazad, Mahmoud Yousefifard, Sima Dameni, Fazel Sahraneshin Samani, Kobra Mokhtarian, Farinaz Nasirinezhad. Combine effect of Chondroitinase ABC and low level laser (660 nm) on spinal cord injury model in adult male ratsNeuropeptides 2017; 65: 90 doi: 10.1016/j.npep.2017.06.002
21
Sanghee Kim. Meta-analysis of the Effectiveness of Steroid Pulse Therapy in Treating Patients with Spinal Cord InjuryThe Open Nursing Journal 2021; 15(1): 186 doi: 10.2174/1874434602115010186
22
Hongyun Huang, Wise Young, Stephen Skaper, Lin Chen, Gustavo Moviglia, Hooshang Saberi, Ziad Al-Zoubi, Hari Shanker Sharma, Dafin Muresanu, Alok Sharma, Wagih El Masry, Shiqing Feng. Clinical Neurorestorative Therapeutic Guidelines for Spinal Cord Injury (IANR/CANR version 2019)Journal of Orthopaedic Translation 2020; 20: 14 doi: 10.1016/j.jot.2019.10.006
23
Ning Li, Gilberto K. K. Leung. Oligodendrocyte Precursor Cells in Spinal Cord Injury: A Review and UpdateBioMed Research International 2015; 2015: 1 doi: 10.1155/2015/235195
24
Hongyun Huang, Shiqing Feng, Milan Dimitrijevic, Yaping Feng, Wise Young, Tiansheng Sun, Stephen Skaper, Lin Chen, Gustavo Moviglia, Hooshang Saberi, Ziad Al-Zoubi, Hari S. Sharma, Dafin Muresanu, Alok Sharma, Wagih El Masry. WITHDRAWN: Clinical Neurorestorative Therapeutic Guidelines for Spinal Cord Injury (IANR/CANR Version 2019)Journal of Orthopaedic Translation 2019;  doi: 10.1016/j.jot.2019.06.005
25
Weihong Du, Yongbing Deng, Rong Jiang, Luyao Tong, Ruixue Li, Xue Jiang. Clemastine Enhances Myelination, Delays Axonal Loss and Promotes Functional Recovery in Spinal Cord InjuryNeurochemical Research 2022; 47(2): 503 doi: 10.1007/s11064-021-03465-0
26
H. Yuan, C.-L. Fang, Y.-P. Deng, J. Huang, R.-Z. Niu, J.-L. Chen, T.-B. Chen, Z.-Q. Zhu, L. Chen, L.-L. Xiong, T.-H. Wang. A2B5-positive oligodendrocyte precursor cell transplantation improves neurological deficits in rats following spinal cord contusion associated with changes in expression of factors involved in the Notch signaling pathwayNeurochirurgie 2022; 68(2): 188 doi: 10.1016/j.neuchi.2021.09.004
27
Fabio Cofano, Marina Boido, Matteo Monticelli, Francesco Zenga, Alessandro Ducati, Alessandro Vercelli, Diego Garbossa. Mesenchymal Stem Cells for Spinal Cord Injury: Current Options, Limitations, and Future of Cell TherapyInternational Journal of Molecular Sciences 2019; 20(11): 2698 doi: 10.3390/ijms20112698
28
Gregory D. Schroeder, Jefferson R. Wilson, Douglas A. Hollern, Eric Hartjen, Erik C. Olsson, Alexander R. Vaccaro. Update on Medical Management of Acute Spinal Cord InjuriesContemporary Neurosurgery 2021; 43(9): 1 doi: 10.1097/01.CNE.0000829468.43301.36
29
Roseline Menezes, Sharareh Hashemi, Richard Vincent, George Collins, James Meyer, Marcus Foston, Treena L. Arinzeh. Investigation of glycosaminoglycan mimetic scaffolds for neurite growthActa Biomaterialia 2019; 90: 169 doi: 10.1016/j.actbio.2019.03.024
30
Qingzheng Zhang, Bo Shi, Jianxun Ding, Lesan Yan, Jayesh P. Thawani, Changfeng Fu, Xuesi Chen. Polymer scaffolds facilitate spinal cord injury repairActa Biomaterialia 2019; 88: 57 doi: 10.1016/j.actbio.2019.01.056
31
Yiqian Luo, Fei Xue, Kai Liu, Baoqin Li, Changfeng Fu, Jianxun Ding. Physical and biological engineering of polymer scaffolds to potentiate repair of spinal cord injuryMaterials & Design 2021; 201: 109484 doi: 10.1016/j.matdes.2021.109484
32
Marina Gazdic, Vladislav Volarevic, C. Harrell, Crissy Fellabaum, Nemanja Jovicic, Nebojsa Arsenijevic, Miodrag Stojkovic. Stem Cells Therapy for Spinal Cord InjuryInternational Journal of Molecular Sciences 2018; 19(4): 1039 doi: 10.3390/ijms19041039
33
Baoyou Fan, Zhijian Wei, Xue Yao, Guidong Shi, Xin Cheng, Xianhu Zhou, Hengxing Zhou, Guangzhi Ning, Xiaohong Kong, Shiqing Feng. Microenvironment Imbalance of Spinal Cord InjuryCell Transplantation 2018; 27(6): 853 doi: 10.1177/0963689718755778
34
Yin-Chien Ou, Chi-Chen Huang, Yao-Lin Kao, Pei-Chuan Ho, Kuen-Jer Tsai. Stem Cell Therapy in Spinal Cord Injury-Induced Neurogenic Lower Urinary Tract DysfunctionStem Cell Reviews and Reports 2023; 19(6): 1691 doi: 10.1007/s12015-023-10547-9
35
Min-Yeong Song, Hee-Guen Jo, Tae-Gwang Kim, Jin-Bong Choi. A Case Report of Complex Korean Medical Treatment for Cervical Spinal Cord Injury and Neurogenic BladderJournal of Korean Medicine Rehabilitation 2016; 26(3): 143 doi: 10.18325/jkmr.2016.26.3.143
36
Chen Chen, Guang-Chao Bai, Hong-Liang Jin, Kun Lei, Kuan-Xin Li. Local injection of bone morphogenetic protein 7 promotes neuronal regeneration and motor function recovery after acute spinal cord injuryNeural Regeneration Research 2018; 13(6): 1054 doi: 10.4103/1673-5374.233449
37
Xiong Dong, Hongxiang Hong, Zhiming Cui. Function of GSK‑3 signaling in spinal cord injury (Review)Experimental and Therapeutic Medicine 2023; 26(5) doi: 10.3892/etm.2023.12240
38
Chai-Ching Lin, Tien-Huang Chiang, Wei-Jung Chen, Yu-Yo Sun, Yi-Hsuan Lee, Muh-Shi Lin. CISD2 serves a novel role as a suppressor of nitric oxide signalling and curcumin increases CISD2 expression in spinal cord injuriesInjury 2015; 46(12): 2341 doi: 10.1016/j.injury.2015.07.040
39
Xin Wang, Su-hua Shi, Hai-jiang Yao, Quan-kai Jing, Yu-ping Mo, Wei Lv, Liang-yu Song, Xiao-chen Yuan, Zhi-gang Li, Li-na Qin. Electroacupuncture at Dazhui (GV14) and Mingmen (GV4) protects against spinal cord injury: the role of the Wnt/β-catenin signaling pathwayNeural Regeneration Research 2016; 11(12): 2004 doi: 10.4103/1673-5374.197145
40
Diana Chapela, Sara Sousa, Isaura Martins, Ana Margarida Cristóvão, Patrícia Pinto, Sofia Corte-Real, Leonor Saúde. A zebrafish drug screening platform boosts the discovery of novel therapeutics for spinal cord injury in mammalsScientific Reports 2019; 9(1) doi: 10.1038/s41598-019-47006-w
41
Tobias von Wild, Giorgio A. Brunelli, Klaus R.H. von Wild, Marlene Löhnhardt, Cornel Catoi, Adriana Florinela Catoi, Johannes C. Vester, Stefan Strilciuc, Peter Trillenberg. Regeneration of Denervated Skeletal Muscles – Brunelli’s CNS-PNS ParadigmJournal of Medicine and Life 2019; 12(4): 342 doi: 10.25122/jml-2019-0063
42
Xiaojia Liu, Fuqing Zhou, Xiang Li, Wenshu Qian, Jiaolong Cui, Iris Y. Zhou, Keith D.K. Luk, Ed. X. Wu, Yong Hu. Organization of the intrinsic functional network in the cervical spinal cord: A resting state functional MRI studyNeuroscience 2016; 336: 30 doi: 10.1016/j.neuroscience.2016.08.042
43
Klaus Kucher, Donald Johns, Doris Maier, Rainer Abel, Andreas Badke, Hagen Baron, Roland Thietje, Steven Casha, Renate Meindl, Baltazar Gomez-Mancilla, Christian Pfister, Rüdiger Rupp, Norbert Weidner, Anis Mir, Martin E. Schwab, Armin Curt. First-in-Man Intrathecal Application of Neurite Growth-Promoting Anti-Nogo-A Antibodies in Acute Spinal Cord InjuryNeurorehabilitation and Neural Repair 2018; 32(6-7): 578 doi: 10.1177/1545968318776371