Neuroprotective role of Noggin in spinal cord injury

被引:6
|
作者
Al-Sammarraie, Nadia [1 ]
Mahmood, Mohammed [1 ]
Ray, Swapan K. [1 ]
机构
[1] Univ South Carolina, Sch Med, Dept Pathol Microbiol & Immunol, Columbia, SC 29208 USA
关键词
apoptosis; astrocyte differentiation; axon myelination; axon regeneration; bone morphogenetic protein; glial scar; heterotrophic ossification; neurogenesis; neuropathic pain; Noggin; spinal cord injury; HETEROTOPIC OSSIFICATION; FUNCTIONAL RECOVERY; EXPRESSION; PLASTICITY; CELLS; INHIBITION; MUTATIONS; TRAUMA; GENDER;
D O I
10.4103/1673-5374.350190
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Spinal cord injury is one of the leading causes of morbidity and mortality among young adults in many countries including the United States. Difficulty in the regeneration of neurons is one of the main obstacles that leave spinal cord injury patients with permanent paralysis in most instances. Recent research has found that preventing acute and subacute secondary cellular damages to the neurons and supporting glial cells can help slow the progression of spinal cord injury pathogenesis, in part by reactivating endogenous regenerative proteins including Noggin that are normally present during spinal cord development. Noggin is a complex protein and natural inhibitor of the multifunctional bone morphogenetic proteins, and its expression is high during spinal cord development and after induction of spinal cord injury. In this review article, we first discuss the change in expression of Noggin during pathogenesis in spinal cord injury. Second, we discuss the current research knowledge about the neuroprotective role of Noggin in preclinical models of spinal cord injury. Lastly, we explain the gap in the knowledge for the use of Noggin in the treatment of spinal cord injury. The results from extensive in vitro and in vivo research have revealed that the therapeutic efficacy of Noggin treatment remains debatable due to its neuroprotective effects observed only in early phases of spinal cord injury but little to no effect on altering pathogenesis and functional recovery observed in the chronic phase of spinal cord injury. Furthermore, clinical information regarding the role of Noggin in the alleviation of progression of pathogenesis, its therapeutic efficacy, bioavailability, and safety in human spinal cord injury is still lacking and therefore needs further investigation.
引用
收藏
页码:492 / 496
页数:5
相关论文
共 50 条
  • [31] The role of astrocytes response triggered by hyperglycaemia during spinal cord injury
    Samano, C.
    Mazzone, G. L.
    ARCHIVES OF PHYSIOLOGY AND BIOCHEMISTRY, 2024, 130 (06) : 724 - 741
  • [32] Role of the Serotonergic System in Functional Recovery after Spinal Cord Injury
    Konovalova, S. P.
    Sysoev, Yu. I.
    Vetlugina, A.
    Arsentiev, K. A.
    Musienko, P. E.
    JOURNAL OF EVOLUTIONARY BIOCHEMISTRY AND PHYSIOLOGY, 2024, 60 (05) : 1943 - 1959
  • [33] Neuroprotective effect of epigallocatechin-3-gallate on hemisection-induced spinal cord injury in rats
    Deng, Fengjun
    Li, Rubing
    Yang, Yingbao
    Zhou, Dan
    Wang, Qian
    Xu, Jiangping
    NEURAL REGENERATION RESEARCH, 2011, 6 (06) : 405 - 411
  • [34] Research Progress of Long Non-coding RNAs in Spinal Cord Injury
    Cai, Zongyan
    Han, Xue
    Li, Ruizhe
    Yu, Tianci
    Chen, Lei
    Wu, XueXue
    Jin, Jiaxin
    NEUROCHEMICAL RESEARCH, 2023, 48 (01) : 1 - 12
  • [35] Neuroprotective effects of tamoxifen on experimental spinal cord injury in rats
    Ismailoglu, Ozguer
    Oral, Baha
    Gorgulu, Askin
    Sutcu, Recep
    Demir, Necdet
    JOURNAL OF CLINICAL NEUROSCIENCE, 2010, 17 (10) : 1306 - 1310
  • [36] Neuroprotective microRNAs in the secondary damage of the traumatic spinal cord injury
    Yunta, M.
    Nieto-Diaz, M.
    Esteban, F. J.
    Lopez-Rodriguez, M.
    Navarro-Ruiz, R. M.
    Reigada, D.
    Pita-Thomas, D. W.
    Maza, R. M.
    TRAUMA-SPAIN, 2010, 21 (01): : 47 - 52
  • [37] Neuroprotective effect of ketamine on acute spinal cord injury in rats
    Tang, S. H.
    Yu, J. G.
    Li, J. J.
    Sun, J. Y.
    GENETICS AND MOLECULAR RESEARCH, 2015, 14 (02) : 3551 - 3556
  • [38] Neuroprotective effects of almond skins in experimental spinal cord injury
    Mandalari, G.
    Genovese, T.
    Bisignano, C.
    Mazzon, E.
    Wickham, M. S. J.
    Di Paola, R.
    Bisignano, G.
    Cuzzocrea, S.
    CLINICAL NUTRITION, 2011, 30 (02) : 221 - 233
  • [39] Azathioprine as a Neuroprotective Agent in Experimental Traumatic Spinal Cord Injury
    Bahadir, Sinan
    Onal, Mehmet Bulent
    Narin, Firat
    Basar, Ibrahim
    Yigitkanli, Kazim
    Bavbek, Murad
    Ziyal, Mustafa Ibrahim
    TURKISH NEUROSURGERY, 2021, 31 (02) : 211 - 216
  • [40] Neuroprotective Effects of Raloxifene on Experimental Spinal Cord Injury in Rats
    Ismailoglu, Ozgur
    Oral, Baha
    Sutcu, Recep
    Kara, Yusuf
    Tomruk, Onder
    Demir, Necdet
    AMERICAN JOURNAL OF THE MEDICAL SCIENCES, 2013, 345 (01): : 39 - 44