Neuron-Schwann cell interactions in peripheral nervous system homeostasis, disease, and preclinical treatment

被引:12
|
作者
Oliveira, Julia Teixeira [1 ]
Yanick, Christopher [1 ]
Wein, Nicolas [2 ,3 ]
Limia, Cintia Elisabeth Gomez [4 ]
机构
[1] Univ Miami, Dept Neurol, Miami, FL 33136 USA
[2] Nationwide Childrens Hosp, Abigail Wexner Res Inst, Ctr Gene Therapy, Columbus, OH USA
[3] Ohio State Univ, Dept Pediat, Columbus, OH USA
[4] Ohio State Univ, Dept Biomed Engn, Columbus, OH 43210 USA
关键词
Schwann cells-neurons interaction; regeneration; myelination; pre-clinical trials; repair; MARIE-TOOTH-DISEASE; GUILLAIN-BARRE-SYNDROME; PLURIPOTENT STEM-CELLS; MYELIN PROTEIN ZERO; SPINAL-CORD; NEUROFILAMENT PHOSPHORYLATION; NEUROTROPHIC FACTOR; HUMAN FIBROBLASTS; NEW-MODEL; IN-VITRO;
D O I
10.3389/fncel.2023.1248922
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Schwann cells (SCs) have a critical role in the peripheral nervous system. These cells are able to support axons during homeostasis and after injury. However, mutations in genes associated with the SCs repair program or myelination result in dysfunctional SCs. Several neuropathies such as Charcot-Marie-Tooth (CMT) disease, diabetic neuropathy and Guillain-Barre syndrome show abnormal SC functions and an impaired regeneration process. Thus, understanding SCs-axon interaction and the nerve environment in the context of homeostasis as well as post-injury and disease onset is necessary. Several neurotrophic factors, cytokines, and regulators of signaling pathways associated with proliferation, survival and regeneration are involved in this process. Preclinical studies have focused on the discovery of therapeutic targets for peripheral neuropathies and injuries. To study the effect of new therapeutic targets, modeling neuropathies and peripheral nerve injuries (PNIs) in vitro and in vivo are useful tools. Furthermore, several in vitro protocols have been designed using SCs and neuron cell lines to evaluate these targets in the regeneration process. SCs lines have been used to generate effective myelinating SCs without success. Alternative options have been investigated using direct conversion from somatic cells to SCs or SCs derived from pluripotent stem cells to generate functional SCs. This review will go over the advantages of these systems and the problems associated with them. In addition, there have been challenges in establishing adequate and reproducible protocols in vitro to recapitulate repair SC-neuron interactions observed in vivo. So, we also discuss the mechanisms of repair SCs-axon interactions in the context of peripheral neuropathies and nerve injury (PNI) in vitro and in vivo. Finally, we summarize current preclinical studies evaluating transgenes, drug, and novel compounds with translational potential into clinical studies.
引用
收藏
页数:20
相关论文
共 50 条
  • [21] Roles for PMP22 in Schwann cell cholesterol homeostasis in health and disease
    Stefanski, Katherine M.
    Wilkinson, Mason C.
    Sanders, Charles R.
    BIOCHEMICAL SOCIETY TRANSACTIONS, 2024, 52 (04) : 1747 - 1756
  • [22] Bone marrow-derived fibroblast growth factor-2 induces glial cell proliferation in the regenerating peripheral nervous system
    Ribeiro-Resende, Victor Tulio
    Carrier-Ruiz, Alvaro
    Lemes, Robertha M. R.
    Reis, Ricardo A. M.
    Mendez-Otero, Rosalia
    MOLECULAR NEURODEGENERATION, 2012, 7
  • [23] Iron Metabolism in the Peripheral Nervous System: The Role of DMT1, Ferritin, and Transferrin Receptor in Schwann Cell Maturation and Myelination
    Gonzalez, Diara A. Santiago
    Cheli, Veronica T.
    Wan, Rensheng
    Paez, Pablo M.
    JOURNAL OF NEUROSCIENCE, 2019, 39 (50): : 9940 - 9953
  • [24] Creating Interactions between Tissue-Engineered Skeletal Muscle and the Peripheral Nervous System
    Smith, Alec S. T.
    Passey, Samantha L.
    Martin, Neil R. W.
    Player, Darren J.
    Mudera, Vivek
    Greensnnith, Linda
    Lewis, Mark P.
    CELLS TISSUES ORGANS, 2015, 202 (3-4) : 143 - 158
  • [25] A drug delivery system for the treatment of peripheral nervous system injuries
    Soumetz, FC
    Giacomini, M
    Phillips, JB
    Brown, RA
    Ruggiero, C
    PROCEEDINGS OF THE 26TH ANNUAL INTERNATIONAL CONFERENCE OF THE IEEE ENGINEERING IN MEDICINE AND BIOLOGY SOCIETY, VOLS 1-7, 2004, 26 : 5047 - 5049
  • [26] A drug delivery system for the treatment of peripheral nervous system injuries
    Soumetz, FC
    Giacomini, M
    Phillips, JB
    Brown, RA
    Ruggiero, C
    2004 4TH IEEE CONFERENCE ON NANOTECHNOLOGY, 2004, : 571 - 573
  • [27] Transfer of vesicles from Schwann cells to axons: a novel mechanism of communication in the peripheral nervous system
    Lopez-Verrilli, M. Alejandra
    Court, Felipe A.
    FRONTIERS IN PHYSIOLOGY, 2012, 3
  • [28] Serum-free bioprocessing of adult human and rodent skin-derived Schwann cells: implications for cell therapy in nervous system injury
    Mirfeizi, Leila
    Stratton, Jo Anne
    Kumar, Ranjan
    Shah, Prajay
    Agabalyan, Natacha
    Stykel, Morgan G.
    Midha, Rajiv
    Biernaskie, Jeff
    Kallos, Michael S.
    JOURNAL OF TISSUE ENGINEERING AND REGENERATIVE MEDICINE, 2017, 11 (12) : 3385 - 3397
  • [29] Schwann Cell Plasticity is Regulated by a Weakened Intrinsic Antioxidant Defense System in Acute Peripheral Nerve Injury
    Lv, Wenjing
    Deng, Binbin
    Duan, Weisong
    Li, Yuanyuan
    Liu, Yakun
    Li, Zhongyao
    Xia, Wei
    Li, Chunyan
    NEUROSCIENCE, 2018, 382 : 1 - 13
  • [30] Neuronal Differentiation in Schwann Cell Lineage Underlies Postnatal Neurogenesis in the Enteric Nervous System
    Uesaka, Toshihiro
    Nagashimada, Mayumi
    Enomoto, Hideki
    JOURNAL OF NEUROSCIENCE, 2015, 35 (27): : 9879 - 9888