[1]Taylor JP, Brown RJ, Cleveland DW. Decoding ALS: from genes to mechanism[J]. Nature, 2016, 539(7628): 197-206.
[2]Lee J, Hyeon SJ, Im H, et al. Astrocytes and microglia as non-cell autonomous players in the pathogenesis of ALS[J]. Exp Neurobiol, 2016, 25(5): 233-240.
[3]de Jongh R, Spijkers XM, Pasteuning-Vuhman S, et al. Neuromuscular junction-on-a-chip: ALS disease modeling and read-out development in microfluidic devices[J]. J Neurochem, 2021, 157(3): 393-412.
[4]Obrador E, Salvador R, Marchio P, et al. Nicotinamide riboside and pterostilbene cooperatively delay motor neuron failure in ALS SOD1(G93A) mice[J]. Mol Neurobiol, 2021, 58(4): 1345-1371.
[5]Di Giorgio FP, Carrasco MA, Siao MC, et al. Non-cell autonomous effect of glia on motor neurons in an embryonic stem cell-based ALS model[J]. Nat Neurosci, 2007, 10(5): 608-614.
[6]Ferraiuolo L, Meyer K, Sherwood TW, et al. Oligodendrocytes contribute to motor neuron death in ALS via SOD1-dependent mechanism[J]. Proc Natl Acad Sci USA, 2016, 113(42): E6496-E6505.
[7]Clement AM, Nguyen MD, Roberts EA, et al. Wild-type nonneuronal cells extend survival of SOD1 mutant motor neurons in ALS mice[J]. Science,2003, 302(5642): 113-117.
[8]Frakes AE, Ferraiuolo L, HaidetPhillips AM, et al. Microglia induce motor neuron death via the classical NF-kappaB pathway in amyotrophic lateral sclerosis[J]. Neuron, 2014, 81(5): 1009-1023.
[9]Guttenplan KA, Weigel MK, Adler DI, et al. Knockout of reactive astrocyte activating factors slows disease progression in an ALS mouse model[J]. Nat Commun, 2020, 11(1): 3753.
[10]Burda JE, Sofroniew MV. Reactive gliosis and the multicellular response to CNS damage and disease[J]. Neuron, 2014, 81(2): 229-248.
[11]Yamanaka K, Komine O. The multi-dimensional roles of astrocytes in ALS[J]. Neurosci Res, 2018, 126: 31-38.
[12]Chen MT, Dong L, Zhang XH, et al. ZFP36L1 promotes monocyte/macrophage differentiation by repressing CDK6[J]. Sci Rep, 2015, 5: 16229.
[13]Loh XY, Sun QY, Ding LW, et al. RNA-binding protein ZFP36L1 suppresses hypoxia and cell-cycle signaling[J]. Cancer Res, 2020, 80(2): 219-233.
[14]Shrestha A, Pun NT, Park PH. ZFP36L1 and AUF1 Induction contribute to the suppression of inflammatory mediators expression by globular adiponectin via autophagy induction in macrophages[J]. Biomol Ther (Seoul), 2018, 26(5): 446-457.
[15]Guo J, Qu H, Chen Y, et al. The role of RNA-binding protein tristetraprolin in cancer and immunity[J]. Med Oncol, 2017, 34(12): 196.
[16]Lu Q, Chen Y, Sun D, et al. MicroRNA-181a functions as an oncogene in gastric cancer by targeting caprin1[J]. Front Pharmacol, 2018, 9: 1565.
[17]Zhou F, Zhang C, Guan Y, et al. Screening the expression characteristics of several miRNAs in G93A-SOD1 transgenic mouse: altered expression of miRNA-124 is associated with astrocyte differentiation by targeting Sox2 and Sox9[J]. J Neurochem, 2018, 145(1): 51-67.
[18]Zhang YW,Gao Y,Sun HC, et al. Expressions of iron transport related proteins in the spinal cord of amyotrophic lateral sclerosis transgenic mice[J].Acta Anatomica Sinica,2021,52(2):161-167.(in Chinese)
张雅雯,高莹,孙菡聪,等.铁转运相关蛋白在肌萎缩性侧索硬化症转基因鼠脊髓中的表达变化[J].解剖学报,2021,52(2):161-167.
[19]Lino MM, Schneider C, Caroni P. Accumulation of SOD1 mutants in postnatal motoneurons does not cause motoneuron pathology or motoneuron disease[J]. J Neurosci, 2002, 22(12): 4825-4832.
[20]Pramatarova A, Laganiere J, Roussel J, et al. Neuron-specific expression of mutant superoxide dismutase 1 in transgenic mice does not lead to motor impairment[J]. J Neurosci,2001, 21(10): 3369-3374.
[21]Clement AM, Nguyen MD, Roberts EA, et al. Wild-type nonneuronal cells extend survival of SOD1 mutant motor neurons in ALS mice[J]. Science, 2003, 302(5642): 113-117.
[22]Brites D, Vaz AR. Microglia centered pathogenesis in ALS: insights in cell interconnectivity[J]. Front Cell Neurosci, 2014, 8: 117.
[23]Hodson DJ, Janas ML, Galloway A, et al. Deletion of the RNA-binding proteins ZFP36L1 and ZFP36L2 leads to perturbed thymic development and T lymphoblastic leukemia[J]. Nat Immunol, 2010, 11(8): 717-724.
[24]Chen H, Kankel MW, Su SC, et al. Exploring the genetics and non-cell autonomous mechanisms underlying ALS/FTLD[J]. Cell Death Differ, 2018, 25(4): 648-662.
[25]Joshi AU, Minhas PS, Liddelow SA, et al. Fragmented mitochondria released from microglia trigger A1 astrocytic response and propagate inflammatory neurodegeneration[J]. Nat Neurosci, 2019, 22(10): 1635-1648.
[26]Trujillo-Estrada L, Gomez-Arboledas A, Forner S, et al. Astrocytes: from the physiology to the disease[J]. Curr Alzheimer Res, 2019, 16(8): 675-698.
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