1 |
Ghochani Y , Muthukrishnan SD , Sohrabi A , Kawaguchi R , Condro MC , Bastola S , Gao F , Qin Y , Mottahedeh J , Iruela-Arispe ML , Rao N , Laks DR , Liau LM , Mathern GW , Goldman SA , Carmichael ST , Nakano I , Coppola G , Seidlits SK , Kornblum HI . A molecular interactome of the glioblastoma perivascular niche reveals integrin binding sialoprotein as a mediator of tumor cell migration. Cell Rep, 2022, 41: 111511.
doi: 10.1016/j.celrep.2022.111511
|
2 |
Akolawala Q , Keuning F , Rovituso M , van Burik W , van der Wal E , Versteeg HH , Rondon AMR , Accardo A . Micro-vessels-like 3D scaffolds for studying the proton radiobiology of glioblastoma-endothelial cells co-culture models. Adv Healthc Mater, 2024, 13: e2302988.
doi: 10.1002/adhm.202302988
|
3 |
Cui X , Zhao J , Li G , Yang C , Yang S , Zhan Q , Zhou J , Wang Y , Xiao M , Hong B , Yi K , Tong F , Tan Y , Wang H , Wang Q , Jiang T , Fang C , Kang C . Blockage of EGFR/AKT and mevalonate pathways synergize the antitumor effect of temozolomide by reprogramming energy metabolism in glioblastoma. Cancer Commun (Lond), 2023, 43: 1326- 1353.
doi: 10.1002/cac2.12502
|
4 |
Muthukrishnan SD , Kawaguchi R , Nair P , Prasad R , Qin Y , Johnson M , Wang Q , VanderVeer-Harris N , Pham A , Alvarado AG , Condro MC , Gao F , Gau R , Castro MG , Lowenstein PR , Deb A , Hinman JD , Pajonk F , Burns TC , Goldman SA , Geschwind DH , Kornblum HI . P300 promotes tumor recurrence by regulating radiation-induced conversion of glioma stem cells to vascular-like cells. Nat Commun, 2022, 13: 6202.
doi: 10.1038/s41467-022-33943-0
|
5 |
Fathima S , Sinha S , Donakonda S . Unraveling unique and common cell type - specific mechanisms in glioblastoma multiforme. Comput Struct Biotechnol J, 2021, 20: 90- 106.
|
6 |
Uddin MS , Mamun AA , Alghamdi BS , Tewari D , Jeandet P , Sarwar MS , Ashraf GM . Epigenetics of glioblastoma multiforme: from molecular mechanisms to therapeutic approaches. Semin Cancer Biol, 2022, 83: 100- 120.
doi: 10.1016/j.semcancer.2020.12.015
|
7 |
Luo K , Liu A , Wu H , Liu Q , Dai J , Liu Y , Wang Z . CircKIF4A promotes glioma growth and temozolomide resistance by accelerating glycolysis. Cell Death Dis, 2022, 13: 740.
doi: 10.1038/s41419-022-05175-z
|
8 |
Wang H , Yu T , An N , Sun Y , Xu P , Han P , Zhao Y , Wang L , Ni X , Li Y , Li G , Liu Y , Peng J , Hou M , Hou Y . Enhancing regulatory T-cell function via inhibition of high mobility group box 1 protein signaling in immune thrombocytopenia. Haematologica, 2023, 108: 843- 858.
|
9 |
Dağıdır HG , Topa E , Vuralli D , Bolay H . Medication overuse headache is associated with elevated lipopolysaccharide binding protein and pro-inflammatory molecules in the bloodstream. J Headache Pain, 2023, 24: 150.
doi: 10.1186/s10194-023-01672-4
|
10 |
Ren W , Zhao L , Sun Y , Wang X , Shi X . HMGB1 and Toll-like receptors: potential therapeutic targets in autoimmune diseases. Mol Med, 2023, 29: 117.
|
11 |
Garrido MM , Ribeiro RM , Krüger K , Pinheiro LC , Guimarães JT , Holdenrieder S . Relevance of circulating nucleosomes, HMGB1 and sRAGE for prostate cancer diagnosis. In Vivo, 2021, 35: 2207- 2212.
doi: 10.21873/invivo.12492
|
12 |
Huang KC , Ke TW , Chen JY , Hong WZ , Chiang SF , Lai CY , Chen TW , Yang PC , Chen LC , Liang JA , Chen WT , Chao KSC . Dysfunctional TLR1 reduces the therapeutic efficacy of chemotherapy by attenuating HMGB1-mediated antitumor immunity in locally advanced colorectal cancer. Sci Rep, 2023, 13: 19440.
doi: 10.1038/s41598-023-46254-1
|
13 |
Cui Y , Wu X , Jin J , Man W , Li J , Li X , Li Y , Yao H , Zhong R , Chen S , Wu J , Zhu T , Lin Y , Xu J , Wang Y . CircHERC1 promotes non-small cell lung cancer cell progression by sequestering FOXO1 in the cytoplasm and regulating the miR-142-3p-HMGB1 axis. Mol Cancer, 2023, 22: 179.
|
14 |
Li J , Zhang Z , Chen Y , Wang Y , Liu Y , Zhang P . Downregulation of HMGB1 in thymoma cells affects T cell differentiation. Cent Eur J Immunol, 2023, 48: 237- 244.
doi: 10.5114/ceji.2023.132198
|
15 |
Redkin TS , Sleptsova EE , Turubanova VD , Saviuk MO , Lermontova SA , Klapshina LG , Peskova NN , Balalaeva IV , Krysko O , Mishchenko TA , Vedunova MV , Krysko DV . Dendritic cells pulsed with tumor lysates induced by tetracyanotetra(aryl)porphyrazines-based photodynamic therapy effectively trigger anti-tumor immunity in an orthotopic mouse glioma model. Pharmaceutics, 2023, 15: 2430.
doi: 10.3390/pharmaceutics15102430
|
16 |
Yan M , Hu C , Hu Q , Ma H , Lei C , Liu Y . Circ_0008285 regulates glioma progression via the miR-384/HMGB1 axis. Int J Genomics, 2023, ID1680634.
|
17 |
Wu S , Wang J , Liu J , Zhu H , Li R , Wan X , Lei J , Li Y , You C , Hu F , Zhang S , Zhao K , Shu K , Lei T . Programmed cell death 10 increased blood-brain barrier permeability through HMGB1/TLR4 mediated downregulation of endothelial ZO-1 in glioblastoma. Cell Signal, 2023, 107: 110683.
doi: 10.1016/j.cellsig.2023.110683
|
18 |
Kluckova K , Kozak J , Szaboova K , Rychly B , Svajdler M , Suchankova M , Tibenska E , Filova B , Steno J , Matejcik V , Homolova M , Bucova M . TREM-1 and TREM-2 expression on blood monocytes could help predict survival in high-grade glioma patients. Mediators Inflamm, 2020, ID1798147.
|
19 |
Yang RY , Zhao PX , Xu ZQ , An Q , Li JW , Wang XJ . Expressions of HMGB1 and TLR4 in human brain glioma tissue. Zhengzhou Da Xue Xue Bao (Yi Xue Ban), 2018, 53: 213- 217.
URL
|
|
杨如意, 赵普学, 许自强, 安全, 李俊武, 王新军. 人脑胶质瘤组织中HMGB1、TLR4的表达. 郑州大学学报(医学版), 2018, 53: 213- 217.
URL
|
20 |
Guo D , Song JN , Huang TQ , Zhao JJ . Expression of HMGB1 gene and its clinical significance in human glioma: a Meta-analysis. Zhonghua Shen Jing Wai Ke Ji Bing Yan Jiu Za Zhi, 2018, 17: 23- 26.
URL
|
|
郭丹, 宋锦宁, 黄廷钦, 赵君杰. HMGB1基因在人脑胶质瘤中的表达及临床意义Meta分析. 中华神经外科疾病研究杂志, 2018, 17: 23- 26.
URL
|
21 |
Zhou SL , Wang XJ , Fu XD , Wang JY , Shou JX . Expressions of HMGB1 and TLR4 in human glioma tissues of patients combined with epilepsy. Zhonghua Shen Jing Yi Xue Za Zhi, 2015, 14: 563- 566.
doi: 10.3760/cma.j.issn.1671-8925.2015.06.005
|
|
周少龙, 王新军, 付旭东, 王建业, 寿记新. 伴有癫痫的人脑胶质瘤中HMGB1/TLR4的表达研究. 中华神经医学杂志, 2015, 14: 563- 566.
doi: 10.3760/cma.j.issn.1671-8925.2015.06.005
|
22 |
Nguyen L , Christie C , Madsen SJ , Peng Q , Berg K , Hirschberg H . Inhibition of glioma development by doxorubicin-photochemical internalization generated macrophage vaccine: a survival study in rats. Photodiagnosis Photodyn Ther, 2022, 38: 102879.
doi: 10.1016/j.pdpdt.2022.102879
|
23 |
He C , Ding H , Chen J , Ding Y , Yang R , Hu C , An Y , Liu D , Liu P , Tang Q , Zhang Z . Immunogenic cell death induced by chemoradiotherapy of novel pH-sensitive cargo-loaded polymersomes in glioblastoma. Int J Nanomedicine, 2021, 16: 7123- 7135.
doi: 10.2147/IJN.S333197
|
24 |
Li Z , Fu WJ , Wang S , Niu Q , Yao XH . Silencing high mobility group protein B1 inhibits malignant biological behavior of glioblastoma cells. Lu Jun Jun Yi Da Xue Xue Bao, 2022, 44: 406- 412.
URL
|
|
李壮, 付文娟, 王帅, 钮芹, 姚小红. 沉默高迁移率族蛋白B1对胶质母细胞瘤细胞恶性生物学行为的抑制. 陆军军医大学学报, 2022, 44: 406- 412.
URL
|
25 |
Huang JQ , Zhou Y , Yang LJ . Expression of HMGB1 in glioma and effect on biological function of glioma cell. Xian Dai Zhong Liu Yi Xue, 2021, 29: 211- 214.
doi: 10.3969/j.issn.1672-4992.2021.02.007
|
|
黄俊强, 周煜, 杨立坚. HMGB1在脑胶质瘤中的表达及其对胶质瘤细胞生物学功能的影响. 现代肿瘤医学, 2021, 29: 211- 214.
doi: 10.3969/j.issn.1672-4992.2021.02.007
|
26 |
Zhang IY , Zhou H , Liu H , Zhang L , Gao H , Liu S , Song Y , Alizadeh D , Yin HH , Pillai R , Badie B . Local and systemic immune dysregulation alters glioma growth in hyperglycemic mice. Clin Cancer Res, 2020, 26: 2740- 2753.
doi: 10.1158/1078-0432.CCR-19-2520
|
27 |
Wang XJ , Yang Z , Yang RY , Zhou SL . Influence of down-regulation of RAGE receptor on HMGB1 expression and the volume of transplanted tumor. Shi Yong Yi Xue Za Zhi, 2017, 33: 2295- 2298.
doi: 10.3969/j.issn.1006-5725.2017.14.011
|
|
王新军, 杨卓, 杨如意, 周少龙. 高级糖基化终末产物受体下调对高迁移率族蛋白B1表达及移植瘤体积的影响. 实用医学杂志, 2017, 33: 2295- 2298.
doi: 10.3969/j.issn.1006-5725.2017.14.011
|
28 |
Li H , Li J , Zhang G , Da Q , Chen L , Yu S , Zhou Q , Weng Z , Xin Z , Shi L , Ma L , Huang A , Qi S , Lu Y . HMGB1-induced p62 overexpression promotes snail-mediated epithelial-mesenchymal transition in glioblastoma cells via the degradation of GSK-3β. Theranostics, 2019, 9: 1909- 1922.
doi: 10.7150/thno.30578
|
29 |
Li WL , Li CY , Ru Q . Effect of potassium channel blockers on migration and invasion of human glioma cells. Jiangxi Shi Fan Da Xue Xue Bao (Zi Ran Ke Xue Ban), 2017, 41: 150- 154.
URL
|
|
李卫玲, 李超英, 茹琴. 钾通道阻断剂对胶质瘤细胞迁移和侵袭的影响. 江西师范大学学报(自然科学版), 2017, 41: 150- 154.
URL
|
30 |
Li WT , Wei Y , Ren CY , Wang JF , Wu Y , Luo WH , Yao N , Wang Y , Meng XJ . The role of HMGB1 in glioblastoma mutiforme and its mechanism study. Lin Chuang He Shi Yan Yi Xue Za Zhi, 2017, 16: 1596- 1600.
doi: 10.3969/j.issn.1671-4695.2017.16.010
|
|
李文涛, 魏艳, 任春莹, 王建峰, 洖咏, 罗文红, 姚妮, 王颖, 孟喜军. HMGB1在多形性成胶质细胞瘤中的作用及其机制研究. 临床和实验医学杂志, 2017, 16: 1596- 1600.
doi: 10.3969/j.issn.1671-4695.2017.16.010
|
31 |
DU K , Wu X , Ji X , Liang N , Li Z . Early growth response 1 promoted the invasion of glioblastoma multiforme by elevating HMGB1. J Neurosurg Sci, 2023, 67: 422- 430.
|
32 |
Zha C , Meng X , Li L , Mi S , Qian D , Li Z , Wu P , Hu S , Zhao S , Cai J , Liu Y . Neutrophil extracellular traps mediate the crosstalk between glioma progression and the tumor microenvironment via the HMGB1/RAGE/IL-8 axis. Cancer Biol Med, 2020, 17: 154- 168.
doi: 10.20892/j.issn.2095-3941.2019.0353
|
33 |
Wu R , Yan Y , Ma C , Chen H , Dong Z , Wang Y , Liu Y , Liu M , Yang L . HMGB1 contributes to SASH1 methylation to attenuate astrocyte adhesion. Cell Death Dis, 2019, 10: 417.
doi: 10.1038/s41419-019-1645-7
|
34 |
Lemarié A , Lubrano V , Delmas C , Lusque A , Cerapio JP , Perrier M , Siegfried A , Arnauduc F , Nicaise Y , Dahan P , Filleron T , Mounier M , Toulas C , Cohen-Jonathan Moyal E . The STEMRI trial: magnetic resonance spectroscopy imaging can define tumor areas enriched in glioblastoma stem-like cells. Sci Adv, 2023, 9: eadi0114.
doi: 10.1126/sciadv.adi0114
|
35 |
Ye C , Li H , Li Y , Zhang Y , Liu G , Mi H , Li H , Xiao Q , Niu L , Yu X . Hypoxia-induced HMGB1 promotes glioma stem cells self-renewal and tumorigenicity via RAGE. iScience, 2022, 25: 104872.
doi: 10.1016/j.isci.2022.104872
|
36 |
Gao XY , Zang J , Zheng MH , Zhang YF , Yue KY , Cao XL , Cao Y , Li XX , Han H , Jiang XF , Liang L . Temozolomide treatment induces HMGB1 to promote the formation of glioma stem cells via the TLR2/NEAT1/Wnt pathway in glioblastoma. Front Cell Dev Biol, 2021, 9: 620883.
doi: 10.3389/fcell.2021.620883
|
37 |
Zhang P , Liu Y , Fu C , Wang C , Duan X , Zou W , Zhao T . Knockdown of long non-coding RNA PCAT1 in glioma stem cells promotes radiation sensitivity. Med Mol Morphol, 2019, 52: 114- 122.
doi: 10.1007/s00795-018-0209-8
|
38 |
Zang J , Zheng MH , Cao XL , Zhang YZ , Zhang YF , Gao XY , Cao Y , Shi M , Han H , Liang L . Adenovirus infection promotes the formation of glioma stem cells from glioblastoma cells through the TLR9/NEAT1/STAT3 pathway. Cell Commun Signal, 2020, 18: 135.
doi: 10.1186/s12964-020-00598-7
|
39 |
Xia Z , Tu R , Liu F , Zhang H , Dai Z , Wang Z , Luo P , He S , Xiao G , Feng J , Cheng Q . PD-L1-related IncRNAs are associated with malignant characteristics and immune microenvironment in glioma. Aging (Albany NY), 2023, 15: 10785- 10810.
|
40 |
Sharma A , Wang Y , Ge F , Chen P , Dakal TC , Carro MS , Schmidt-Wolf IGH , Maciaczyk J . Systematic integration of m6A regulators and autophagy-related genes in combination with long non-coding RNAs predicts survival in glioblastoma multiforme. Sci Rep, 2023, 13: 17232.
doi: 10.1038/s41598-023-44087-6
|
41 |
Mousavi SM , Derakhshan M , Baharloii F , Dashti F , Mirazimi SMA , Mahjoubin-Tehran M , Hosseindoost S , Goleij P , Rahimian N , Hamblin MR , Mirzaei H . Non-coding RNAs and glioblastoma: insight into their roles in metastasis. Mol Ther Oncolytics, 2021, 24: 262- 287.
|
42 |
Cheng M , Wang Q , Chen L , Zhao D , Tang J , Xu J , He Z . LncRNA UCA1/miR-182-5p/MGMT axis modulates glioma cell sensitivity to temozolomide through MGMT-related DNA damage pathways. Hum Pathol, 2022, 123: 59- 73.
doi: 10.1016/j.humpath.2022.02.016
|
43 |
Chen W , Hong L , Hou C , Zong G , Zhang J . Up-regulation of LINC00665 contributes to the progression of glioma and correlates with its MRI characteristics. Am J Transl Res, 2022, 14: 2988- 3002.
|
44 |
Wu J , Guo X , Xu D , Zhang H . LINC00662 sponges miR-107 accelerating the invasiveness and proliferation of glioma cells. J Cancer, 2020, 11: 5700- 5712.
doi: 10.7150/jca.46381
|
45 |
Tian S , Liu W , Pan Y , Zhan S . Long non-coding RNA Linc00320 inhibits glioma cell proliferation through restraining Wnt/β-catenin signaling. Biochem Biophys Res Commun, 2019, 508: 458- 464.
doi: 10.1016/j.bbrc.2018.11.101
|
46 |
Zhang R , Jin H , Lou F . The long non-coding RNA TP73-AS1 interacted with miR-142 to modulate brain glioma growth through HMGB1/RAGE pathway. J Cell Biochem, 2018, 119: 3007- 3016.
doi: 10.1002/jcb.26021
|
47 |
Zheng B , Wang S , Shen H , Lin J . Inhibitory effect of miR-339-5p on glioma through PTP4A1/HMGB1 pathway. Dis Markers, 2022, ID2231195.
|
48 |
Cheng Z , Wang B , Zhang C . MicroRNA-505-3p inhibits development of glioma by targeting HMGB1 and regulating AKT expression. Oncol Lett, 2020, 20: 1663- 1670.
doi: 10.3892/ol.2020.11714
|
49 |
Li W , Li C , Xiong Q , Tian X , Ru Q . MicroRNA-10b-5p downregulation inhibits the invasion of glioma cells via modulating homeobox B3 expression. Exp Ther Med, 2019, 17: 4577- 4585.
|
50 |
Hu JH. The study of miR-218-5p inhibiting gliomagenesis by targeting on HMGB1 pathway[D]. Lanzhou: Lanzhou University, 2019.
|
|
胡建宏. miR-218-5p靶向调控HMGB1对胶质瘤的抑制作用及机制研究[D]. 兰州: 兰州大学, 2019.
|
51 |
Li C , Feng S , Chen L . MicroRNA-142-3p inhibits proliferation and induces apoptosis by targeting the high-mobility group box 1 via the Wnt/β-catenin signaling pathway in glioma. Int J Clin Exp Pathol, 2018, 11: 4493- 4502.
|
52 |
Gu J , Xu R , Li Y , Zhang J , Wang S . MicroRNA-218 modulates activities of glioma cells by targeting HMGB1. Am J Transl Res, 2016, 8: 3780- 3790.
|
53 |
Yang Y , Huang JQ , Zhang X , Shen LF . MiR-129-2 functions as a tumor suppressor in glioma cells by targeting HMGB1 and is down-regulated by DNA methylation. Mol Cell Biochem, 2015, 404 (1/2): 229- 239.
|
54 |
Tao W, Jia Z, Mengshi W, Wei L, Feng L. Circular RNA circFANCL motivates the glioma progression via the action on the miR-337-3p/HMGB1 signal axis[J]. Minerva Med, 2020. [Epub ahead of print]
|
55 |
Auzmendi-Iriarte J , Otaegi-Ugartemendia M , Carrasco-Garcia E , Azkargorta M , Diaz A , Saenz-Antoñanzas A , Andermatten JA , Garcia-Puga M , Garcia I , Elua-Pinin A , Ruiz I , Sampron N , Elortza F , Cuervo AM , Matheu A . Chaperone-mediated autophagy controls proteomic and transcriptomic pathways to maintain glioma stem cell activity. Cancer Res, 2022, 82: 1283- 1297.
doi: 10.3971/j.issn.1000-8578.2022.22.0462
|
56 |
Lei R , Yan L , Deng Y , Xu J , Zhao T , Awan MUF , Li Q , Zhou G , Wang X , Ma H . Hmgb1 mediated autophagy protects glioblastoma cells from carbon-ion beam irradiation injury. Acta Astronautica, 2020, 166: 628- 634.
doi: 10.1016/j.actaastro.2019.03.047
|
57 |
Song HL. Investigation of HMGB1 localization at MAMs and the regulation of its cytoplasmic translocation in gliomas[D]. Zhengzhou: Zhengzhou University, 2020.
|
|
宋会玲. 胶质瘤中HMGB1在MAMs上的定位及其胞质转移调控的研究[D]. 郑州: 郑州大学, 2020.
|
58 |
Wear D , Bhagirath E , Balachandar A , Vegh C , Pandey S . Autophagy inhibition via hydroxychloroquine or 3-methyladenine enhances chemotherapy-induced apoptosis in neuro-blastoma and glioblastoma. Int J Mol Sci, 2023, 24: 12052.
doi: 10.3390/ijms241512052
|
59 |
Zhao M , Zhang Y , Jiang Y , Wang K , Wang X , Zhou D , Wang Y , Yu R , Zhou X . YAP promotes autophagy and progression of gliomas via upregulating HMGB1. J Exp Clin Cancer Res, 2021, 40: 99.
doi: 10.1186/s13046-021-01897-8
|
60 |
Huang N , Tang J , Yi X , Zhang M , Li B , Cheng Y , Chen J . Glioma-derived S100A9 polarizes M2 microglia to inhibit CD8+ T lymphocytes for immunosuppression via αvβ3 integrin/AKT1/TGFβ1. Biochim Biophys Acta Mol Cell Res, 2024, 1871: 119619.
doi: 10.1016/j.bbamcr.2023.119619
|
61 |
Liang T , Wang X , Wang Y , Ma W . IFN-γ triggered IFITM2 expression to induce malignant phenotype in elderly GBM. J Mol Neurosci, 2023, 73 (11/12): 946- 955.
|
62 |
Luo M , Luan X , Jiang G , Yang L , Yan K , Li S , Xiang W , Zhou J . The dual effects of exosomes on glioma: a comprehensive review. J Cancer, 2023, 14: 2707- 2719.
doi: 10.7150/jca.86996
|
63 |
Li S , Zhang R , Wang A , Li Y , Zhang M , Kim J , Zhu Y , Wang Q , Zhang Y , Wei Y , Wang J . Panax notoginseng: derived exosome-like nanoparticles attenuate ischemia reperfusion injury via altering microglia polarization. J Nanobiotechnology, 2023, 21: 416.
doi: 10.1186/s12951-023-02161-1
|
64 |
Ma C , Chen H , Zhang S , Yan Y , Wu R , Wang Y , Liu Y , Yang L , Liu M . Exosomal and extracellular HMGB1 have opposite effects on SASH1 expression in rat astrocytes and glioma C6 cells. Biochem Biophys Res Commun, 2019, 518: 325- 330.
doi: 10.1016/j.bbrc.2019.08.057
|
65 |
Hong B , Muili K , Bolyard C , Russell L , Lee TJ , Banasavadi-Siddegowda Y , Yoo JY , Yan Y , Ballester LY , Bockhorst KH , Kaur B . Suppression of HMGB1 released in the glioblastoma tumor microenvironment reduces tumoral edema. Mol Ther Oncolytics, 2018, 12: 93- 102.
|
66 |
Hubert P , Roncarati P , Demoulin S , Pilard C , Ancion M , Reynders C , Lerho T , Bruyere D , Lebeau A , Radermecker C , Meunier M , Nokin MJ , Hendrick E , Peulen O , Delvenne P , Herfs M . Extracellular HMGB1 blockade inhibits tumor growth through profoundly remodeling immune microenvironment and enhances checkpoint inhibitor-based immunotherapy. J Immunother Cancer, 2021, 9: e001966.
doi: 10.1136/jitc-2020-001966
|
67 |
Zhu L , Ren S , Daniels MJ , Qiu W , Song L , You T , Wang D , Wang Z . Exogenous HMGB1 promotes the proliferation and metastasis of pancreatic cancer cells. Front Med (Lausanne), 2021, 8: 756988.
|
68 |
Xue J , Suarez JS , Minaai M , Li S , Gaudino G , Pass HI , Carbone M , Yang H . HMGB1 as a therapeutic target in disease. J Cell Physiol, 2021, 236: 3406- 3419.
doi: 10.1002/jcp.30125
|