Page 17 - 南京医科大学学报自然科学版
P. 17
第44卷第1期 肖心儒,范 亮,施宇佳,等. A2M在慢性阻塞性肺疾病中的表达及其与免疫细胞浸润的
2024年1月 相关性[J]. 南京医科大学学报(自然科学版),2024,44(01):001-011,059 · 11 ·
2244-2253 [16] CRUZ T,LÓPEZ⁃GIRALDO A,NOELL G,et al. Multi⁃
[4] FERMONT J M,MASCONI K L,JENSEN M T,et al. Bio⁃ level immune response network in mild⁃moderate chronic
markers and clinical outcomes in COPD:a systematic re⁃ obstructive pulmonary disease(COPD)[J]. Respir Res,
view and meta⁃analysis[J]. Thorax,2019,74(5):439- 2019,20(1):1-9
446 [17]WORRELL J C,MACLEOD M K. Stromal ⁃immune cell
[5] MENG H,LONG Q,WANG R,et al. Identification of the crosstalk fundamentally alters the lung microenvironment
key immune⁃related genes in chronic obstructive pulmo⁃ following tissue insult[J]. Immunology,2021,163(3):
nary disease based on immune infiltration analysis[J]. 239-249
Int J Chron Obstruct Pulmon Dis,2022,17:13-24 [18] 丁 明,袁 成,李 萍,等. 稳定期慢性阻塞性肺疾病
[6] ZHANG Y,XIA R,LV M,et al. Machine⁃learning algo⁃ 患者肺泡灌洗液中 IL⁃8、IL⁃17 水平的相关性研究[J].
rithm⁃based prediction of diagnostic gene biomarkers re⁃ 南京医科大学学报(自然科学版),2019,39(6):884-
lated to immune infiltration in patients with chronic ob⁃ 889
structive pulmonary disease[J]. Front Immunol,2022, [19] BELCHAMBER K B,DONNELLY L E. Targeting defec⁃
13:740513 tive pulmonary innate immunity⁃a new therapeutic option?
[7] YANG Y C,ZHANG M Y,LIU J Y,et al. Identification of [J]. Pharmacol Ther,2020,209:107500
ferroptosis ⁃ related hub genes and their association with [20] BARCZYK A,PIERZCHALA W,KON O M,et al. Cyto⁃
immune infiltration in chronic obstructive pulmonary dis⁃ kine production by bronchoalveolar lavage T lymphocytes
ease by bioinformatics analysis[J]. Int J Chron Obstruct in chronic obstructive pulmonary disease[J]. J Allergy
Pulmon Dis,2022,17:1219-1236 Clin Immunol,2006,117(6):1484-1492
[8] XIAO X,CAI W,DING Z,et al. LincRNA00612 inhibits [21] KAPELLOS T S,BONAGURO L,GEMÜND I,et al. Hu⁃
apoptosis and inflammation in LPS ⁃ induced BEAS ⁃ 2B man monocyte subsets and phenotypes in major chronic
cells via enhancing interaction between p ⁃ STAT3 and inflammatory diseases[J]. Front Immunol,2019,10:2035
A2M promoter[J]. Peer J,2023,11:e14986 [22] KNOBLOCH J,PANEK S,YANIK S D,et al. The mono⁃
[9] XIAO X,CAI W,DING Z,et al. A2M serves as promising cyte ⁃ dependent immune response to bacteria is sup⁃
biomarker for chronic obstructive pulmonary disease[J]. pressed in smoking⁃induced COPD[J]. J Mol Med,2019,
Int J Chron Obstruct Pulmon Dis,2023,18:683-692 97(6):817-828
[10] VANDOOREN J,ITOH Y. Alpha⁃2⁃macroglobulin in in⁃ [23] SUZUKI M,SZE M A,CAMPBELL J D,et al. The cellu⁃
flammation,immunity and infections[J]. Front Immunol, lar and molecular determinants of emphysematous de⁃
2021,12:803244 struction in COPD[J]. Sci Rep,2017,7(1):9562
[11]CUÉLLAR J M,CUÉLLAR V G,SCUDERI G J. α2⁃Mac⁃ [24] FINCH D K,STOLBERG V R,FERGUSON J,et al. Lung
roglobulin:autologous protease inhibition technology[J]. dendritic cells drive natural killer cytotoxicity in chronic
Phys Med Rehabil Clin N Am,2016,27(4):909-918 obstructive pulmonary disease via IL ⁃ 15Rα[J]. Am J
[12] Global Initiative for Chronic Obstructive Lung Disease. Respir Crit Care Med,2018,198(9):1140-1150
Global strategy for the prevention and diagnosis,manage⁃ [25] PERROT G,LANGLOIS B,DEVY J,et al. LRP⁃1⁃CD44,
ment of chronic obstructive pulmonary disease 2022 re⁃ a new cell surface complex regulating tumor cell adhesion
port[R/OL].(2021⁃11⁃22)[2021⁃11⁃15]. https://gold⁃ [J]. Mol Cell Biol,2012,32(16):3293-3307
copd.org/gold⁃reports.html [26] GOPAL U,GONZALEZ⁃GRONOW M,PIZZO S V. Acti⁃
[13] GRAHAM B L,STEENBRUGGEN I,MILLER M R,et al. vated α2⁃macroglobulin regulates transcriptional activa⁃
Standardization of spirometry 2019 update. An official tion of c⁃MYC target genes through cell surface GRP78
American thoracic society and European respiratory soci⁃ protein[J]. J Biol Chem,2016,291(20):10904-10915
ety technical statement[J]. Am J Respir Crit Care Med, [27] ARANDJELOVIC S,FREED T A,GONIAS S L. Growth
2019,200(8):e70-e88 factor ⁃ binding sequence in human α2 ⁃ macroglobulin
[14] BU T,WANG L F,YIN Y Q. How do innate immune cells targets the receptor ⁃ binding site in transforming growth
contribute to airway remodeling in COPD progression? factor⁃β[J]. Biochemistry,2003,42(20):6121-6127
[J]. Int J Chron Obstruct Pulmon Dis,2020,15:107-116 [28] POLLER W,BARTH J,VOSS B. Detection of an altera⁃
[15] CARAMORI G,RUGGERI P,DI STEFANO A,et al. Au⁃ tion of the α2 gene in a patient with chronic lung disease
toimmunity and COPD:clinical implications[J]. Chest, and serum α2 deficiency[J]. Hum Genet,1989,83(1):
2018,153(6):1424-1431 93-96 (下转第59页)

