1. 1 Li Y, Cao Y, Xiao J, et al. (2020): Inhibitor of apoptosis-stimulating protein of p53 inhibits ferroptosis and alleviates intestinal ischemia/reperfusion-induced acute lung injury. Cell Death Differ 27: 2635-2650.
2.
Taotao Q, Ren B, Fan Y, et al. (2022): Capsaicin inhibits the migration, invasion and EMT of renal cancer cells by inducing AMPK/mTOR-mediated autophagy. Chem Biol Interact 366: 110043-110043.
3.
Tram NDT, Tran QTN, Xu J, et al. (2023): Multifunctional antibacterial nanonets attenuate inflammatory responses through selective trapping of endotoxins and pro-inflammatory cytokines. Adv Healthc Mater 12: e2203232.
4.
Gouda MM, Bhandary YP (2019): Acute lung injury: IL-17A-mediated inflammatory pathway and its regulation by curcumin. Inflammation 42: 1160-1169.
5.
Peng D, Chen Y, Sun Y, et al. (2023): Saikosaponin A and its epimers alleviate LPS-induced acute lung injury in mice. Molecules 28: 967.
6.
Zhou J, Peng Z, Wang J (2021): Trelagliptin alleviates lipopolysaccharide (LPS)-induced inflammation and oxidative stress in acute lung injury mice. Inflammation 44: 1507-1517.
7.
Long ME, Mallampalli RK, Horowitz JC (2022): Pathogenesis of pneumonia and acute lung injury. Clin Sci 136: 747-769.
8.
Zhang Y, Cui Y, Feng Y, et al. (2022): Lentinus edodes polysaccharides alleviate acute lung injury by inhibiting oxidative stress and inflammation. Molecules 27: 7328.
9.
Liang H, Liu G, Zeng W, et al. (2023): MEGF6 prevents sepsis-induced acute lung injury in mice. Int Immunopharmacol 123: 110727.
10.
McConnell BB, Yang VW (2010): Mammalian Krüppel-like factors in health and diseases. Physiol Rev 90: 1337-1381.
11.
Qiu T, Yang X, Wang J, et al. (2022): Obesity-induced elevated palmitic acid promotes inflammation and glucose metabolism disorders through GPRs/NF-B/KLF7 pathway. Nutr Diabetes 12: 23.
12.
Cao J, Ni Y, Zhang H, et al. (2022): Inhibition of Kruppel-like factor 7 attenuates cell proliferation and inflammation of fibroblast-like synoviocytes in rheumatoid arthritis through nuclear factor B and mitogen-activated protein kinase signaling pathway. Exp Anim 71: 356-367.
13.
Yang X, Liang M, Tang Y, et al. (2023): KLF7 promotes adipocyte inflammation and glucose metabolism disorder by activating the PKC/NF-B pathway. FASEB J 37: e23033.
14.
Huang WH, Xue YJ, Zhou YJ, et al. (2020): KLF7 promotes macrophage activation by activating the NF-B signaling pathway in epicardial adipose tissue in patients with coronary artery disease. Eur Rev Med Pharmacol Sci 24: 7002-7014.
15.
Jiang L, Wang M, Sun R, et al. (2021): Methylation of miR-19b-3p promoter exacerbates inflammatory responses in sepsis-induced ALI via targeting KLF7. Cell Biol Int 45: 1666-1675.
16.
Villalonga E, Mosrin C, Normand T, et al. (2023): LIM kinases, LIMK1 and LIMK2, are crucial node actors of the cell fate: Molecular to pathological features. Cells 12: 805.
17.
Chatterjee D, Preuss F, Dederer V, et al. (2022): Structural aspects of LIMK regulation and pharmacology. Cells 11: 142.
18.
Ni J, Li G, Dai N, et al. (2023): Esculin alleviates LPS-induced acute lung injury via inhibiting neutrophil recruitment and migration. Int Immunopharmacol 119: 110177.
19.
Min S, Tao W, Ding D, et al. (2022): Tetramethylpyrazine ameliorates acute lung injury by regulating the Rac1/LIMK1 signaling pathway. Front Pharmacol 13: 1005014.
20.
Gorovoy M, Han J, Pan H, et al. (2009): LIM kinase 1 promotes endothelial barrier disruption and neutrophil infiltration in mouse lungs. Circ Res 105: 549-556.
21.
Aubol BE, Adams JA (2022): SRPK1 regulates RNA binding in a pre-spliceosomal complex using a catalytic bypass mechanism. FEBS J 289: 7428-7445.
22.
Wei X, Xu S, Chen L (2021): LncRNA Neat1/miR-298-5p/Srpk1 contributes to sevoflurane-induced neurotoxicity. Neurochem Res 46: 3356-3364.
23.
Li Z, Li A, Yan L, et al. (2020): Downregulation of long noncoding RNA DLEU1 attenuates hypersensitivity in chronic constriction injury-induced neuropathic pain in rats by targeting miR-133a-3p/SRPK1 axis. Mol Med 26: 104.
24.
Guo W, Hu Z (2023): SRPK1 promotes sepsis-induced acute lung injury via regulating PI3K/AKT/FOXO3 signaling. Immunopharmacol Immunotoxicol 45: 203-212.
25.
Yao Y, Wang H, Xi X, et al. (2021): miR-150 and SRPK1 regulate AKT3 expression to participate in LPS-induced inflammatory response. Innate Immun 27: 343-350.
26.
Malvi P, Janostiak R, Chava S, et al. (2020): LIMK2 promotes the metastatic progression of triple-negative breast cancer by activating SRPK1. Oncogenesis 9: 77.
27.
Li S, Li S, Gao Z, Liu Y (2024): LncRNA HOTTIP promotes LPS-induced lung epithelial cell injury by recruiting DNMT1 to epigenetically regulate SP-C. J Cell Commun Signal 18: e12020.
28.
Zhao PW, Cui JX, Wang XM (2024): Upregulation of p300 in paclitaxel-resistant TNBC: implications for cell proliferation via the PCK1/AMPK axis. Pharmacogenomics J 24: 5.
29.
Li F, Xian D, Huang J, et al. (2023): SP1-induced upregulation of LncRNA AFAP1-AS1 promotes tumor progression in triple-negative breast cancer by regulating mTOR pathway. Int J Mol Sci 24: 13401.
30.
Mansuer M, Zhou L, Wang C, et al. (2024): Erianin induces ferroptosis in GSCs via REST/LRSAM1 mediated SLC40A1 ubiquitination to overcome TMZ resistance. Cell Death Dis 15: 522.
31.
Chen B, Lin W, Qi W, et al. (2020): Cofilin inhibition by Limk1 reduces rod formation and cell apoptosis after ischemic stroke. Neuroscience 444: 64-75.
32.
Hu Q, Zhang S, Yang Y, et al. (2022): Extracellular vesicles in the pathogenesis and treatment of acute lung injury. Mil Med Res 9: 61.
33.
Millar MW, Fazal F, Rahman A (2022): Therapeutic Targeting of NF-B in Acute Lung Injury: A Double-Edged Sword. Cells 11: 3317.
34.
Cao Z, Sun X, Icli B, et al. (2010): Role of Kruppel-like factors in leukocyte development, function, and disease. Blood 116: 4404-4414.
35.
Zhang M, Wang C, Wu J, et al. (2018): The effect and mechanism of KLF7 in the TLR4/NF-B/IL-6 inflammatory signal pathway of adipocytes. Mediators Inflamm 2018: 1756494.
36.
Xia L, Zhang C, Lv N, et al. (2022): AdMSC-derived exosomes alleviate acute lung injury via transferring mitochondrial component to improve homeostasis of alveolar macrophages. Theranostics 12: 2928-2947.
37.
Maldonado-Contreras A, Birtley JR, Boll E, et al. (2017): Shigella depends on SepA to destabilize the intestinal epithelial integrity via cofilin activation. Gut Microbes 8: 544-560.
38.
Gorovoy M, Koga T, Shen X, et al. (2008): Downregulation of LIM kinase 1 suppresses ocular inflammation and fibrosis. Mol Vis 14: 1951-1959.
39.
Duggan WP, O’Connell E, Prehn JHM, Burke JP (2022): Serine-arginine protein kinase 1 (SRPK1): A systematic review of its multimodal role in oncogenesis. Mol Cell Biochem 477: 2451-2467.
40.
Chen L, Sun K, Qin W, et al. (2023): LIMK1 m(6)A-RNA methylation recognized by YTHDC2 induces 5-FU chemoresistance in colorectal cancer via endoplasmic reticulum stress and stress granule formation. Cancer Lett 576: 216420.