Augusto-Oliveira M, Arrifano GP, Lopes-Araújo A, Santos-Sacramento L, Takeda PY, Anthony DC, Malva JO, Crespo-Lopez ME (2019) What Do Microglia Really Do in Healthy Adult Brain? Cells 8(10).
Bony BA, Tarudji AW, Miller HA, Gowrikumar S, Roy S, Curtis ET, Gee CC, Vecchio A, Dhawan P, Kievit FM (2021) Claudin-1-Targeted nanoparticles for delivery to Aging-Induced alterations in the blood–brain barrier. ACS Nano 15(11):18520–18531
Article CAS PubMed PubMed Central Google Scholar
Chao Y-C, Pan S-H, Yang S-C, Yu S-L, Che T-F, Lin C-W, Tsai M-S, Chang G-C, Wu C-H, Wu Y-Y, Lee Y-C, Hong T-M, Yang P-C (2009) Claudin-1 is a metastasis suppressor and correlates with clinical outcome in Lung Adenocarcinoma. Am J Respir Crit Care Med 179(2):123–133
Article CAS PubMed Google Scholar
Chen J, Mao S, Li H, Zheng M, Yi L, Lin JM, Lin ZX (2017) The pathological structure of the perivascular niche in different microvascular patterns of glioblastoma. PLoS ONE 12(8):e0182183
Article PubMed PubMed Central Google Scholar
De Bonis P, Anile C, Pompucci A, Fiorentino A, Balducci M, Chiesa S, Lauriola L, Maira G, Mangiola A (2013) The influence of surgery on recurrence pattern of glioblastoma. Clin Neurol Neurosurg 115(1):37–43
Dhawan P (2005) Claudin-1 regulates cellular transformation and metastatic behavior in colon cancer. J Clin Invest 115(7):1765–1776
Article CAS PubMed PubMed Central Google Scholar
Dvorak HF (2003) How tumors make bad blood vessels and stroma. Am J Pathol 162(6):1747–1757
Article CAS PubMed PubMed Central Google Scholar
El-Balat A, Schmeil I, Gasimli K, Sänger N, Karn T, Ahr A, Becker S, Arsenic R, Holtrich U, Engels K (2018) Claudin-1 is linked to presence of implants and micropapillary pattern in serous borderline epithelial tumours of the ovary. J Clin Pathol 71(12):1060–1064
Article CAS PubMed Google Scholar
Elmore MRP, Hohsfield LA, Kramár EA, Soreq L, Lee RJ, Pham ST, Najafi AR, Spangenberg EE, Wood MA, B. L. West and K. N., Green (2018) Replacement of microglia in the aged brain reverses cognitive, synaptic, and neuronal deficits in mice. Aging Cell 17(6): e12832
Escudero-Esparza A, Jiang WG, Martin TA (2012) Claudin-5 is involved in breast cancer cell motility through the N-WASP and ROCK signalling pathways. J Experimental Clin Cancer Res 31(1):43
Farin A, Suzuki SO, Weiker M, Goldman JE, Bruce JN, Canoll P (2006) Transplanted glioma cells migrate and proliferate on host brain vasculature: a dynamic analysis. Glia 53(8):799–808
French AD, Fiori JL, Camilli TC, Leotlela PD, O’Connell MP, Frank BP, Subaran S, Indig FE, Taub DD, Weeraratna AT (2009) PKC and PKA Phosphorylation affect the subcellular localization of Claudin-1 in Melanoma cells. Int J Med Sci 6(2):93–101
Fujita H, Chalubinski M, Rhyner C, Indermitte P, Meyer N, Ferstl R, Treis A, Gomez E, Akkaya A, O’Mahony L, Akdis M, Akdis CA (2011) Claudin-1 expression in airway smooth muscle exacerbates airway remodeling in asthmatic subjects. J Allergy Clin Immunol 127(6):1612–1621e1618
Article CAS PubMed Google Scholar
Garrett M, Fujii Y, Osaka N, Ito D, Hirota Y, Sasaki AT (2021) Emerging Roles of Wild-type and Mutant IDH1 in Growth, Metabolism and Therapeutics of Glioma, Exon Publications: 61–78
Gerd Krause LW, Mueller SL, Reiner F, Haseloff IE, Blasig (2008) Structure and function of claudins. Biochimica et Biophysica Acta Biomembranes 1778(3): 631–645
Geribaldi-Doldán N, Fernández-Ponce C, Quiroz RN, Sánchez-Gomar I, Escorcia LG, Velásquez EP, Quiroz EN (2021) The Role of Microglia in Glioblastoma. Frontiers in Oncology 10.
Greene C, Hanley N, Campbell M (2019) Claudin-5: gatekeeper of neurological function. Fluids Barriers CNS 16(1):3
Article PubMed PubMed Central Google Scholar
Grochans S, Cybulska AM, Simińska D, Korbecki J, Kojder K, Chlubek D, Baranowska-Bosiacka I (2022) Epidemiol Glioblastoma Multiforme–Literature Rev Cancers 14(10):2412
Jackson S, ElAli A, Virgintino D, Gilbert MR (2017) Blood-brain barrier pericyte importance in malignant gliomas: what we can learn from stroke and Alzheimer’s disease. Neuro Oncol 19(9):1173–1182
Article CAS PubMed PubMed Central Google Scholar
Jiang Y-S, Wang F-R (2013) Caloric restriction reduces edema and prolongs survival in a mouse glioma model. J Neurooncol 114(1):25–32
Karnati HK, Panigrahi M, Shaik NA, Greig NH, Bagadi SA, Kamal MA, Kapalavayi N (2014) Down regulated expression of Claudin-1 and Claudin-5 and up regulation of β-catenin: association with human glioma progression. CNS Neurol Disord Drug Targets 13(8):1413–1426
Article CAS PubMed PubMed Central Google Scholar
Kinugasa T, Huo Q, Higashi D, Shibaguchi H, Kuroki M, Tanaka T, Futami K, Yamashita Y, Hachimine K, Maekawa S, Nabeshima K, Iwasaki H, Kuroki M (2007) Selective up-regulation of claudin-1 and claudin-2 in colorectal cancer. Anticancer Res 27(6a):3729–3734
Koto T, Takubo K, Ishida S, Shinoda H, Inoue M, Tsubota K, Okada Y, Ikeda E (2007) Hypoxia disrupts the barrier function of neural blood vessels through changes in the expression of Claudin-5 in endothelial cells. Am J Pathol 170(4):1389–1397
Article CAS PubMed PubMed Central Google Scholar
Lee K-H, Kang K-J, Moon K-S, Jung T-Y, Jung S, Kim J-H, Kim H-S, Lee M-C (2012) Prognostic significance of neuronal marker expression in glioblastomas. Child’s Nerv Syst 28(11):1879–1886
Li Z, Zhao W, He B, Koh TS, Li Y, Zeng Y, Zhang Z, Zhang J, Hou Z (2020) Application of distributed parameter model to Assessment of Glioma IDH Mutation Status by Dynamic contrast-enhanced magnetic resonance imaging. Contrast Media Mol Imaging 2020:1–11
Liebner S, Fischmann A, Rascher G, Duffner F, Grote EH, Kalbacher H, Wolburg H (2000) Claudin-1 and claudin-5 expression and tight junction morphology are altered in blood vessels of human glioblastoma multiforme. Acta Neuropathol 100(3):323–331
Article CAS PubMed Google Scholar
Lin P, Tan R, Yu P, Li Y, Mo Y, Li W, Zhang J (2022) Autophagic degradation of claudin-5 mediated by its binding to a Clostridium perfringens enterotoxin fragment modulates endothelial barrier permeability. FEBS Lett 596(7):924–937
Article CAS PubMed Google Scholar
Mahati S, Bolati D, Yang Y, Mao R, Zhang H, Bao Y (2017) TMPRSS4 promotes cancer stem cell traits by regulating CLDN1 in hepatocellular carcinoma. Biochem Biophys Res Commun 490(3):906–912
Article CAS PubMed Google Scholar
Maruno M, Kovach JS, Kelly PJ, Yanagihara T (1997) Distribution of endogenous tumour necrosis factor alpha in gliomas. J Clin Pathol 50(7):559–562
Article CAS PubMed PubMed Central Google Scholar
Miller HA, Priester A, Curtis ET, Hilmas K, Abbott A, Kievit FM, Convertine AJ (2024) Optimized gadolinium-DO3A loading in RAFT-polymerized copolymers for superior MR imaging of aging blood–brain barrier. Sensors & Diagnostics
Oku N, Sasabe E, Ueta E, Yamamoto T, Osaki T (2006) Tight junction protein claudin-1 enhances the invasive activity of oral squamous cell carcinoma cells by promoting cleavage of laminin-5 gamma2 chain via matrix metalloproteinase (MMP)-2 and membrane-type MMP-1. Cancer Res 66(10):5251–5257
Article CAS PubMed Google Scholar
Pandey N, Anastasiadis P, Carney CP, Kanvinde PP, Woodworth GF, Winkles JA, Kim AJ (2022) Nanotherapeutic treatment of the invasive glioblastoma tumor microenvironment. Adv Drug Deliv Rev 188:114415
Article CAS PubMed PubMed Central Google Scholar
Pfeiffer F, Schäfer J, Lyck R, Makrides V, Brunner S, Schaeren-Wiemers N, Deutsch U, Engelhardt B (2011) Claudin-1 induced sealing of blood–brain barrier tight junctions ameliorates chronic experimental autoimmune encephalomyelitis. Acta Neuropathol 122(5):601–614
Article CAS PubMed PubMed Central Google Scholar
Price M, Neff C, Nagarajan N, Kruchko C, Waite KA, Cioffi G, Cordeiro BB, Willmarth N, Penas-Prado M, Gilbert MR, Armstrong TS, Barnholtz-Sloan JS, Ostrom QT (2024) CBTRUS Statistical Report: American Brain Tumor Association & NCI Neuro-Oncology Branch Adolescent and young adult primary brain and other Central Nervous System tumors diagnosed in the United States in 2016–2020. NeuroOncol 26(Supplement_3):iii1–iii53
Rado M, Flepisi B, Fisher D (2022) The Effect of Normoxic and Hypoxic U-87 Glioblastoma Paracrine Secretion on the modulation of Brain endothelial cells. Cells 11(2):276
Article CAS PubMed PubMed Central Google Scholar
Roehlen N, Saviano A, El Saghire H, Crouchet E, Nehme Z, Del Zompo F, Jühling F, Oudot MA, Durand SC, Duong FHT, Cherradi S, Gonzalez Motos V, Almeida N, Ponsolles C, Heydmann L, Ostyn T, Lallement A, Pessaux P, Felli E, Cavalli A, Sgrignani J, Thumann C, Koutsopoulos O, Fuchs BC, Hoshida Y, Hofmann M, Vyberg M, Viuff BM, Galsgaard ED, Elson G, Toso A, Meyer M, Iacone R, Schweighoffer T, Teixeira G, Moll S, De Vito C, Roskams T, Davidson I, Heide D, Heikenwälder M, Zeisel MB, Lupberger J, Mailly L, Schuster C, Baumert TF (2022) A monoclonal antibody targeting nonjunctional claudin-1 inhibits fibrosis in patient-derived models by modulating cell plasticity. Sci Transl Med 14(676):eabj4221
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