- Albertini et al., 2018
G. Albertini, L. Deneyer, S. Ottestad-Hansen, Y. Zhou, G. Ates, L. Walrave, et al.
Genetic deletion of xCT attenuates peripheral and central inflammation and mitigates LPS-induced sickness and depressive-like behavior in mice
Glia, 66 (9) (2018), pp. 1845-1861
- Angelini et al., 2002
G. Angelini, S. Gardella, M. Ardy, M.R. Ciriolo, G. Filomeni, G. Di Trapani, et al.
Antigen-presenting dendritic cells provide the reducing extracellular microenvironment required for T lymphocyte activation
PNAS, 99 (3) (2002), pp. 1491-1496
- Arensman et al., 2019
M.D. Arensman, X.S. Yang, D.M. Leahy, L. Toral-Barza, M. Mileski, E.C. Rosfjord, et al.
Cystine–glutamate antiporter xCT deficiency suppresses tumor growth while preserving antitumor immunity
PNAS, 116 (19) (2019), pp. 9533-9542
- Argilés et al., 2019
J.M. Argilés, F.J. López-Soriano, B. Stemmler, S. Busquets
Therapeutic strategies against cancer cachexia
Eur J Transl Myol., 29 (1) (2019), p. 7960
- Badgley et al., 2020
MA Badgley, DM Kremer, HC Maurer, KE Delgiorno, HJ Lee, V Purohit, et al.
Cysteine depletion induces pancreatic tumor ferroptosis in mice
Science, 368 (6486) (2020), pp. 85-89
View at publisher This article is free to access.
- Beckers et al., 2022
P. Beckers, O. Lara, I. Belo do Nascimento, N. Desmet, A. Massie, E. Hermans
Validation of a system xc– functional assay in cultured astrocytes and nervous tissue samples
Front. Cell. Neurosci., 15 (2022), p. 815771
- Bentea et al., 2015
E. Bentea, T. Demuyser, J. Van Liefferinge, G. Albertini, L. Deneyer, J. Nys, et al.
Absence of system xc- in mice decreases anxiety and depressive-like behavior without affecting sensorimotor function or spatial vision
Prog. Neuropsychopharmacol. Biol. Psychiatry (59) (2015), pp. 49-58
- Briggs et al., 2016
K.J. Briggs, P. Koivunen, S. Cao, K.M. Backus, B.A. Olenchock, H. Patel, et al.
Paracrine Induction of HIF by Glutamate in Breast Cancer: EglN1 Senses Cysteine
Cell, 166 (1) (2016), pp. 126-139
- Chandra et al., 2017
D. Chandra, B.C. Selvanesan, Z. Yuan, S.K. Libutti, W. Koba, A. Beck, et al.
32-Phosphorus selectively delivered by listeria to pancreatic cancer demonstrates a strong therapeutic effect
Oncotarget, 8 (13) (2017), pp. 20729-20740
- Connor and Gallinger, 2022
A.A. Connor, S. Gallinger
Pancreatic cancer evolution and heterogeneity: integrating omics and clinical data
Nat. Rev. Cancer, 22 (3) (2022), pp. 131-142
- Conti et al., 2020
L. Conti, E. Bolli, A. di Lorenzo, V. Franceschi, F. Macchi, F. Riccardo, et al.
Immunotargeting of the xCT Cystine/Glutamate Antiporter Potentiates the Efficacy of HER2-Targeted Immunotherapies in Breast Cancer
Cancer Immunol. Res., 8 (8) (2020), pp. 1039-1053
- Daher et al., 2019
B. Daher, S.K. Parks, J. Durivault, Y. Cormerais, H. Baidarjad, E. Tambutte, et al.
Genetic ablation of the cystine transporter xCT in PDAC cells inhibits mTORC1, growth, survival, and tumor formation via nutrient and oxidative stresses
Cancer Res., 79 (15) (2019), pp. 3877-3890
- Dantzer, 2006
R. Dantzer
Cytokine, sickness behavior, and depression
Neurol. Clin., 24 (3) (2006), pp. 441-460
- Davis et al., 2022
N.E. Davis, J.J. Hue, R.K. Kyasaram, M. Elshami, H.J. Graor, M. Zarei, et al.
Prodromal depression and anxiety are associated with worse treatment compliance and survival among patients with pancreatic cancer
Psychooncology, 31 (8) (2022), pp. 1390-1398
- De Bundel et al., 2011
D. De Bundel, A. Schallier, E. Loyens, R. Fernando, H. Miyashita, J. Van Liefferinge, et al.
Loss of system x(c)- does not induce oxidative stress but decreases extracellular glutamate in hippocampus and influences spatial working memory and limbic seizure susceptibility
J. Neurosci., 31 (15) (2011), pp. 5792-5803
- Deacon, 2006
R.M.J. Deacon
Assessing nest building in mice
Nat. Protoc., 1 (3) (2006), pp. 1117-1119
- Espinet et al., 2021
E. Espinet, Z. Gu, C.D. Imbusch, N.A. Giese, M. Büscher, M. Safavi, et al.
Aggressive PDACs Show Hypomethylation of Repetitive Elements and the Execution of an Intrinsic IFN Program Linked to a Ductal Cell of Origin
Cancer Discov., 11 (3) (2021), pp. 638-659
- Foley et al., 2015
K. Foley, A.A. Rucki, Q. Xiao, D. Zhou, A. Leubner, G. Mo, et al.
Semaphorin 3D autocrine signaling mediates the metastatic role of annexin A2 in pancreatic cancer
Sci. Signal., 8 (388) (2015), p. ra77
- Greco et al., 2015
S.H. Greco, L. Tomkötter, A.K. Vahle, R. Rokosh, A. Avanzi, S.K. Mahmood, et al.
TGF-β Blockade Reduces Mortality and Metabolic Changes in a Validated Murine Model of Pancreatic Cancer Cachexia
PLoS One, 10 (7) (2015), p. e0132786
- Grossberg et al., 2010
A.J. Grossberg, J.M. Scarlett, D.L. Marks
Hypothalamic mechanisms in cachexia
Physiol. Behav., 100 (5) (2010), pp. 478-489
- Henderson et al., 2018
S.E. Henderson, N. Makhijani, T.A. Mace
Pancreatic Cancer-Induced Cachexia and Relevant Mouse Models
Pancreas, 47 (8) (2018), pp. 937-945
- Hu et al., 2020
K. Hu, K. Li, J. Lv, J. Feng, J. Chen, H. Wu, et al.
Suppression of the SLC7A11/glutathione axis causes synthetic lethality in KRAS-mutant lung adenocarcinoma
J. Clin. Invest., 130 (4) (2020), pp. 1752-1766
- Janssen et al., 2023
P. Janssen, L. De Pauw, M. Mambretti, O. Lara, J. Walckiers, L. Mackens, et al.
Characterization of the long-term effects of lethal total body irradiation followed by bone marrow transplantation on the brain of C57BL/6 mice
Int. J. Radiat Biol., 17 (2023), pp. 1-14
- Ji et al., 2018
X. Ji, J. Qian, S.M.J. Rahman, P.J. Siska, Y. Zou, B.K. Harris, et al.
xCT (SLC7A11)-mediated metabolic reprogramming promotes non-small cell lung cancer progression
Oncogene, 37 (36) (2018), pp. 5007-5019
View at publisher This article is free to access.
- Jyotsana et al., 2022
N. Jyotsana, K.T. Ta, K.E. DelGiorno
The Role of Cystine/Glutamate Antiporter SLC7A11/xCT in the Pathophysiology of Cancer
Front. Oncol., 12 (2022), Article 858462
- Kartikasari et al., 2021
A.E.R. Kartikasari, C.S. Huertas, A. Mitchell, M. Plebanski
Tumor-Induced Inflammatory Cytokines and the Emerging Diagnostic Devices for Cancer Detection and Prognosis
Front. Oncol., 11 (2021), Article 692142
- Kinoshita et al., 2013
H. Kinoshita, H. Okabe, T. Beppu, A. Chikamoto, H. Hayashi, K. Imai, et al.
Cystine/glutamic acid transporter is a novel marker for predicting poor survival in patients with hepatocellular carcinoma
Oncol. Rep., 29 (2) (2013), pp. 685-689
- Kleeff et al., 2016
J. Kleeff, M. Korc, M. Apte, C. La Vecchia, C.D. Johnson, A.V. Biankin, et al.
Pancreatic Cancer. Nat Rev Dis Primers., 21 (2) (2016), p. 16022
- Kofanova et al., 2014
O.A. Kofanova, K. Davis, B. Glazer, Y. De Souza, J. Kessler, F. Betsou, et al.
Viable mononuclear cell stability study for implementation in a proficiency testing program: impact of shipment conditions
Biopreserv Biobank., 12 (3) (2014), pp. 206-216
- Lee and Giuliani, 2019
C.H. Lee, F. Giuliani
The Role of Inflammation in Depression and Fatigue
Front. Immunol., 10 (2019), p. 1696
- Levring et al., 2012
T.B. Levring, A.K. Hansen, B.L. Nielsen, M. Kongsbak, M.R. von Essen, A. Woetmann, et al.
Activated human CD4+ T cells express transporters for both cysteine and cystine
- Lewerenz et al., 2013
J. Lewerenz, S.J. Hewett, Y. Huang, M. Lambros, P.W. Gout, P.W. Kalivas, et al.
The cystine/glutamate antiporter system xc- in health and disease: From molecular mechanisms to novel therapeutic opportunities
Antioxid. Redox Signal., 18 (2013), pp. 522-555
- Li et al., 2022
B. Li, C. Yang, G. Jia, Y. Liu, N. Wang, F. Yang, et al.
Comprehensive evaluation of the effects of long-term cryopreservation on peripheral blood mononuclear cells using flow cytometry
BMC Immunol., 23 (1) (2022), p. 30
- Lim et al., 2019
J.K.M. Lim, A. Delaidelli, S.W. Minaker, H.F. Zhang, M. Colovic, H. Yang, et al.
Cystine/glutamate antiporter xCT (SLC7A11) facilitates oncogenic RAS transformation by preserving intracellular redox balance
PNAS, 116 (19) (2019), pp. 9433-9442
- Lippi and Mattiuzzi, 2020
G. Lippi, C. Mattiuzzi
The global burden of pancreatic cancer
Arch. Med. Sci., 16 (4) (2020), pp. 820-824
- Lo et al., 2008
M. Lo, Y.Z. Wang, P.W. Gout
The x(c)- cystine/glutamate antiporter: a potential target for therapy of cancer and other diseases
J. Cell. Physiol., 215 (3) (2008), pp. 593-602
- Lo et al., 2008
M. Lo, V. Ling, Y.Z. Wang, P.W. Gout
The xc- cystine/glutamate antiporter: A mediator of pancreatic cancer growth with a role in drug resistance
Br. J. Cancer, 99 (3) (2008), pp. 464-472
View at publisher This article is free to access.
- Long et al., 2020
Y. Long, H. Tao, A. Karachi, A.J. Grippin, L. Jin, Y.E. Chang, et al.
Dysregulation of Glutamate Transport Enhances Treg Function That Promotes VEGF Blockade Resistance in Glioblastoma
Cancer Res., 80 (3) (2020), pp. 499-509
- Mai et al., 2013
J. Mai, A. Virtue, J. Shen, H. Wang, X.F. Yang
An evolving new paradigm: endothelial cells–conditional innate immune cells
J. Hematol. Oncol., 22 (6) (2013), p. 61
View at publisher This article is free to access.
- Massie et al., 2011
A. Massie, A. Schallier, S.W. Kim, R. Fernando, S. Kobayashi, H. Beck, et al.
Dopaminergic neurons of system x c – -deficient mice are highly protected against 6-hydroxydopamine-induced toxicity
FASEB J., 25 (4) (2011), pp. 1359-1369
- Massie et al., 2015
A. Massie, S. Boillée, S. Hewett, L. Knackstedt, J. Lewerenz
Main path and byways: Non-vesicular glutamate release by system xc- as an important modifier of glutamatergic neurotransmission
J. Neurochem., 135 (6) (2015), pp. 1062-1079
View at publisher This article is free to access.
- Michaelis et al., 2017
K.A. Michaelis, X. Zhu, K.G. Burfeind, S.M. Krasnow, P.R. Levasseur, T.K. Morgan, et al.
Establishment and characterization of a novel murine model of pancreatic cancer cachexia
J. Cachexia. Sarcopenia Muscle, 8 (5) (2017), pp. 824-838
View at publisher This article is free to access.
- Mizrahi et al., 2020
J.D. Mizrahi, R. Surana, J.W. Valle, R.T. Shroff
Pancreatic cancer
Lancet, 395 (10242) (2020), pp. 2008-2020
- Morton et al., 2010
J.P. Morton, P. Timpson, S.A. Karim, R.A. Ridgway, D. Athineos, B. Doyle, et al.
Mutant p53 drives metastasis and overcomes growth arrest/senescence in pancreatic cancer
PNAS, 107 (1) (2010), pp. 246-251
- Nashed et al., 2017
M.G. Nashed, R.G. Ungard, K. Young, N.J. Zacal, E.P. Seidlitz, J. Fazzari, et al.
Behavioural effects of using sulfasalazine to inhibit glutamate released by cancer cells: A novel target for cancer-induced depression
Sci. Rep., 25 (2017), p. 7
- Pober and Sessa, 2007
J.S. Pober, W.C. Sessa
Evolving functions of endothelial cells in inflammation
Nat. Rev. Immunol., 7 (10) (2007), pp. 803-815
- Popoli et al., 2011
M. Popoli, Z. Yan, B.S. McEwen, G. Sanacora
The stressed synapse: the impact of stress and glucocorticoids on glutamate transmission
Nat. Rev. Neurosci., 13 (1) (2011), pp. 22-37
- Poulia et al., 2020
K.A. Poulia, P. Sarantis, D. Antoniadou, E. Koustas, A. Papadimitropoulou, A.G. Papavassiliou, et al.
Pancreatic Cancer and Cachexia-Metabolic Mechanisms and Novel Insights
Nutrients, 12 (6) (2020), p. 1543
- Procaccini et al., 2021
C. Procaccini, S. Garavelli, F. Carbone, D. di Silvestre, C. la Rocca, D. Greco, et al.
Signals of pseudo-starvation unveil the amino acid transporter SLC7A11 as key determinant in the control of Treg cell proliferative potential
Immunity, 54 (7) (2021), pp. 1543-1560.e6
- Reed et al., 2012
S.A. Reed, P.B. Sandesara, S.M. Senf, A.R. Judge
Inhibition of FoxO transcriptional activity prevents muscle fiber atrophy during cachexia and induces hypertrophy
FASEB J., 26 (3) (2012), pp. 987-1000
- Safinia et al., 2016
N. Safinia, T. Vaikunthanathan, H. Fraser, S. Thirkell, K. Lowe, L. Blackmore, et al.
Successful expansion of functional and stable regulatory T cells for immunotherapy in liver transplantation
Oncotarget, 7 (7) (2016), pp. 7563-7577
- Santos and Pyter, 2018
J.C. Santos, L.M. Pyter
Neuroimmunology of Behavioral Comorbidities Associated With Cancer and Cancer Treatments
Front. Immunol., 9 (2018), p. 1195
- Sato et al., 2005
H. Sato, A. Shiiya, M. Kimata, K. Maebara, M. Tamba, Y. Sakakura, et al.
Redox imbalance in cystine/glutamate transporter-deficient mice
J. Biol. Chem., 280 (45) (2005), pp. 37423-37429
- Sharbeen et al., 2021
G. Sharbeen, J.A. McCarroll, A. Akerman, C. Kopecky, J. Youkhana, J. Kokkinos, et al.
Cancer-Associated Fibroblasts in Pancreatic Ductal Adenocarcinoma Determine Response to SLC7A11 Inhibition
Cancer Res., 81 (13) (2021), pp. 3461-3479
- Siska et al., 2016
P.J. Siska, B. Kim, X. Ji, M.D. Hoeksema, P.P. Massion, K.E. Beckermann, et al.
Fluorescence-based measurement of cystine uptake through xCT shows requirement for ROS detoxification in activated lymphocytes
J. Immunol. Methods, 438 (2016), pp. 51-58
- Srivastava et al., 2010
M.K. Srivastava, P. Sinha, V.K. Clements, P. Rodriguez, S. Ostrand-Rosenberg
Myeloid-derived suppressor cells inhibit T-cell activation by depleting cystine and cysteine
Cancer Res., 70 (1) (2010), pp. 68-77
- Starheim et al., 2016
K.K. Starheim, T. Holien, K. Misund, I. Johansson, K.A. Baranowska, A.M. Sponaas, et al.
Intracellular glutathione determines bortezomib cytotoxicity in multiple myeloma cells
Blood Cancer J., 6 (7) (2016), p. e446
View at publisher This article is free to access.
- Sun et al., 2022
Y. Sun, Y. Koyama, S. Shimada
Inflammation From Peripheral Organs to the Brain: How Does Systemic Inflammation Cause Neuroinflammation?
Front. Aging Neurosci., 14 (2022), Article 903455
- Takeuchi et al., 2013
S. Takeuchi, K. Wada, T. Toyooka, N. Shinomiya, H. Shimazaki, K. Nakanishi, et al.
Increased xCT expression correlates with tumor invasion and outcome in patients with glioblastomas
Neurosurgery, 72 (1) (2013), pp. 33-41
- Tan et al., 2014
C.R. Tan, P.M. Yaffee, L.H. Jamil, S.K. Lo, N. Nissen, S.J. Pandol, et al.
Pancreatic Cancer Cachexia: A Review of Mechanisms and Therapeutics, 5, Frontiers in Physiology 5, 88. (2014), p. 88
- Tang et al., 2023
B. Tang, Y. Wang, W. Xu, J. Zhu, Q. Weng, W. Chen, et al.
Macrophage xCT deficiency drives immune activation and boosts responses to immune checkpoint blockade in lung cancer
Cancer Lett., 1 (554) (2023), Article 216021
- Van Liefferinge et al., 2016
J. Van Liefferinge, E. Bentea, T. Demuyser, G. Albertini, V. Follin-Arbelet, S. Holmseth, et al.
Comparative analysis of antibodies to xCT (Slc7a11): Forewarned is forearmed
J Comp Neurol, 524 (5) (2016), pp. 1015-1032
- Verbruggen et al., 2022
L. Verbruggen, G. Ates, O. Lara, J. De Munck, A. Villers, L. De Pauw, et al.
Lifespan extension with preservation of hippocampal function in aged system xc−-deficient male mice
Mol. Psychiatry, 27 (4) (2022), pp. 2355-2368
View at publisherThis article is free to access.
- Wang et al., 2016
S.F. Wang, M.S. Chen, Y.C. Chou, Y.F. Ueng, P.H. Yin, T.S. Yeh, et al.
Mitochondrial dysfunction enhances cisplatin resistance in human gastric cancer cells via the ROS-activated GCN2-eIF2α-ATF4-xCT pathway
Oncotarget, 7 (45) (2016), pp. 74132-74151
- Wang et al., 2012
Y. Wang, Y. Zhang, J. Yang, X. Ni, S. Liu, Z. Li, et al.
Genomic sequencing of key genes in mouse pancreatic cancer cells
Curr. Mol. Med., 12 (3) (2012), pp. 331-341
- Yang et al., 2020
Q. Yang, K. Li, X. Huang, C. Zhao, Y. Mei, X. Li, et al.
lncRNA SLC7A11-AS1 Promotes Chemoresistance by Blocking SCFβ-TRCP-Mediated Degradation of NRF2 in Pancreatic Cancer
Mol. Ther. Nucleic Acids, 6 (19) (2020), pp. 974-985
- Zhang et al., 2016
P. Zhang, W. Wang, Z. Wei, L.I. Xu, X. Yang, Du y.
xCT expression modulates cisplatin resistance in Tca8113 tongue carcinoma cells
Oncol. Lett., 12 (1) (2016), pp. 307-314
- Zimmers et al., 2016
T.A. Zimmers, M.L. Fishel, A. Bonetto
STAT3 in the systemic inflammation of cancer cachexia
Semin Cell Dev Biol., 54 (2016), pp. 28-41
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