Novel Therapeutic Approach Targeting CXCR3 to Treat Immunotherapy Myocarditis

被引:0
作者
Huang, Yuhsin Vivian [1 ]
Sun, Yin [1 ]
Chou, Harrison [1 ]
Wagner, Noah [1 ]
Vitale, Maria Rosaria [1 ]
Bayer, Abraham L. [2 ]
Xu, Bruce [1 ]
Lee, Daniel [3 ]
Lin, Zachary [1 ]
Branche, Corynn [1 ]
Waliany, Sarah [4 ,5 ]
Neal, Joel W. [6 ,7 ]
Wakelee, Heather A. [6 ,7 ]
Witteles, Ronald M. [1 ,4 ]
Nguyen, Patricia K. [1 ,4 ]
Graves, Edward E. [8 ]
Berry, Gerald J. [9 ]
Alcaide, Pilar [2 ]
Wu, Sean M. [1 ,4 ]
Zhu, Han [1 ,4 ]
机构
[1] Stanford Cardiovasc Inst, Stanford, CA USA
[2] Tufts Univ, Sch Med, Boston, MA USA
[3] Uniformed Serv Univ Hlth Sci, F Edward Hebert Sch Med, Bethesda, MD USA
[4] Div Cardiovasc Med, Stanford, CA USA
[5] Massachusetts Gen Hosp, Canc Ctr, Boston, MA USA
[6] Div Oncol, Stanford, CA USA
[7] Stanford Canc Inst, Stanford, CA USA
[8] Dept Radiat Oncol, Stanford, CA USA
[9] Dept Pathol, Stanford, CA USA
基金
美国国家卫生研究院;
关键词
chemokines; immune checkpoint inhibitors; macrophages; myocarditis; T-lymphocytes; CHEMOKINE RECEPTOR CXCR3; CELL-MIGRATION; MURINE MODEL; CANCER; MACROPHAGES; METASTASIS; ACTIVATION; KEY;
D O I
10.1161/CIRCRESAHA.124.325652
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
BACKGROUND:Immune checkpoint inhibitors (ICIs) are successful in treating many cancers but may cause immune-related adverse events. ICI-mediated myocarditis has a high fatality rate with severe cardiovascular consequences. Targeted therapies for ICI myocarditis are currently limited.METHODS:We used a genetic mouse model of PD1 deletion (X1MRL/Pdcd1-/-) along with a novel drug-treated ICI myocarditis mouse model to recapitulate the disease phenotype. We performed single-cell RNA-sequencing, single-cell T-cell receptor sequencing, and cellular indexing of transcriptomes and epitopes on immune cells isolated from MRL and MRL/Pdcd1-/- mice at serial time points. We assessed the impact of macrophage deletion in MRL/Pdcd1-/- mice, then inhibited CXCR3 (C-X-C motif chemokine receptor 3) in ICI-treated mice to assess the therapeutic effect on myocarditis phenotype. Furthermore, we delineated the functional and mechanistic effects of CXCR3 blockade on T-cell and macrophage interactions. We then correlated the results in human single-cell multiomics data from blood and heart biopsy data from patients with ICI myocarditis.RESULTS:Single-cell multiomics demonstrated expansion of CXCL (C-X-C motif chemokine ligand) 9/10+CCR2+ macrophages and CXCR3hi (C-X-C motif chemokine receptor 3 high-expressing) CD8+ (cluster of differentiation) effector T lymphocytes in the hearts of MRL/Pdcd1-/- mice correlating with onset of myocarditis development. Both depletion of CXCL9/10+CCR2+ (C-C motif chemokine receptor) macrophages and CXCR3 blockade, respectively, led to decreased CXCR3hi CD8+ T-cell infiltration into the heart and significantly improved survival. Transwell migration assays demonstrated that the selective blockade of CXCR3 and its ligand, CXCL10, reduced CXCR3+CD8+ T-cell migration toward macrophages, implicating this interaction in T-cell cardiotropism toward cardiac macrophages. Furthermore, cardiomyocyte apoptosis was induced by CXCR3hi CD8+ T cells. Cardiac biopsies from patients with confirmed ICI myocarditis demonstrated infiltrating CXCR3+ T cells and CXCL9+/CXCL10+ macrophages. Both mouse cardiac immune cells and patient peripheral blood immune cells revealed expanded TCRs (T-cell receptors) correlating with CXCR3hi CD8+ T cells in ICI myocarditis samples.CONCLUSIONS:These findings bring forth the CXCR3-CXCL9/10 axis as an attractive therapeutic target for ICI myocarditis treatment, and more broadly as a druggable pathway in cardiac inflammation.
引用
收藏
页码:473 / 490
页数:18
相关论文
共 62 条
  • [1] The CXCL10/CXCR3 Axis and Cardiac Inflammation: Implications for Immunotherapy to Treat Infectious and Noninfectious Diseases of the Heart
    Altara, Raffaele
    Mallat, Ziad
    Booz, George W.
    Zouein, Fouad A.
    [J]. JOURNAL OF IMMUNOLOGY RESEARCH, 2016, 2016
  • [2] Left Ventricular Dysfunction and CXCR3 Ligands in Hypertension: From Animal Experiments to a Population-Based Pilot Study
    Altara, Raffaele
    Gu, Yu-Mei
    Struijker-Boudier, Harry A. J.
    Thijs, Lutgarde
    Staessen, Jan A.
    Blankesteijn, W. Matthijs
    [J]. PLOS ONE, 2015, 10 (10):
  • [3] Small Molecule CXCR3 Antagonists
    Andrews, Stephen P.
    Cox, Rhona J.
    [J]. JOURNAL OF MEDICINAL CHEMISTRY, 2016, 59 (07) : 2894 - 2917
  • [4] ARETZ HT, 1987, HUM PATHOL, V18, P619
  • [5] T cells specific for α-myosin drive immunotherapy-related myocarditis
    Axelrod, Margaret L.
    Meijers, Wouter C.
    Screever, Elles M.
    Qin, Juan
    Carroll, Mary Grace
    Sun, Xiaopeng
    Tannous, Elie
    Zhang, Yueli
    Sugiura, Ayaka
    Taylor, Brandie C.
    Hanna, Ann
    Zhang, Shaoyi
    Amancherla, Kaushik
    Tai, Warren
    Wright, Jordan J.
    Wei, Spencer C.
    Opalenik, Susan R.
    Toren, Abigail L.
    Rathmell, Jeffrey C.
    Ferrell, P. Brent
    Phillips, Elizabeth J.
    Mallal, Simon
    Johnson, Douglas B.
    Allison, James P.
    Moslehi, Javid J.
    Balko, Justin M.
    [J]. NATURE, 2022, 611 (7937) : 818 - +
  • [6] Cancer and the chemokine network
    Balkwill, F
    [J]. NATURE REVIEWS CANCER, 2004, 4 (07) : 540 - 550
  • [7] Cytokinopathy with aberrant cytotoxic lymphocytes and profibrotic myeloid response in SARS-CoV-2 mRNA vaccine-associated myocarditis
    Barmada, Anis
    Klein, Jon
    Ramaswamy, Anjali
    Brodsky, Nina N.
    Jaycox, Jillian R.
    Sheikha, Hassan
    Jones, Kate M.
    Habet, Victoria
    Campbell, Melissa
    Sumida, Tomokazu S.
    Kontorovich, Amy
    Bogunovic, Dusan
    Oliveira, Carlos R.
    Steele, Jeremy
    Hall, E. Kevin
    Pena-Hernandez, Mario
    Monteiro, Valter
    Lucas, Carolina
    Ring, Aaron M.
    Omer, Saad B.
    Iwasaki, Akiko
    Yildirim, Inci
    Lucas, Carrie L.
    [J]. SCIENCE IMMUNOLOGY, 2023, 8 (83)
  • [8] Cytotoxic T cells drive doxorubicin-induced cardiac fibrosis and systolic dysfunction
    Bayer, Abraham L.
    Zambrano, Maria A.
    Smolgovsky, Sasha
    Robbe, Zachary L.
    Ariza, Abul
    Kaur, Kuljeet
    Sawden, Machlan
    Avery, Anne
    London, Cheryl
    Asnani, Aarti
    Alcaide, Pilar
    [J]. NATURE CARDIOVASCULAR RESEARCH, 2024, 3 (08): : 970 - 986
  • [9] A Novel Circulating MicroRNA for the Detection of Acute Myocarditis
    Blanco-Dominguez, Rafael
    Sanchez-Diaz, Raquel
    de la Fuente, Hortensia
    Jimenez-Borreguero, Luis J.
    Matesanz-Marin, Adela
    Relano, Marta
    Jimenez-Alejandre, Rosa
    Linillos-Pradillo, Beatriz
    Tsilingiri, Katerina
    Martin-Mariscal, Maria L.
    Alonso-Herranz, Laura
    Moreno, Guillermo
    Martin-Asenjo, Roberto
    Garcia-Guimaraes, Marcos M.
    Bruno, Katelyn A.
    Dauden, Esteban
    Gonzalez-Alvaro, Isidoro
    Villar-Guimerans, Luisa M.
    Martinez-Leon, Amaia
    Salvador-Garicano, Ane M.
    Michelhaugh, Sam A.
    Ibrahim, Nasrien E.
    Januzzi, James L.
    Kottwitz, Jan
    Iliceto, Sabino
    Plebani, Mario
    Basso, Cristina
    Baritussio, Anna
    Seguso, Mara
    Marcolongo, Renzo
    Ricote, Mercedes
    Fairweather, DeLisa
    Bueno, Hector
    Fernandez-Friera, Leticia
    Alfonso, Fernando
    Caforio, Alida L. P.
    Pascual-Figal, Domingo A.
    Heidecker, Bettina
    Luscher, Thomas F.
    Das, Saumya
    Fuster, Valentin
    Ibanez, Borja
    Sanchez-Madrid, Francisco
    Martin, Pilar
    [J]. NEW ENGLAND JOURNAL OF MEDICINE, 2021, 384 (21) : 2014 - 2027
  • [10] Signal transduction by the chemokine receptor CXCR3 - Activation of Ras/ERK, Src, and phosphatidylinositol 3-kinase/Akt controls cell migration and proliferation in human vascular pericytes
    Bonacchi, A
    Romagnani, P
    Romanelli, RG
    Efsen, E
    Annunziato, F
    Lasagni, L
    Francalanci, M
    Serio, M
    Laffi, G
    Pinzani, M
    Gentilini, P
    Marra, F
    [J]. JOURNAL OF BIOLOGICAL CHEMISTRY, 2001, 276 (13) : 9945 - 9954