(en) Pierre-Louis Loyher, Juliette Rochefort, Camille Baudesson de Chanville et Pauline Hamon, « CCR2 Influences T Regulatory Cell Migration to Tumors and Serves as a Biomarker of Cyclophosphamide Sensitivity », Cancer Research, vol. 76, no 22, , p. 6483–6494 (ISSN0008-5472 et 1538-7445, DOI10.1158/0008-5472.CAN-16-0984, lire en ligne, consulté le )
(en) Jee H. Lee, Seung G. Kang et Chang H. Kim, « FoxP3+ T Cells Undergo Conventional First Switch to Lymphoid Tissue Homing Receptors in Thymus but Accelerated Second Switch to Nonlymphoid Tissue Homing Receptors in Secondary Lymphoid Tissues », The Journal of Immunology, vol. 178, no 1, , p. 301–311 (ISSN0022-1767 et 1550-6606, DOI10.4049/jimmunol.178.1.301, lire en ligne, consulté le )
(en) Kim S. C. Weber, Peter J. Nelson, Hermann-Joseph Gröne et Christian Weber, « Expression of CCR2 by Endothelial Cells: Implications for MCP-1 Mediated Wound Injury Repair and In Vivo Inflammatory Activation of Endothelium », Arteriosclerosis, Thrombosis, and Vascular Biology, vol. 19, no 9, , p. 2085–2093 (ISSN1079-5642 et 1524-4636, DOI10.1161/01.ATV.19.9.2085, lire en ligne, consulté le )
(en) I F Charo, S J Myers, A Herman et C Franci, « Molecular cloning and functional expression of two monocyte chemoattractant protein 1 receptors reveals alternative splicing of the carboxyl-terminal tails. », Proceedings of the National Academy of Sciences, vol. 91, no 7, , p. 2752–2756 (ISSN0027-8424 et 1091-6490, PMID8146186, PMCIDPMC43448, DOI10.1073/pnas.91.7.2752, lire en ligne, consulté le )
(en) Jee H. Lee, Seung G. Kang et Chang H. Kim, « FoxP3+ T Cells Undergo Conventional First Switch to Lymphoid Tissue Homing Receptors in Thymus but Accelerated Second Switch to Nonlymphoid Tissue Homing Receptors in Secondary Lymphoid Tissues », The Journal of Immunology, vol. 178, no 1, , p. 301–311 (ISSN0022-1767 et 1550-6606, DOI10.4049/jimmunol.178.1.301, lire en ligne, consulté le )
(en) Raffaella Bonecchi, Giancarlo Bianchi, Paola Panina Bordignon et Daniele D'Ambrosio, « Differential Expression of Chemokine Receptors and Chemotactic Responsiveness of Type 1 T Helper Cells (Th1s) and Th2s », The Journal of Experimental Medicine, vol. 187, no 1, , p. 129–134 (ISSN0022-1007 et 1540-9538, PMID9419219, PMCIDPMC2199181, DOI10.1084/jem.187.1.129, lire en ligne, consulté le )
(en) Duncan R. McKenzie, Ervin E. Kara, Cameron R. Bastow et Timona S. Tyllis, « IL-17-producing γδ T cells switch migratory patterns between resting and activated states », Nature Communications, vol. 8, no 1, (ISSN2041-1723, PMID28580944, PMCIDPMC5465362, DOI10.1038/ncomms15632, lire en ligne, consulté le )
(en) M. Swiecki, H.L. Miller, R. Sesti-Costa et M. Cella, « Microbiota induces tonic CCL2 systemic levels that control pDC trafficking in steady state », Mucosal Immunology, vol. 10, no 4, , p. 936–945 (PMID27827374, PMCIDPMC5423869, DOI10.1038/mi.2016.99, lire en ligne, consulté le )
(en) Qingjun Pan, Yongmin Feng, Yanxia Peng et Hongjiu Zhou, « Basophil Recruitment to Skin Lesions of Patients with Systemic Lupus Erythematosus Mediated by CCR1 and CCR2 », Cellular Physiology and Biochemistry, vol. 43, no 2, , p. 832–839 (ISSN1015-8987 et 1421-9778, DOI10.1159/000481609, lire en ligne, consulté le )
(en) Fikru Belema-Bedada, Shizuka Uchida, Alessandra Martire et Sawa Kostin, « Efficient Homing of Multipotent Adult Mesenchymal Stem Cells Depends on FROUNT-Mediated Clustering of CCR2 », Cell Stem Cell, vol. 2, no 6, , p. 566–575 (DOI10.1016/j.stem.2008.03.003, lire en ligne, consulté le )
(en) Kim S. C. Weber, Peter J. Nelson, Hermann-Joseph Gröne et Christian Weber, « Expression of CCR2 by Endothelial Cells: Implications for MCP-1 Mediated Wound Injury Repair and In Vivo Inflammatory Activation of Endothelium », Arteriosclerosis, Thrombosis, and Vascular Biology, vol. 19, no 9, , p. 2085–2093 (ISSN1079-5642 et 1524-4636, DOI10.1161/01.ATV.19.9.2085, lire en ligne, consulté le )
(en) Joseph El Khoury, Michelle Toft, Suzanne E Hickman et Terry K Means, « Ccr2 deficiency impairs microglial accumulation and accelerates progression of Alzheimer-like disease », Nature Medicine, vol. 13, no 4, , p. 432–438 (ISSN1078-8956 et 1546-170X, DOI10.1038/nm1555, lire en ligne, consulté le )
(en) Gordon L. Warren, Tracy Hulderman, Dawn Mishra et Xin Gao, « Chemokine receptor CCR2 involvement in skeletal muscle regeneration », The FASEB Journal, vol. 19, no 3, , p. 1–23 (ISSN0892-6638 et 1530-6860, DOI10.1096/fj.04-2421fje, lire en ligne, consulté le )
(en) Pierre-Louis Loyher, Juliette Rochefort, Camille Baudesson de Chanville et Pauline Hamon, « CCR2 Influences T Regulatory Cell Migration to Tumors and Serves as a Biomarker of Cyclophosphamide Sensitivity », Cancer Research, vol. 76, no 22, , p. 6483–6494 (ISSN0008-5472 et 1538-7445, DOI10.1158/0008-5472.CAN-16-0984, lire en ligne, consulté le )
(en) M. Swiecki, H.L. Miller, R. Sesti-Costa et M. Cella, « Microbiota induces tonic CCL2 systemic levels that control pDC trafficking in steady state », Mucosal Immunology, vol. 10, no 4, , p. 936–945 (PMID27827374, PMCIDPMC5423869, DOI10.1038/mi.2016.99, lire en ligne, consulté le )
(en) Fikru Belema-Bedada, Shizuka Uchida, Alessandra Martire et Sawa Kostin, « Efficient Homing of Multipotent Adult Mesenchymal Stem Cells Depends on FROUNT-Mediated Clustering of CCR2 », Cell Stem Cell, vol. 2, no 6, , p. 566–575 (DOI10.1016/j.stem.2008.03.003, lire en ligne, consulté le )
(en) I F Charo, S J Myers, A Herman et C Franci, « Molecular cloning and functional expression of two monocyte chemoattractant protein 1 receptors reveals alternative splicing of the carboxyl-terminal tails. », Proceedings of the National Academy of Sciences, vol. 91, no 7, , p. 2752–2756 (ISSN0027-8424 et 1091-6490, PMID8146186, PMCIDPMC43448, DOI10.1073/pnas.91.7.2752, lire en ligne, consulté le )
(en) Jee H. Lee, Seung G. Kang et Chang H. Kim, « FoxP3+ T Cells Undergo Conventional First Switch to Lymphoid Tissue Homing Receptors in Thymus but Accelerated Second Switch to Nonlymphoid Tissue Homing Receptors in Secondary Lymphoid Tissues », The Journal of Immunology, vol. 178, no 1, , p. 301–311 (ISSN0022-1767 et 1550-6606, DOI10.4049/jimmunol.178.1.301, lire en ligne, consulté le )
(en) Raffaella Bonecchi, Giancarlo Bianchi, Paola Panina Bordignon et Daniele D'Ambrosio, « Differential Expression of Chemokine Receptors and Chemotactic Responsiveness of Type 1 T Helper Cells (Th1s) and Th2s », The Journal of Experimental Medicine, vol. 187, no 1, , p. 129–134 (ISSN0022-1007 et 1540-9538, PMID9419219, PMCIDPMC2199181, DOI10.1084/jem.187.1.129, lire en ligne, consulté le )
(en) Duncan R. McKenzie, Ervin E. Kara, Cameron R. Bastow et Timona S. Tyllis, « IL-17-producing γδ T cells switch migratory patterns between resting and activated states », Nature Communications, vol. 8, no 1, (ISSN2041-1723, PMID28580944, PMCIDPMC5465362, DOI10.1038/ncomms15632, lire en ligne, consulté le )
(en) Qingjun Pan, Yongmin Feng, Yanxia Peng et Hongjiu Zhou, « Basophil Recruitment to Skin Lesions of Patients with Systemic Lupus Erythematosus Mediated by CCR1 and CCR2 », Cellular Physiology and Biochemistry, vol. 43, no 2, , p. 832–839 (ISSN1015-8987 et 1421-9778, DOI10.1159/000481609, lire en ligne, consulté le )
(en) Kim S. C. Weber, Peter J. Nelson, Hermann-Joseph Gröne et Christian Weber, « Expression of CCR2 by Endothelial Cells: Implications for MCP-1 Mediated Wound Injury Repair and In Vivo Inflammatory Activation of Endothelium », Arteriosclerosis, Thrombosis, and Vascular Biology, vol. 19, no 9, , p. 2085–2093 (ISSN1079-5642 et 1524-4636, DOI10.1161/01.ATV.19.9.2085, lire en ligne, consulté le )
(en) Joseph El Khoury, Michelle Toft, Suzanne E Hickman et Terry K Means, « Ccr2 deficiency impairs microglial accumulation and accelerates progression of Alzheimer-like disease », Nature Medicine, vol. 13, no 4, , p. 432–438 (ISSN1078-8956 et 1546-170X, DOI10.1038/nm1555, lire en ligne, consulté le )
(en) Gordon L. Warren, Tracy Hulderman, Dawn Mishra et Xin Gao, « Chemokine receptor CCR2 involvement in skeletal muscle regeneration », The FASEB Journal, vol. 19, no 3, , p. 1–23 (ISSN0892-6638 et 1530-6860, DOI10.1096/fj.04-2421fje, lire en ligne, consulté le )
(en) Pierre-Louis Loyher, Juliette Rochefort, Camille Baudesson de Chanville et Pauline Hamon, « CCR2 Influences T Regulatory Cell Migration to Tumors and Serves as a Biomarker of Cyclophosphamide Sensitivity », Cancer Research, vol. 76, no 22, , p. 6483–6494 (ISSN0008-5472 et 1538-7445, DOI10.1158/0008-5472.CAN-16-0984, lire en ligne, consulté le )
(en) Qingjun Pan, Yongmin Feng, Yanxia Peng et Hongjiu Zhou, « Basophil Recruitment to Skin Lesions of Patients with Systemic Lupus Erythematosus Mediated by CCR1 and CCR2 », Cellular Physiology and Biochemistry, vol. 43, no 2, , p. 832–839 (ISSN1015-8987 et 1421-9778, DOI10.1159/000481609, lire en ligne, consulté le )
(en) Duncan R. McKenzie, Ervin E. Kara, Cameron R. Bastow et Timona S. Tyllis, « IL-17-producing γδ T cells switch migratory patterns between resting and activated states », Nature Communications, vol. 8, no 1, (ISSN2041-1723, PMID28580944, PMCIDPMC5465362, DOI10.1038/ncomms15632, lire en ligne, consulté le )
(en) Joseph El Khoury, Michelle Toft, Suzanne E Hickman et Terry K Means, « Ccr2 deficiency impairs microglial accumulation and accelerates progression of Alzheimer-like disease », Nature Medicine, vol. 13, no 4, , p. 432–438 (ISSN1078-8956 et 1546-170X, DOI10.1038/nm1555, lire en ligne, consulté le )
(en) I F Charo, S J Myers, A Herman et C Franci, « Molecular cloning and functional expression of two monocyte chemoattractant protein 1 receptors reveals alternative splicing of the carboxyl-terminal tails. », Proceedings of the National Academy of Sciences, vol. 91, no 7, , p. 2752–2756 (ISSN0027-8424 et 1091-6490, PMID8146186, PMCIDPMC43448, DOI10.1073/pnas.91.7.2752, lire en ligne, consulté le )
(en) Raffaella Bonecchi, Giancarlo Bianchi, Paola Panina Bordignon et Daniele D'Ambrosio, « Differential Expression of Chemokine Receptors and Chemotactic Responsiveness of Type 1 T Helper Cells (Th1s) and Th2s », The Journal of Experimental Medicine, vol. 187, no 1, , p. 129–134 (ISSN0022-1007 et 1540-9538, PMID9419219, PMCIDPMC2199181, DOI10.1084/jem.187.1.129, lire en ligne, consulté le )
(en) Duncan R. McKenzie, Ervin E. Kara, Cameron R. Bastow et Timona S. Tyllis, « IL-17-producing γδ T cells switch migratory patterns between resting and activated states », Nature Communications, vol. 8, no 1, (ISSN2041-1723, PMID28580944, PMCIDPMC5465362, DOI10.1038/ncomms15632, lire en ligne, consulté le )
(en) M. Swiecki, H.L. Miller, R. Sesti-Costa et M. Cella, « Microbiota induces tonic CCL2 systemic levels that control pDC trafficking in steady state », Mucosal Immunology, vol. 10, no 4, , p. 936–945 (PMID27827374, PMCIDPMC5423869, DOI10.1038/mi.2016.99, lire en ligne, consulté le )
(en) I F Charo, S J Myers, A Herman et C Franci, « Molecular cloning and functional expression of two monocyte chemoattractant protein 1 receptors reveals alternative splicing of the carboxyl-terminal tails. », Proceedings of the National Academy of Sciences, vol. 91, no 7, , p. 2752–2756 (ISSN0027-8424 et 1091-6490, PMID8146186, PMCIDPMC43448, DOI10.1073/pnas.91.7.2752, lire en ligne, consulté le )
(en) Raffaella Bonecchi, Giancarlo Bianchi, Paola Panina Bordignon et Daniele D'Ambrosio, « Differential Expression of Chemokine Receptors and Chemotactic Responsiveness of Type 1 T Helper Cells (Th1s) and Th2s », The Journal of Experimental Medicine, vol. 187, no 1, , p. 129–134 (ISSN0022-1007 et 1540-9538, PMID9419219, PMCIDPMC2199181, DOI10.1084/jem.187.1.129, lire en ligne, consulté le )
(en) Gordon L. Warren, Tracy Hulderman, Dawn Mishra et Xin Gao, « Chemokine receptor CCR2 involvement in skeletal muscle regeneration », The FASEB Journal, vol. 19, no 3, , p. 1–23 (ISSN0892-6638 et 1530-6860, DOI10.1096/fj.04-2421fje, lire en ligne, consulté le )