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WGW-2021

3.10 Immunobiology (31)

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82160 The ocular surface after successful glaucoma filtration surgery: a clinical, in vivo confocal microscopy, and immune-cytology study
Agnifili L
Scientific reports 2019; 9: 11299
82800 Human Umbilical Cord Mesenchymal Stem Cells Attenuate Ocular Hypertension-Induced Retinal Neuroinflammation via Toll-Like Receptor 4 Pathway
Ji S
Stem cells international 2019; 2019: 9274585
81952 Alteration of MCP-1 and MMP-9 in aqueous humor is associated with secondary glaucoma in Fuchs uveitis syndrome
Bauer D
Ocular Immunology and Inflammation 2019; 0: 1-11
82049 Th17 cells in glaucoma patients promote Ig production in IL-17A and IL-21-dependent manner
Ren Y
Clinical and Experimental Pharmacology and Physiology 2019; 46: 875-882
82459 Immune Mediated Degeneration and Possible Protection in Glaucoma
Tsai T
Frontiers in neuroscience 2019; 13: 931
82151 IL-1 Family Members Mediate Cell Death, Inflammation and Angiogenesis in Retinal Degenerative Diseases
Wooff Y
Frontiers in immunology 2019; 10: 1618
81952 Alteration of MCP-1 and MMP-9 in aqueous humor is associated with secondary glaucoma in Fuchs uveitis syndrome
Kasper M
Ocular Immunology and Inflammation 2019; 0: 1-11
82160 The ocular surface after successful glaucoma filtration surgery: a clinical, in vivo confocal microscopy, and immune-cytology study
Brescia L
Scientific reports 2019; 9: 11299
82151 IL-1 Family Members Mediate Cell Death, Inflammation and Angiogenesis in Retinal Degenerative Diseases
Man SM
Frontiers in immunology 2019; 10: 1618
82459 Immune Mediated Degeneration and Possible Protection in Glaucoma
Reinehr S
Frontiers in neuroscience 2019; 13: 931
82800 Human Umbilical Cord Mesenchymal Stem Cells Attenuate Ocular Hypertension-Induced Retinal Neuroinflammation via Toll-Like Receptor 4 Pathway
Xiao J
Stem cells international 2019; 2019: 9274585
82049 Th17 cells in glaucoma patients promote Ig production in IL-17A and IL-21-dependent manner
Qi Y
Clinical and Experimental Pharmacology and Physiology 2019; 46: 875-882
82151 IL-1 Family Members Mediate Cell Death, Inflammation and Angiogenesis in Retinal Degenerative Diseases
Aggio-Bruce R
Frontiers in immunology 2019; 10: 1618
82459 Immune Mediated Degeneration and Possible Protection in Glaucoma
Maliha AM
Frontiers in neuroscience 2019; 13: 931
81952 Alteration of MCP-1 and MMP-9 in aqueous humor is associated with secondary glaucoma in Fuchs uveitis syndrome
Walscheid K
Ocular Immunology and Inflammation 2019; 0: 1-11
82049 Th17 cells in glaucoma patients promote Ig production in IL-17A and IL-21-dependent manner
Su X
Clinical and Experimental Pharmacology and Physiology 2019; 46: 875-882
82160 The ocular surface after successful glaucoma filtration surgery: a clinical, in vivo confocal microscopy, and immune-cytology study
Oddone F
Scientific reports 2019; 9: 11299
82800 Human Umbilical Cord Mesenchymal Stem Cells Attenuate Ocular Hypertension-Induced Retinal Neuroinflammation via Toll-Like Receptor 4 Pathway
Liu J
Stem cells international 2019; 2019: 9274585
82459 Immune Mediated Degeneration and Possible Protection in Glaucoma
Joachim SC
Frontiers in neuroscience 2019; 13: 931
82151 IL-1 Family Members Mediate Cell Death, Inflammation and Angiogenesis in Retinal Degenerative Diseases
Natoli R
Frontiers in immunology 2019; 10: 1618
82160 The ocular surface after successful glaucoma filtration surgery: a clinical, in vivo confocal microscopy, and immune-cytology study
Sacchi M
Scientific reports 2019; 9: 11299
81952 Alteration of MCP-1 and MMP-9 in aqueous humor is associated with secondary glaucoma in Fuchs uveitis syndrome
Koch JM
Ocular Immunology and Inflammation 2019; 0: 1-11
82800 Human Umbilical Cord Mesenchymal Stem Cells Attenuate Ocular Hypertension-Induced Retinal Neuroinflammation via Toll-Like Receptor 4 Pathway
Tang S
Stem cells international 2019; 2019: 9274585
82160 The ocular surface after successful glaucoma filtration surgery: a clinical, in vivo confocal microscopy, and immune-cytology study
D'Ugo E
Scientific reports 2019; 9: 11299
82151 IL-1 Family Members Mediate Cell Death, Inflammation and Angiogenesis in Retinal Degenerative Diseases
Fernando N
Frontiers in immunology 2019; 10: 1618

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