| Literature DB >> 30054731 |
Tian Yu1, J V Forrester1,2,3, Gerard J Graham4, Lucia Kuffova5,6.
Abstract
PURPOSE: To re-evaluate the role of the atypical chemokine receptor-2 (ACKR2) in corneal graft rejection and investigate the effect of ACKR2 on inflammation-associated lymphangiogenesis using murine orthotopic corneal transplantation.Entities:
Keywords: ACKR2; Angiogenesis; Chemokines; Corneal transplantation; Graft rejection; Lymphangiogenesis
Mesh:
Substances:
Year: 2018 PMID: 30054731 PMCID: PMC6153595 DOI: 10.1007/s00417-018-4070-1
Source DB: PubMed Journal: Graefes Arch Clin Exp Ophthalmol ISSN: 0721-832X Impact factor: 3.117
Fig. 1Corneal syngeneic and allogeneic graft survival and opacity scores. WT and ACKR2−/− mice were grafted with sex-matched syngeneic or allogeneic (Balb/c) corneal grafts, and corneal opacity was scored at intervals post-surgery. (a) Corneal graft survival in WT and ACKR2−/− mice. Corneal opacity scores of syngeneic grafts (b) and allogeneic grafts (c). Syngeneic grafts: nWT = 8, nACKR2−/− = 7; allogeneic grafts: nWT = 15, nACKR2−/− = 28. Statistical analysis was performed using Log-rank test for graft survivals and one-way analysis of variance (ANOVA) for corneal opacity scores
Fig. 2Corneal graft survival and opacity scores of HY-antigen disparity group. Female WT and ACKR2−/− mice were grafted with strain-matched male donor corneas and corneal opacity was scored at intervals post-surgery. (a) Corneal graft survival of HY-antigen disparity grafts in WT and ACKR2−/− mice (nWT = 22, nACKR2−/− = 19). (b) Overall corneal opacity scores of WT and ACKR2−/− mice receiving HY-antigen disparity donor grafts (nWT = 22, nACKR2−/− = 19). Corneal grafts were subdivided into (c) “rejectors” (nWT = 11, nACKR2−/− = 9) and (d) “acceptors” (nWT = 11, nACKR2−/− = 10) and corneal opacity scores were compared between WT and ACKR2−/− mice. Statistical analysis was performed using Log-rank test for corneal graft survival and one-way ANOVA for corneal opacity scores
Fig. 3Quantification of normal corneal limbal vascularisation and neovascularisation post corneal graft. Corneal whole mounts were prepared from naïve or grafted (syngeneic and allogeneic) WT, ACKR2−/− (ACKR2), F4/80−/-ACKR2−/− (FA) mice and stained with anti-CD31 and anti-Lyve-1 antibodies for blood and lymphatic vessels, respectively. Corneal vascularisation was quantified by area covered by vessels (a, b) and corneal lymphangiogenesis was further assessed by lymphatic sprouts, loops and corneal infiltration of individual Lyve-1+ cells (c, e). (a) Quantification of normal corneal limbal blood and lymphatic vessels (nWT/nACKR2−/− = 6, nF4/80−/−ACKR2−/− = 5). (b) Quantification of blood and lymphatic vessels at day 3 (n = 5) and day 7 (n = 4) post-corneal syngeneic and allogeneic graft. (c) Evaluation of corneal lymphangiogenesis in syngeneic corneal grafts by lymphatic sprouts, corneal infiltration of individual Lyve-1+ cells and lymphatic loops formation (nday3 = 5, nday7 = 4). (d) Representative images of corneal syngeneic graft at day 3 pg stained with anti-Lyve-1 antibody. Corneal infiltration of individual Lyve-1+ cells is indicated by white arrows. Scale bar represents 250 μm. (e) Evaluation of lymphangiogenesis in corneal allografts at day 3 (n = 5) and day 7 pg (n = 4). Statistical significance was determined using one-way ANOVA, *p < 0.05, **p < 0.01, ***p < 0.001