scholarly article | Q13442814 |
P50 | author | Aqeela Afzal | Q42843306 |
Maria B Grant | Q88523403 | ||
P2093 | author name string | Gerard A Lutty | |
Takayuki Baba | |||
Nilanjana Sengupta | |||
Sergio Caballero | |||
Vincent C Bond | |||
Lynn C Shaw | |||
Ji-Jing Pang | |||
Imran Bhutto | |||
Kyung-Hee Chang | |||
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Diverse signaling pathways through the SDF-1/CXCR4 chemokine axis in prostate cancer cell lines leads to altered patterns of cytokine secretion and angiogenesis | Q40400042 | ||
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SDF1-alpha is associated with VEGFR-2 in human choroidal neovascularisation | Q57838886 | ||
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Circulating hematopoietic stem cells in patients with neovascular age-related macular degeneration | Q80138085 | ||
The SDF-1/CXCR4 ligand/receptor pair is an important contributor to several types of ocular neovascularization | Q80376104 | ||
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Nitric oxide cytoskeletal-induced alterations reverse the endothelial progenitor cell migratory defect associated with diabetes | Q82097295 | ||
P4510 | describes a project that uses | ImageJ | Q1659584 |
P433 | issue | 5 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | neovascularization | Q1281049 |
P304 | page(s) | 2697-2704 | |
P577 | publication date | 2009-12-10 | |
P1433 | published in | Investigative Ophthalmology Visual Science | Q6060707 |
P1476 | title | Paracrine modulation of CXCR4 by IGF-1 and VEGF: implications for choroidal neovascularization | |
P478 | volume | 51 |
Q35659330 | A Simple Optical Coherence Tomography Quantification Method for Choroidal Neovascularization |
Q34755199 | An angiotensin-converting enzyme inhibitor modulates stromal-derived factor-1 through CD26/dipeptidyl peptidase IV to inhibit laser-induced choroidal neovascularization |
Q33802700 | Anaphylatoxins Activate Ca2+, Akt/PI3-Kinase, and FOXO1/FoxP3 in the Retinal Pigment Epithelium |
Q28743307 | Blockade of VEGFR1 and 2 suppresses pathological angiogenesis and vascular leakage in the eye |
Q35166644 | Critical role of SDF-1α-induced progenitor cell recruitment and macrophage VEGF production in the experimental corneal neovascularization. |
Q26865091 | Endothelial tip cells in ocular angiogenesis: potential target for anti-angiogenesis therapy |
Q44204333 | Expression of insulin-like growth factor 1 receptor in rat retina following optic nerve injury |
Q37393106 | Gene expression of IGF1, IGF1R, and IGFBP3 in epiretinal membranes of patients with proliferative diabetic retinopathy: preliminary study. |
Q36033617 | Hedgehog Signaling Components Are Expressed in Choroidal Neovascularization in Laser-induced Retinal Lesion |
Q35924203 | Inhibited experimental corneal neovascularization by neutralizing anti-SDF-1α antibody |
Q35020040 | Laser-induced choroidal neovascularization model to study age-related macular degeneration in mice. |
Q27335140 | Predicted molecular signaling guiding photoreceptor cell migration following transplantation into damaged retina |
Q42730614 | Salvianolic Acid A Inhibits OX-LDL Effects on Exacerbating Choroidal Neovascularization via Downregulating CYLD. |
Q33746477 | Soluble factors secreted by differentiating embryonic stem cells stimulate exogenous cell proliferation and migration. |
Q33930876 | Suppression of choroidal neovascularization through inhibition of APE1/Ref-1 redox activity |
Q36083881 | Understanding age-related macular degeneration (AMD): relationships between the photoreceptor/retinal pigment epithelium/Bruch's membrane/choriocapillaris complex |
Q34972337 | VEGF receptor blockade markedly reduces retinal microglia/macrophage infiltration into laser-induced CNV. |
Q28655924 | Vascular progenitors from cord blood-derived induced pluripotent stem cells possess augmented capacity for regenerating ischemic retinal vasculature |
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