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1.
EMBO J ; 39(12): e102930, 2020 06 17.
Article in English | MEDLINE | ID: mdl-32347571

ABSTRACT

During angiogenesis, VEGF acts as an attractive cue for endothelial cells (ECs), while Sema3E mediates repulsive cues. Here, we show that the small GTPase RhoJ integrates these opposing signals in directional EC migration. In the GTP-bound state, RhoJ interacts with the cytoplasmic domain of PlexinD1. Upon Sema3E stimulation, RhoJ released from PlexinD1 induces cell contraction. PlexinD1-bound RhoJ further facilitates Sema3E-induced PlexinD1-VEGFR2 association, VEGFR2 transphosphorylation at Y1214, and p38 MAPK activation, leading to reverse EC migration. Upon VEGF stimulation, RhoJ is required for the formation of the holoreceptor complex comprising VEGFR2, PlexinD1, and neuropilin-1, thereby preventing degradation of internalized VEGFR2, prolonging downstream signal transductions via PLCγ, Erk, and Akt, and promoting forward EC migration. After conversion to the GDP-bound state, RhoJ shifts from PlexinD1 to VEGFR2, which then terminates the VEGFR2 signals. RhoJ deficiency in ECs efficiently suppressed aberrant angiogenesis in ischemic retina. These findings suggest that distinct Rho GTPases may act as context-dependent integrators of chemotactic cues in directional cell migration and may serve as candidate therapeutic targets to manipulate cell motility in disease or tissue regeneration.


Subject(s)
Cell Movement , Endothelial Cells/metabolism , Signal Transduction , rho GTP-Binding Proteins/metabolism , Animals , Endothelial Cells/cytology , Human Umbilical Vein Endothelial Cells , Humans , Intracellular Signaling Peptides and Proteins/genetics , Intracellular Signaling Peptides and Proteins/metabolism , Membrane Glycoproteins/genetics , Membrane Glycoproteins/metabolism , Mice , Mice, Transgenic , Vascular Endothelial Growth Factor A/genetics , Vascular Endothelial Growth Factor A/metabolism , Vascular Endothelial Growth Factor Receptor-2/genetics , Vascular Endothelial Growth Factor Receptor-2/metabolism , rho GTP-Binding Proteins/genetics
2.
J Neurosci Res ; 102(3): e25316, 2024 Mar.
Article in English | MEDLINE | ID: mdl-38415926

ABSTRACT

Aberrant neovascularization is the most common feature in retinopathy of prematurity (ROP), which leads to the retinal detachment and visual defects in neonates with a low gestational age eventually. Understanding the regulation of inappropriate angiogenic signaling benefits individuals at-risk. Recently, neural activity originating from the specific neural activity has been considered to contribute to retinal angiogenesis. Here, we explored the impact of cone cell dysfunction on oxygen-induced retinopathy (OIR), a mouse model commonly employed to understand retinal diseases associated with abnormal blood vessel growth, using the Gnat2cpfl3 (cone photoreceptor function loss-3) strain of mice (regardless of the sex), which is known for its inherent cone cell dysfunction. We found that the retinal avascular area, hypoxic area, and neovascular area were significantly attenuated in Gnat2cpfl3 OIR mice compared to those in C57BL/6 OIR mice. Moreover, the HIF-1α/VEGF axis was also reduced in Gnat2cpfl3 OIR mice. Collectively, our results indicated that cone cell dysfunction, as observed in Gnat2cpfl3 OIR mice, leads to attenuated retinal neovascularization. This finding suggests that retinal neural activity may precede and potentially influence the onset of pathological neovascularization.


Subject(s)
Eye Diseases , Retinal Diseases , Retinal Neovascularization , Animals , Mice , Mice, Inbred C57BL , Retinal Cone Photoreceptor Cells , Oxygen/toxicity , Neovascularization, Pathologic , Disease Models, Animal
3.
Cell ; 137(6): 1124-35, 2009 Jun 12.
Article in English | MEDLINE | ID: mdl-19524514

ABSTRACT

The Notch pathway is a highly conserved signaling system that controls a diversity of growth, differentiation, and patterning processes. In growing blood vessels, sprouting of endothelial tip cells is inhibited by Notch signaling, which is activated by binding of the Notch receptor to its ligand Delta-like 4 (Dll4). Here, we show that the Notch ligand Jagged1 is a potent proangiogenic regulator in mice that antagonizes Dll4-Notch signaling in cells expressing Fringe family glycosyltransferases. Upon glycosylation of Notch, Dll4-Notch signaling is enhanced, whereas Jagged1 has weak signaling capacity and competes with Dll4. Our findings establish that the equilibrium between two Notch ligands with distinct spatial expression patterns and opposing functional roles regulates angiogenesis, a mechanism that might also apply to other Notch-controlled biological processes.


Subject(s)
Blood Vessels/embryology , Calcium-Binding Proteins/metabolism , Intercellular Signaling Peptides and Proteins/metabolism , Intracellular Signaling Peptides and Proteins/metabolism , Membrane Proteins/metabolism , Neovascularization, Physiologic , Adaptor Proteins, Signal Transducing , Animals , Blood Vessels/cytology , Calcium-Binding Proteins/genetics , Embryo, Mammalian/metabolism , Endothelial Cells/metabolism , Endothelium, Vascular/metabolism , Female , Intercellular Signaling Peptides and Proteins/genetics , Jagged-1 Protein , Male , Membrane Proteins/genetics , Mice , Mice, Transgenic , Mutation , Receptors, Notch/metabolism , Retina/embryology , Serrate-Jagged Proteins
4.
Metabolomics ; 19(2): 10, 2023 02 06.
Article in English | MEDLINE | ID: mdl-36745234

ABSTRACT

INTRODUCTION: The primate retina has evolved regional specialisations for specific visual functions. The macula is specialised towards high acuity vision and is an area that contains an increased density of cone photoreceptors and signal processing neurons. Different regions in the retina display unique susceptibility to pathology, with many retinal diseases primarily affecting the macula. OBJECTIVES: To better understand the properties of different retinal areas we studied the differential distribution of metabolites across the retina. METHODS: We conducted an untargeted metabolomics analysis on full-thickness punches from three different regions (macula, temporal peri-macula and periphery) of healthy primate retina. RESULTS: Nearly half of all metabolites identified showed differential abundance in at least one comparison between the three regions. Furthermore, mapping metabolomics results from macula-specific eye diseases onto our region-specific metabolite distributions revealed differential abundance defining systemic metabolic dysregulations that were region specific. CONCLUSIONS: The unique metabolic phenotype of different retinal regions is likely due to the differential distribution of different cell types in these regions reflecting the specific metabolic requirements of each cell type. Our results may help to better understand the pathobiology of retinal diseases with region specificity.


Subject(s)
Macula Lutea , Retinal Diseases , Animals , Metabolomics , Retina/metabolism , Retinal Diseases/genetics , Retinal Diseases/metabolism , Macula Lutea/metabolism , Neurons/metabolism
5.
Nature ; 545(7652): 98-102, 2017 05 04.
Article in English | MEDLINE | ID: mdl-28445461

ABSTRACT

The relative contribution of the effector molecules produced by T cells to tumour rejection is unclear, but interferon-γ (IFNγ) is critical in most of the analysed models. Although IFNγ can impede tumour growth by acting directly on cancer cells, it must also act on the tumour stroma for effective rejection of large, established tumours. However, which stroma cells respond to IFNγ and by which mechanism IFNγ contributes to tumour rejection through stromal targeting have remained unknown. Here we use a model of IFNγ induction and an IFNγ-GFP fusion protein in large, vascularized tumours growing in mice that express the IFNγ receptor exclusively in defined cell types. Responsiveness to IFNγ by myeloid cells and other haematopoietic cells, including T cells or fibroblasts, was not sufficient for IFNγ-induced tumour regression, whereas responsiveness of endothelial cells to IFNγ was necessary and sufficient. Intravital microscopy revealed IFNγ-induced regression of the tumour vasculature, resulting in arrest of blood flow and subsequent collapse of tumours, similar to non-haemorrhagic necrosis in ischaemia and unlike haemorrhagic necrosis induced by tumour necrosis factor. The early events of IFNγ-induced tumour ischaemia resemble non-apoptotic blood vessel regression during development, wound healing or IFNγ-mediated, pregnancy-induced remodelling of uterine arteries. A better mechanistic understanding of how solid tumours are rejected may aid the design of more effective protocols for adoptive T-cell therapy.


Subject(s)
Blood Vessels/growth & development , Cell Hypoxia/immunology , Interferon-gamma/immunology , Ischemia/immunology , Neoplasms/blood supply , Neoplasms/immunology , Vascular Remodeling , Animals , Blood Vessels/immunology , Blood Vessels/metabolism , Cell Line, Tumor , Endothelial Cells/immunology , Endothelial Cells/metabolism , Female , Interferon-gamma/biosynthesis , Intravital Microscopy , Ischemia/metabolism , Ischemia/pathology , Male , Mice , Necrosis , Neoplasms/metabolism , Neoplasms/pathology , Receptors, Interferon/metabolism , Stromal Cells/immunology , Stromal Cells/metabolism , Substrate Specificity , Wound Healing , Interferon gamma Receptor
6.
N Engl J Med ; 381(15): 1422-1433, 2019 10 10.
Article in English | MEDLINE | ID: mdl-31509666

ABSTRACT

BACKGROUND: Identifying mechanisms of diseases with complex inheritance patterns, such as macular telangiectasia type 2, is challenging. A link between macular telangiectasia type 2 and altered serine metabolism has been established previously. METHODS: Through exome sequence analysis of a patient with macular telangiectasia type 2 and his family members, we identified a variant in SPTLC1 encoding a subunit of serine palmitoyltransferase (SPT). Because mutations affecting SPT are known to cause hereditary sensory and autonomic neuropathy type 1 (HSAN1), we examined 10 additional persons with HSAN1 for ophthalmologic disease. We assayed serum amino acid and sphingoid base levels, including levels of deoxysphingolipids, in patients who had macular telangiectasia type 2 but did not have HSAN1 or pathogenic variants affecting SPT. We characterized mice with low serine levels and tested the effects of deoxysphingolipids on human retinal organoids. RESULTS: Two variants known to cause HSAN1 were identified as causal for macular telangiectasia type 2: of 11 patients with HSAN1, 9 also had macular telangiectasia type 2. Circulating deoxysphingolipid levels were 84.2% higher among 125 patients with macular telangiectasia type 2 who did not have pathogenic variants affecting SPT than among 94 unaffected controls. Deoxysphingolipid levels were negatively correlated with serine levels, which were 20.6% lower than among controls. Reduction of serine levels in mice led to increases in levels of retinal deoxysphingolipids and compromised visual function. Deoxysphingolipids caused photoreceptor-cell death in retinal organoids, but not in the presence of regulators of lipid metabolism. CONCLUSIONS: Elevated levels of atypical deoxysphingolipids, caused by variant SPTLC1 or SPTLC2 or by low serine levels, were risk factors for macular telangiectasia type 2, as well as for peripheral neuropathy. (Funded by the Lowy Medical Research Institute and others.).


Subject(s)
Hereditary Sensory and Autonomic Neuropathies/genetics , Mutation , Retinal Telangiectasis/genetics , Serine C-Palmitoyltransferase/genetics , Serine/metabolism , Sphingolipids/metabolism , Adult , Aged , Animals , DNA Mutational Analysis , Disease Models, Animal , Exome/genetics , Female , Hereditary Sensory and Autonomic Neuropathies/complications , Hereditary Sensory and Autonomic Neuropathies/metabolism , Humans , Lipid Metabolism , Macula Lutea/pathology , Male , Mice , Middle Aged , Pedigree , Retinal Telangiectasis/complications , Retinal Telangiectasis/metabolism , Risk Factors , Serine/blood , Sphingosine/analogs & derivatives , Sphingosine/analysis , Young Adult
7.
J Peripher Nerv Syst ; 27(3): 215-224, 2022 09.
Article in English | MEDLINE | ID: mdl-35837722

ABSTRACT

Pathogenic variants in the genes encoding serine palmitoyl transferase (SPTLC1 or SPTLC2) are the most common causes of the rare peripheral nerve disorder Hereditary Sensory Neuropathy Type 1 (HSN1). Macular telangiectasia type 2 (MacTel), a retinal disorder associated with disordered serine-glycine metabolism, has been described in some patients with HSN1. This study aims to further investigate this association in a cohort of people with HSN1. Fourteen patients with a clinically and genetically confirmed diagnosis of HSN1 from the National Hospital for Neurology and Neurosurgery (NHNN, University College London Hospitals NHS Foundation Trust, London, United Kingdom) were recruited to the MacTel Registry, between July 2018 and April 2019. Two additional patients were identified from the dataset of the international clinical registry study (www.lmri.net). Ocular examination included fundus autofluorescence, blue light and infrared reflectance, macular pigment optical density mapping and optical coherence tomography. Twelve patients had a pathogenic variant in the SPTLC1 gene, with p.Cys133Trp in 11 cases (92%) and p.Cys133Tyr in one case (8%). Four patients had a variant in the SPTLC2 gene. None of the patients showed clinical evidence of MacTel. The link between HSN1 and MacTel seems more complex than can solely be explained by the genetic variants. An extension of the spectrum of SPTLC1/2-related disease with phenotypic pleiotropy is proposed. HSN1 patients should be screened for visual symptoms and referred for specialist retinal screening, but the association of the two diseases is likely to be variable and remains unexplained.


Subject(s)
Hereditary Sensory and Autonomic Neuropathies , Retinal Telangiectasis , Humans , Retinal Telangiectasis/complications , Retinal Telangiectasis/diagnosis , Retinal Telangiectasis/genetics , Serine , Serine C-Palmitoyltransferase/genetics
8.
Nature ; 529(7585): 216-20, 2016 Jan 14.
Article in English | MEDLINE | ID: mdl-26735015

ABSTRACT

Endothelial cells (ECs) are plastic cells that can switch between growth states with different bioenergetic and biosynthetic requirements. Although quiescent in most healthy tissues, ECs divide and migrate rapidly upon proangiogenic stimulation. Adjusting endothelial metabolism to the growth state is central to normal vessel growth and function, yet it is poorly understood at the molecular level. Here we report that the forkhead box O (FOXO) transcription factor FOXO1 is an essential regulator of vascular growth that couples metabolic and proliferative activities in ECs. Endothelial-restricted deletion of FOXO1 in mice induces a profound increase in EC proliferation that interferes with coordinated sprouting, thereby causing hyperplasia and vessel enlargement. Conversely, forced expression of FOXO1 restricts vascular expansion and leads to vessel thinning and hypobranching. We find that FOXO1 acts as a gatekeeper of endothelial quiescence, which decelerates metabolic activity by reducing glycolysis and mitochondrial respiration. Mechanistically, FOXO1 suppresses signalling by MYC (also known as c-MYC), a powerful driver of anabolic metabolism and growth. MYC ablation impairs glycolysis, mitochondrial function and proliferation of ECs while its EC-specific overexpression fuels these processes. Moreover, restoration of MYC signalling in FOXO1-overexpressing endothelium normalizes metabolic activity and branching behaviour. Our findings identify FOXO1 as a critical rheostat of vascular expansion and define the FOXO1-MYC transcriptional network as a novel metabolic checkpoint during endothelial growth and proliferation.


Subject(s)
Endothelium, Vascular/growth & development , Endothelium, Vascular/metabolism , Forkhead Transcription Factors/metabolism , Animals , Cell Proliferation , Cell Respiration , Endothelium, Vascular/cytology , Female , Forkhead Box Protein O1 , Forkhead Transcription Factors/deficiency , Forkhead Transcription Factors/genetics , Glycolysis , Human Umbilical Vein Endothelial Cells/cytology , Human Umbilical Vein Endothelial Cells/metabolism , Humans , Male , Mice , Mice, Inbred C57BL , Proto-Oncogene Proteins c-myc/deficiency , Proto-Oncogene Proteins c-myc/genetics , Proto-Oncogene Proteins c-myc/metabolism , Signal Transduction
9.
Ophthalmology ; 127(11): 1539-1548, 2020 11.
Article in English | MEDLINE | ID: mdl-32586743

ABSTRACT

PURPOSE: To report the visual acuity measures from the macular telangiectasia type 2 (MacTel) registry and to investigate and describe phenotypic findings in eyes with substantial vision loss resulting from MacTel. DESIGN: Cross-sectional multicenter study. PARTICIPANTS: Participants in the MacTel Natural History Observation Registration Study. METHODS: Best-corrected visual acuity (BCVA) data, retinal imaging data, and clinical data were accessed from the MacTel Study databases in May 2019. MAIN OUTCOME MEASURES: Frequency distribution of BCVA and its relationship to age; morphologic changes in eyes with very late disease stages, defined by a BCVA of 20/200 or worse; average retinal thickness of macular subfields on OCT; and dimensions of the area affected by MacTel (i.e., the MacTel area). RESULTS: Best-corrected visual acuity was 20/50 or worse in 37.3% and 20/200 or worse in 3.8% of 4449 eyes of 2248 patients; 18.4% and 0.7% of all patients showed bilateral BCVA of 20/50 or worse and 20/200 or worse, respectively. Asymmetry between right and left eyes was present (median BCVA, 71 letters vs. 74 letters), a finding supported by more advanced morphologic changes in right eyes. Participant age correlated with BCVA, but the effect size was small. If a neovascularization or macular hole were present, bilateral occurrence was frequent (33% or 17%, respectively), and BCVA was better than 20/200 (79% or 78%, respectively) or 20/50 or better (26% or 13%, respectively). Eyes with advanced disease (BCVA, ≤20/200) showed the following characteristics: (1) atrophy of the foveal photoreceptor layer with or without associated subretinal fibrosis; (2) an affected area, termed MacTel area, limited to a horizontal diameter not exceeding the distance between the temporal optic disc margin and foveal center, and the vertical diameter not exceeding approximately 0.8 times this distance (exceptions were eyes with large active or inactive neovascular membranes); (3) reduced retinal thickness measures within the MacTel area; and (4) less frequent retinal greying and more frequent hyperpigmentations compared with eyes that have better BCVA. CONCLUSIONS: Severe vision loss is rare in MacTel and is related to photoreceptor atrophy in most people. Results indicate disease asymmetry with slightly worse vision and more advanced disease manifestation in right eyes. MacTel-related neurodegeneration does not spread beyond the limits of the MacTel area.


Subject(s)
Fluorescein Angiography/methods , Fovea Centralis/pathology , Retinal Telangiectasis/physiopathology , Visual Acuity , Adult , Aged , Aged, 80 and over , Cross-Sectional Studies , Female , Fundus Oculi , Humans , Male , Middle Aged , Retinal Telangiectasis/diagnosis , Retrospective Studies , Young Adult
10.
Exp Physiol ; 105(12): 2168-2177, 2020 12.
Article in English | MEDLINE | ID: mdl-32936962

ABSTRACT

NEW FINDINGS: What is the central question of this study? Does vascular endothelial growth factor (VEGF) expressed by both endothelial cells and skeletal myofibres maintain the number of skeletal muscle capillaries and regulate endurance exercise? What is the main finding and its importance? VEGF expressed by both endothelial cells and skeletal myofibres is not essential for maintaining capillary number but does contribute to exercise performance. ABSTRACT: Many chronic diseases lead to exercise intolerance, with loss of skeletal muscle capillaries. While many muscle cell types (myofibres, satellite cells, endothelial cells, macrophages and fibroblasts) express vascular endothelial growth factor (VEGF), most muscle VEGF is stored in myofibre vesicles which can release VEGF to signal VEGF receptor-expressing cells. VEGF gene ablation in myofibres or endothelial cells alone does not cause capillary regression. We hypothesized that simultaneously deleting the endothelial cell (EC) and skeletal myofibre (Skm) VEGF gene would cause capillary regression and impair exercise performance. This was tested in adult mice by simultaneous conditional deletion of the VEGF gene (Skm/EC-VEGF-/- mice) through the use of VEGFLoxP, HSA-Cre-ERT2 and PDGFb-iCre-ERT2 transgenes. These double-deletion mice were compared to three control groups - WT, EC VEGF gene deletion alone and myofibre VEGF gene deletion alone. Three weeks after initiating gene deletion, Skm/EC-VEGF-/- mice, but not SkmVEGF-/- or EC-VEGF-/- mice, reached exhaustion 40 min sooner than WT mice in treadmill tests (P = 0.002). WT, SkmVEGF-/- and EC-VEGF-/- , but not Skm/EC-VEGF-/- , mice gained weight over the 3 weeks. Capillary density, fibre area and capillary: fibre ratio in soleus, plantaris, gastrocnemius and cardiac papillary muscle were similar across the groups. Phosphofructokinase and pyruvate dehydrogenase activities increased only in Skm/EC-VEGF-/- mice. These data suggest that deletion of the VEGF gene simultaneously in endothelial cells and myofibres, while reducing treadmill endurance and despite compensatory augmentation of glycolysis, is not required for muscle capillary maintenance. Reduced endurance remains unexplained, but may possibly be related to a role for VEGF in controlling perfusion of contracting muscle.


Subject(s)
Capillaries/physiology , Endothelial Cells/physiology , Gene Silencing/physiology , Muscle Fibers, Skeletal/physiology , Physical Conditioning, Animal/physiology , Vascular Endothelial Growth Factors/genetics , Animals , Capillaries/metabolism , Endothelial Cells/metabolism , Exercise Test/methods , Male , Mice , Muscle Contraction/genetics , Muscle Fibers, Skeletal/metabolism , Myocardium/metabolism , Neovascularization, Physiologic/genetics
11.
Proc Natl Acad Sci U S A ; 114(41): 10918-10923, 2017 10 10.
Article in English | MEDLINE | ID: mdl-28973878

ABSTRACT

Angiogenesis and vascular remodeling are essential for the establishment of vascular networks during organogenesis. Here we show that the Hippo signaling pathway effectors YAP and TAZ are required, in a gene dosage-dependent manner, for the proliferation and migration of vascular endothelial cells (ECs) during retinal angiogenesis. Intriguingly, nuclear translocation of YAP and TAZ induced by Lats1/2-deletion blocked endothelial migration and phenocopied Yap/Taz-deficient mutants. Furthermore, overexpression of a cytoplasmic form of YAP (YAPS127D) partially rescued the migration defects caused by loss of YAP and TAZ function. Finally, we found that cytoplasmic YAP positively regulated the activity of the small GTPase CDC42, deletion of which caused severe defects in endothelial migration. These findings uncover a previously unrecognized role of cytoplasmic YAP/TAZ in promoting cell migration by activating CDC42 and provide insight into how Hippo signaling in ECs regulates angiogenesis.


Subject(s)
Adaptor Proteins, Signal Transducing/physiology , Cell Movement , Endothelium, Vascular/cytology , Neovascularization, Physiologic , Phosphoproteins/physiology , Transcription Factors/physiology , cdc42 GTP-Binding Protein/physiology , Acyltransferases , Adaptor Proteins, Signal Transducing/genetics , Adaptor Proteins, Signal Transducing/metabolism , Animals , Cell Cycle Proteins , Cell Proliferation , Endothelium, Vascular/physiology , Human Umbilical Vein Endothelial Cells/metabolism , Humans , Mice , Mice, Knockout , Phosphoproteins/genetics , Phosphoproteins/metabolism , Signal Transduction , Transcription Factors/genetics , Transcription Factors/metabolism , YAP-Signaling Proteins
12.
J Mol Cell Cardiol ; 129: 105-117, 2019 04.
Article in English | MEDLINE | ID: mdl-30790589

ABSTRACT

p53 is a guardian of the genome that protects against carcinogenesis. There is accumulating evidence that p53 is activated with aging. Such activation has been reported to contribute to various age-associated pathologies, but its role in vascular dysfunction is largely unknown. The aim of this study was to investigate whether activation of endothelial p53 has a pathological effect in relation to endothelial function. We established endothelial p53 loss-of-function and gain-of-function models by breeding endothelial-cell specific Cre mice with floxed Trp53 or floxed Mdm2/Mdm4 mice, respectively. Then we induced diabetes by injection of streptozotocin. In the diabetic state, endothelial p53 expression was markedly up-regulated and endothelium-dependent vasodilatation was significantly impaired. Impairment of vasodilatation was significantly ameliorated in endothelial p53 knockout (EC-p53 KO) mice, and deletion of endothelial p53 also significantly enhanced the induction of angiogenesis by ischemia. Conversely, activation of endothelial p53 by deleting Mdm2/Mdm4 reduced both endothelium-dependent vasodilatation and ischemia-induced angiogenesis. Introduction of p53 into human endothelial cells up-regulated the expression of phosphatase and tensin homolog (PTEN), thereby reducing phospho-eNOS levels. Consistent with these results, the beneficial impact of endothelial p53 deletion on endothelial function was attenuated in EC-p53 KO mice with an eNOS-deficient background. These results show that endothelial p53 negatively regulates endothelium-dependent vasodilatation and ischemia-induced angiogenesis, suggesting that inhibition of endothelial p53 could be a novel therapeutic target in patients with metabolic disorders.


Subject(s)
Endothelium, Vascular/physiopathology , Hyperglycemia/complications , Hyperglycemia/metabolism , Ischemia/complications , Ischemia/metabolism , Tumor Suppressor Protein p53/metabolism , Animals , Capillary Permeability , Diabetes Mellitus, Experimental/metabolism , Diabetes Mellitus, Experimental/pathology , Endothelium, Vascular/metabolism , Gene Deletion , Human Umbilical Vein Endothelial Cells/metabolism , Humans , Mice, Inbred C57BL , Mice, Knockout , Neovascularization, Physiologic , Nitric Oxide Synthase Type III/metabolism , PTEN Phosphohydrolase/metabolism , Phosphorylation , Proto-Oncogene Proteins/metabolism , Proto-Oncogene Proteins c-mdm2/metabolism , Transcriptional Activation/genetics , Up-Regulation/genetics , Vasodilation
13.
Angiogenesis ; 21(3): 425-532, 2018 08.
Article in English | MEDLINE | ID: mdl-29766399

ABSTRACT

The formation of new blood vessels, or angiogenesis, is a complex process that plays important roles in growth and development, tissue and organ regeneration, as well as numerous pathological conditions. Angiogenesis undergoes multiple discrete steps that can be individually evaluated and quantified by a large number of bioassays. These independent assessments hold advantages but also have limitations. This article describes in vivo, ex vivo, and in vitro bioassays that are available for the evaluation of angiogenesis and highlights critical aspects that are relevant for their execution and proper interpretation. As such, this collaborative work is the first edition of consensus guidelines on angiogenesis bioassays to serve for current and future reference.


Subject(s)
Biological Assay/methods , Neoplasms , Neovascularization, Pathologic , Animals , Biological Assay/instrumentation , Guidelines as Topic , Humans , Mice , Neoplasms/blood supply , Neoplasms/metabolism , Neoplasms/pathology , Neovascularization, Pathologic/metabolism , Neovascularization, Pathologic/pathology
14.
Retina ; 38 Suppl 1: S97-S104, 2018 Jan.
Article in English | MEDLINE | ID: mdl-28834952

ABSTRACT

PURPOSE: To investigate retinal microcystoid spaces in macular telangiectasia type 2 with spectral domain optical coherence tomography. METHODS: Retrospective review of 135 patients enrolled in the MacTel Natural History Observation and Registry Study at Moorfields Eye Hospital, United Kingdom. One hundred seventy-two eyes from 86 patients who had a comparable scan protocol of at least 30 µm interval were included for analysis. Retinal microcystoid spaces were identified and segmented and metrics analyzed. RESULTS: From 172 eyes of 86 patients, microcystoid spaces were found in 11 eyes (6.4%) from 8 patients (9.3%). The mean number of microcystoid spaces per eye was 12.9 ± 18.2. Most were located in the inner nuclear layer. The inferonasal quadrant of the macula was the least commonly affected region. Microcystoid spaces were distributed entirely within the assumed macular telangiectasia area on blue light reflectance in all but 2 eyes (4 of 142 microcysts). The median diameter of the microcystoid spaces was 31 µm (range 15 µm-80 µm). CONCLUSION: Microcystoid spaces as a phenotype of macular telangiectasia should be considered in the differentials for microcystic edema. Understanding the pathogenesis of these lesions may provide further insight into the role of Müller cell dysfunction in this disorder.


Subject(s)
Ependymoglial Cells/pathology , Fluorescein Angiography/methods , Macula Lutea/pathology , Telangiectasia, Hereditary Hemorrhagic/diagnosis , Tomography, Optical Coherence/methods , Visual Acuity , Adult , Aged , Diagnosis, Differential , Female , Fundus Oculi , Humans , Macula Lutea/physiopathology , Macular Edema/diagnosis , Male , Middle Aged , Phenotype , Retrospective Studies , Telangiectasia, Hereditary Hemorrhagic/physiopathology
15.
Retina ; 38 Suppl 1: S89-S96, 2018 Jan.
Article in English | MEDLINE | ID: mdl-28654457

ABSTRACT

PURPOSE: In patients with macular telangiectasia Type 2, blue light reflectance imaging reveals an oval, parafoveal area in the macula that has increased reflectance compared with its surrounding. Here, we examine how dark adaptation and photobleaching can affect the blue light reflectance imaging pattern. METHODS: Prospective study of patients with macular telangiectasia enrolled in the MacTel Natural History Observation Study. After dark adaptation, a sequence of images was obtained with a confocal scanning laser ophthalmoscope at 488 nm. Change of reflectance patterns was analyzed over time. RESULTS: Eighteen eyes from 16 patients were analyzed. Initially, increased reflectivity in the parafoveal area resulted in higher gray values compared with the paramacular surrounding on blue light reflectance imaging. The difference between parafoveal and paramacular reflectance intensity decreased steadily during imaging, from 17.7 gray-value units (95% confidence interval: 12.1-23.2) down to 2.8 (95% confidence interval: -0.8 to 6.5) after around 30 seconds, and recovered after 5 minutes of dark adaptation. CONCLUSION: A bleaching effect was evident in our study. Understanding these changes is important for both diagnosis and assessment of blue light reflectance phenotype in patients with macular telangiectasia and could also provide further insights into the pathophysiology of this disease.


Subject(s)
Dark Adaptation/physiology , Fluorescein Angiography/methods , Light , Macula Lutea/radiation effects , Photobleaching , Telangiectasia, Hereditary Hemorrhagic/physiopathology , Tomography, Optical Coherence/methods , Adult , Aged , Disease Progression , Female , Follow-Up Studies , Fundus Oculi , Humans , Macula Lutea/pathology , Macula Lutea/physiopathology , Male , Middle Aged , Ophthalmoscopy/methods , Phenotype , Photic Stimulation , Prospective Studies , Telangiectasia, Hereditary Hemorrhagic/diagnosis
16.
Retina ; 38 Suppl 1: S105-S113, 2018 Jan.
Article in English | MEDLINE | ID: mdl-29045321

ABSTRACT

PURPOSE: Macular telangiectasia Type 2 (MacTel) causes glial and photoreceptor cell death in a small, oval patch in the central retina. Beyond this oval area, no disease manifestations have been described so far. Here, we describe a novel pathological aspect of MacTel in the retinal pigment epithelium (RPE) that is not restricted to the clinically affected area but covers the entire retina. METHODS: We have studied postmortem eyes from four patients with MacTel by immunohistochemistry and electron microscopy. RESULTS: We found cellular debris in the subretinal space (between photoreceptor outer segments and RPE), consisting mainly of outer segments and RPE components. In healthy eyes, the RPE normally phagocytoses the tips of the continuously growing outer segments, a process considered to be essential for photoreceptor survival. However, in the patients with MacTel, we found no evidence of ongoing outer segment phagocytosis, and the apical surface of the RPE appeared abnormal throughout most of the retina. CONCLUSION: Reduced outer segment phagocytosis may explain the accumulating debris in the subretinal space but is a surprising finding because visual function in the peripheral retina is normal in patients with MacTel. Nevertheless, the subclinical pathology might induce a specific stress to which the central area is uniquely susceptible.


Subject(s)
Fluorescein Angiography/methods , Retinal Photoreceptor Cell Outer Segment/ultrastructure , Retinal Pigment Epithelium/ultrastructure , Telangiectasia, Hereditary Hemorrhagic/pathology , Tomography, Optical Coherence/methods , Aged , Cadaver , Cell Count , Female , Fundus Oculi , Humans , Immunohistochemistry , Male , Microscopy, Electron, Transmission , Middle Aged , Opsins/metabolism , Phagocytosis , Phagosomes/ultrastructure , Retinal Pigment Epithelium/metabolism , Rhodopsin/metabolism , Telangiectasia, Hereditary Hemorrhagic/metabolism , Telangiectasia, Hereditary Hemorrhagic/physiopathology
17.
Retina ; 38 Suppl 1: S79-S88, 2018 Jan.
Article in English | MEDLINE | ID: mdl-28644304

ABSTRACT

PURPOSE: Macular telangiectasia Type 2 (MacTel) is a bilateral, progressive, potentially blinding retinal disease characterized by vascular and neurodegenerative signs, including an increased parafoveal reflectivity to blue light. Our aim was to investigate the relationship of this sign with other signs of macular telangiectasia Type 2 in multiple imaging modalities. METHODS: Participants were selected from the MacTel Type 2 study, based on a confirmed diagnosis and the availability of images. The extent of signs in blue-light reflectance, fluorescein angiographic, optical coherence tomographic, and single- and dual-wavelength autofluorescence images were analyzed. RESULTS: A well-defined abnormality of the perifovea is demonstrated by dual-wavelength autofluorescence and blue-light reflectance in early disease. The agreement in area size of the abnormalities in dual-wavelength autofluorescence and in blue-light reflectance images was excellent: for right eyes: ρ = 0.917 (P < 0.0001, 95% confidence interval 0.855-0.954, n = 46) and for left eyes: ρ = 0.952 (P < 0.0001, 95% confidence interval 0.916-0.973, n = 49). Other changes are less extensive initially and expand later to occupy that area and do not extend beyond it. CONCLUSION: Our findings indicate that abnormal metabolic handling of luteal pigment and physical changes giving rise to increased reflectance are widespread in the macula throughout the natural history of the disease, precede other changes, and are relevant to early diagnosis.


Subject(s)
Fluorescein Angiography/methods , Light , Macula Lutea/radiation effects , Retinal Vessels/radiation effects , Telangiectasia, Hereditary Hemorrhagic/physiopathology , Tomography, Optical Coherence/methods , Adult , Aged , Aged, 80 and over , Disease Progression , Female , Follow-Up Studies , Fundus Oculi , Humans , Macula Lutea/diagnostic imaging , Macula Lutea/physiopathology , Male , Middle Aged , Photic Stimulation , Prospective Studies , Telangiectasia, Hereditary Hemorrhagic/diagnosis
18.
Retina ; 38 Suppl 1: S33-S42, 2018 Jan.
Article in English | MEDLINE | ID: mdl-28654458

ABSTRACT

PURPOSE: To investigate the electrophysiological features of macular telangiectasia Type 2 and their relationship to structure as determined by optical coherence tomography imaging. METHODS: Forty-two eyes from 21 patients enrolled in the Macular Telangiectasia Natural History Observation Study were reviewed. All patients had full-field and pattern electroretinography (ERG; PERG) with some patients additionally having multifocal electroretinography (mfERG; N = 15) or electrooculography (N = 12). Multiple linear regression modeling assessed the relationship between the ellipsoid zone break size on optical coherence tomography and the central mfERG response. RESULTS: Full-field ERG and electrooculography were normal in all eyes. Six eyes (14%) from five patients had subnormal PERG P50 amplitudes. Twenty-two of 30 eyes (73%) had reduced central or paracentral stimulus on mfERG. There was a significant correlation between ellipsoid zone break size and both the P1 amplitude (R = 0.37, P = 0.002) and P1:N1 ratio (R = 0.32, P = 0.002) of the central response on mfERG. CONCLUSION: The electrophysiological findings in macular telangiectasia Type 2 are those of localized central dysfunction and are consistent with the structural data available from imaging and histologic studies. The ellipsoid zone break size correlates with mfERG reduction. The reduced mfERG P1:N1 ratio is consistent with inner retinal dysfunction.


Subject(s)
Electrooculography/methods , Electroretinography/methods , Macula Lutea/pathology , Retinal Telangiectasis/physiopathology , Tomography, Optical Coherence/methods , Visual Acuity , Adult , Aged , Female , Follow-Up Studies , Humans , Macula Lutea/physiopathology , Male , Middle Aged , Retinal Telangiectasis/diagnosis , Retrospective Studies
19.
J Neurosci ; 36(29): 7786-801, 2016 07 20.
Article in English | MEDLINE | ID: mdl-27445154

ABSTRACT

UNLABELLED: As neural structures grow in size and increase metabolic demand, the CNS vasculature undergoes extensive growth, remodeling, and maturation. Signals from neural tissue act on endothelial cells to stimulate blood vessel ingression, vessel patterning, and acquisition of mature brain vascular traits, most notably the blood-brain barrier. Using mouse genetic and in vitro approaches, we identified retinoic acid (RA) as an important regulator of brain vascular development via non-cell-autonomous and cell-autonomous regulation of endothelial WNT signaling. Our analysis of globally RA-deficient embryos (Rdh10 mutants) points to an important, non-cell-autonomous function for RA in the development of the vasculature in the neocortex. We demonstrate that Rdh10 mutants have severe defects in cerebrovascular development and that this phenotype correlates with near absence of endothelial WNT signaling, specifically in the cerebrovasculature, and substantially elevated expression of WNT inhibitors in the neocortex. We show that RA can suppress the expression of WNT inhibitors in neocortical progenitors. Analysis of vasculature in non-neocortical brain regions suggested that RA may have a separate, cell-autonomous function in brain endothelial cells to inhibit WNT signaling. Using both gain and loss of RA signaling approaches, we show that RA signaling in brain endothelial cells can inhibit WNT-ß-catenin transcriptional activity and that this is required to moderate the expression of WNT target Sox17. From this, a model emerges in which RA acts upstream of the WNT pathway via non-cell-autonomous and cell-autonomous mechanisms to ensure the formation of an adequate and stable brain vascular plexus. SIGNIFICANCE STATEMENT: Work presented here provides novel insight into important yet little understood aspects of brain vascular development, implicating for the first time a factor upstream of endothelial WNT signaling. We show that RA is permissive for cerebrovascular growth via suppression of WNT inhibitor expression in the neocortex. RA also functions cell-autonomously in brain endothelial cells to modulate WNT signaling and its downstream target, Sox17. The significance of this is although endothelial WNT signaling is required for neurovascular development, too much endothelial WNT signaling, as well as overexpression of its target Sox17, are detrimental. Therefore, RA may act as a "brake" on endothelial WNT signaling and Sox17 to ensure normal brain vascular development.


Subject(s)
Brain/cytology , Cerebral Ventricles/cytology , Gene Expression Regulation, Developmental/genetics , Retinoic Acid Receptor alpha/metabolism , Tretinoin/metabolism , Wnt Signaling Pathway/physiology , Age Factors , Alcohol Oxidoreductases/deficiency , Alcohol Oxidoreductases/genetics , Animals , Brain/embryology , Cell Differentiation , Cells, Cultured , Cerebral Ventricles/embryology , Embryo, Mammalian , Endothelial Cells/metabolism , Ephrins/genetics , Ephrins/metabolism , Gene Expression Regulation, Developmental/drug effects , Humans , Mice , Mice, Inbred C57BL , Mice, Transgenic , Nerve Tissue Proteins/genetics , Nerve Tissue Proteins/metabolism , Retinoic Acid Receptor alpha/genetics , Tretinoin/pharmacology , Wnt Signaling Pathway/drug effects , Wnt Signaling Pathway/genetics , beta Catenin/genetics , beta Catenin/metabolism , beta-Galactosidase/genetics , beta-Galactosidase/metabolism
20.
Development ; 141(2): 448-59, 2014 Jan.
Article in English | MEDLINE | ID: mdl-24353059

ABSTRACT

Angiogenesis defines the process in which new vessels grow from existing vessels. Using the mouse retina as a model system, we show that cysteine-rich motor neuron 1 (Crim1), a type I transmembrane protein, is highly expressed in angiogenic endothelial cells. Conditional deletion of the Crim1 gene in vascular endothelial cells (VECs) causes delayed vessel expansion and reduced vessel density. Based on known Vegfa binding by Crim1 and Crim1 expression in retinal vasculature, where angiogenesis is known to be Vegfa dependent, we tested the hypothesis that Crim1 is involved in the regulation of Vegfa signaling. Consistent with this hypothesis, we showed that VEC-specific conditional compound heterozygotes for Crim1 and Vegfa exhibit a phenotype that is more severe than each single heterozygote and indistinguishable from that of the conditional homozygotes. We further showed that human CRIM1 knockdown in cultured VECs results in diminished phosphorylation of VEGFR2, but only when VECs are required to rely on an autocrine source of VEGFA. The effect of CRIM1 knockdown on reducing VEGFR2 phosphorylation was enhanced when VEGFA was also knocked down. Finally, an anti-VEGFA antibody did not enhance the effect of CRIM1 knockdown in reducing VEGFR2 phosphorylation caused by autocrine signaling, but VEGFR2 phosphorylation was completely suppressed by SU5416, a small-molecule VEGFR2 kinase inhibitor. These data are consistent with a model in which Crim1 enhances the autocrine signaling activity of Vegfa in VECs at least in part via Vegfr2.


Subject(s)
Bone Morphogenetic Protein Receptors/metabolism , Retinal Vessels/growth & development , Retinal Vessels/metabolism , Vascular Endothelial Growth Factor A/metabolism , Alleles , Animals , Autocrine Communication , Bone Morphogenetic Protein Receptors/antagonists & inhibitors , Bone Morphogenetic Protein Receptors/genetics , Cell Proliferation , Endothelial Cells/metabolism , Gene Knockdown Techniques , Heterozygote , Homozygote , Human Umbilical Vein Endothelial Cells , Humans , Membrane Proteins/antagonists & inhibitors , Membrane Proteins/genetics , Membrane Proteins/metabolism , Mice , Mice, Mutant Strains , Mice, Transgenic , Neovascularization, Physiologic , Pericytes/metabolism , Phenotype , Phosphorylation , RNA, Small Interfering/genetics , Retinal Vessels/embryology , Vascular Endothelial Growth Factor A/antagonists & inhibitors , Vascular Endothelial Growth Factor A/genetics , Vascular Endothelial Growth Factor Receptor-2/metabolism
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