Aug 2026· Angiogenesis· Vol 29· 0 citations· 83 references
Medicine
TL;DR
Results establish TPC2 as one of the regulators of lysosome-mediated choroidal angiogenesis, highlighting its potential as a therapeutic target in nAMD.
Abstract
Pathological choroidal neovascularization underlies vision loss in neovascular age-related macular degeneration (nAMD), yet the molecular regulators coordinating vascular and immune components remain incompletely defined. Here, we investigated the role of the endolysosomal cation channel, two-pore channel 2 (TPC2) in choroidal angiogenesis. Loss of TPC2 in mice markedly reduced ex vivo choroidal sprouting, while pharmacological activation enhanced vascular growth. Mechanistically, Tpc2-deficiency led to downregulation of multiple microglia-derived pro-angiogenic factors and impaired the ability of the microglial secretome to stimulate neovascularization. In choroidal vascular cells, TPC2 loss attenuated NF-κB/MAPK signaling pathways. Tpc2-deficiency is also associated with lysosomal secretion of cathepsins, especially CTSD, resulting in decreased extracellular proteolytic activity and impaired paracrine regulation of angiogenesis. Extending these findings to human cells, TPC2 knockout in iPSC-derived endothelial cells impaired migration, tube formation, and CTSD activity in the secretome, mirroring the murine phenotype. Together, these results establish TPC2 as one of the regulators of lysosome-mediated choroidal angiogenesis, highlighting its potential as a therapeutic target in nAMD.
By maintaining mitochondrial bioenergetic efficiency and mitigating oxidative stress, PLK2 sustains the high-energy demands of pathological endothelial cell activation and sprouting and represents a promising therapeutic strategy for pathological ocular angiogenesis.
Ping-ping Fu, Wen Bai, Ying-Shun Pan et al.· Cell Death Discovery· 0 citations
The concept of retinal neovascularization as an immunovascular disorder is reinforced and the therapeutic potential of microenvironment-modulating strategies using biomaterials is underscored to underscore the therapeutic potential of microenvironment-modulating strategies using biomaterials.
Zi-Yi Zhou, Tian-Hao Yuan, Jiaxing Sun et al.· Science Translational Medici...· 0 citations
A causal link between the age-related miR-34a and neovascularization in AMD is established and miR-34a directly targets and inhibits the transcription factor KLF2, thereby upregulating the proangiogenic factors CXCR4 and CXCL12.
Jason J. Colasanti, A. Santeford, Joseph B. Lin et al.· Proceedings of the National...· 1 citation
Angiogenesis is essential not only during embryogenesis but also in adult physiology and disease, relying on vascular endothelial growth factor (VEGF) gradients to guide tip cell sprouting. Cellular prion protein (PrPC), expressed in several neurovascular unit (NVU) cell types, regulates neuronal and astrocytic differe...
Bárbara Gomes da Rosa, F. Leser, Marco Aurélio Alves et al.· Neurochemical Research· 0 citations
PURPOSE
Choroidal neovascularization causes vision loss, necessitating the development of novel therapeutic methods. This study examines the role of eriocitrin, a flavonoid, in choroidal neovascularization and its potential mechanism of action.
METHODS
A murine laser-induced choroidal neovascularization model and hyp...
Yu Zan, Xiao-Na Wang, Xue-Feng Xiao et al.· Current Eye Research· 0 citations
Ischemic stroke remains a leading cause of disability worldwide, and angiogenesis is critical for functional recovery. Although andrographolide (ANP) has anti-inflammatory and neuroprotective properties, its role in post-stroke angiogenesis remains unclear. Here, we investigated whether ANP promotes post-ischemic angio...
Hong-Fei Li, Hai-Rong Xiang, Xin-Yu Li et al.· Biology· 0 citations
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