Suboptimal Responses to Anti-VEGF in Retinal Neurovascular Diseases: Linking Aging and Alternative Angioinflammatory Pathways

作者信息Somayeh Piroozmand, Hamid Latifi-Navid, Zahra-Soheila Soheili, Saman Hosseinkhani, Shahram Samiei, Amir Barzegar Behrooz, Hamid Ahmadieh, Andrea Leonardi, Saeid Ghavami, Nader Sheibani
PMID42080790
期刊Invest Ophthalmol Vis Sci
发布时间2026-05-01
DOI10.1167/iovs.67.5.4
查看来源

摘要

Purpose: Vision-threatening ocular diseases are impacted by aging-associated molecular changes, including mitochondrial dysfunction, cellular senescence, and chronic inflammation. Anti-VEGF therapies targeting VEGF-A/VEGFR2 signaling remain the frontline standard of care, but many patients exhibit suboptimal or nondurable responses, often due to compensatory and/or compromised antiangiogenic and anti-inflammatory pathways. We aimed to elucidate shared mechanisms underlying treatment failure and disease progression. Methods: We applied an integrative systems biology framework that combined multiomics datasets, network-based machine learning, and disease-specific pathway mapping. A comprehensive literature review of conditions, including diabetic retinopathy, age-related macular degeneration, retinitis pigmentosa, glaucoma, and aging, identified 14 core genes consistently associated with angiogenesis, inflammation, and immune signaling. Multialgorithm centrality and enrichment analyses reconstructed disease-specific interaction networks, revealing consensus mechanistic axes. Integration of cell-type-specific single-cell RNA sequencing data from AMD-RPE clusters identified cluster-specific gene hubs and vertical signaling axes, leading to VEGF blockade failure. Results: EGFR, HSP90AA1, SIRT1, and STAT3 emerged as central resistance hubs linking angiogenesis and inflammatory processes. Pathway enrichment analyses revealed 21 conserved core signaling cascades, grouped into six functional categories, with AGE-RAGE, PI3K-Akt, HIF-1, MAPK, and chemokine pathways playing central roles. A MiRGD-based peptide nanocomplex delivering htsFLT01 achieved efficient RPE transfection and controlled gene activation under basal conditions. Conclusions: This systems-level framework clarifies mechanisms of VEGF blockade resistance and provides a rational basis for next-generation, combinatorial therapeutic strategies requiring validation in disease-relevant models.

实验方法

产品清单

名称品牌货号
pET28a载体Novagen--
Ni-NTA亲和层析柱Qiagen--
截留分子量膜Sigma-Aldrich3.5 kDa
pAAV–MCS–IRES–GFP载体----
DMEM/F12培养基Gibco, Thermo Fisher Scientific--
胎牛血清Gibco--
恒温恒湿培养箱----
24孔板----
倒置荧光显微镜Zeiss Axiovert, Carl Zeiss--
流式细胞仪BD FACS Calibur; BD Biosciences--
TriPure分离试剂Roche--
DNaseΙ酶ABMgood--
Revert Aid第一链cDNA合成试剂盒Thermo Fisher Scientific--
QuantiFast SYBR Green PCR试剂盒Qiagen--
实时PCR系统Applied Biosystems--