VEGFR2 Antibody (Ab_1214), pAb, Rabbit
- Known as:
- VEGFR2 Antibody (Ab_1214), pAb, Rabbit
- Catalog number:
- A00355
- Product Quantity:
- 40ug
- Category:
- -
- Supplier:
- Genscript
- Gene target:
- VEGFR2 Antibody (Ab_1214) pAb Rabbit
Ask about this productRelated genes to: VEGFR2 Antibody (Ab_1214), pAb, Rabbit
- Gene:
- KDR NIH gene
- Name:
- kinase insert domain receptor
- Previous symbol:
- -
- Synonyms:
- FLK1, VEGFR, VEGFR2, CD309
- Chromosome:
- 4q12
- Locus Type:
- gene with protein product
- Date approved:
- 1991-07-10
- Date modifiied:
- 2019-04-23
Related products to: VEGFR2 Antibody (Ab_1214), pAb, Rabbit
Related articles to: VEGFR2 Antibody (Ab_1214), pAb, Rabbit
- Choroidal neovascularization (CNV) causes vision loss in neovascular age-related macular degeneration (nAMD) and pathologic myopia-related CNV (pmCNV). Despite shared clinical features, they respond differently to treatment. This study compared aqueous humor (AH) proteomic profiles of nAMD and pmCNV to identify biomarkers and mechanisms of CNV formation. - Source: PubMed
Zhao HanqingGao BenboDing NingZhang RuihengZhou WendaSong GuojiaoLi HeyanWu HaotianYang YuhangShao LeiDong LiWei Wenbin - Angiogenesis, regulated by vascular endothelial growth factor (VEGF), is crucial in tumor growth, metastasis, and inflammation. Leonurus japonicus Houtt., a traditional Chinese herb, was investigated for its anti-angiogenic potential. DNA sequencing confirmed its identity, distinguishing it from the common morphological misidentification with Leonurus sibiricus by the public. Using UHPLC-MS/MS and GNPS (Global Natural Products Social) molecular networking on the active methanol partition, over 6000 nodes were grouped into 273 clusters. Diterpenoids and flavonoids were targeted. Six compounds were successfully isolated from L. japonicus, including four labdane-type diterpenoids (1-4) and two flavonoids (5, 6) using column chromatography. Compound 1, (-)-8S-acetoxy-15,16-epoxy-8,9-seco-13(16),14-labdadiene, was a new stereoisomer, while Compound 6, nevadensin, was reported for the first time from this species. Compounds were characterized by NMR, ESI-MS, and ECD. At 50 μM, Compounds 1, 4, and 5 exhibited inhibitory effects in endothelial progenitor cell (EPC) tube formation. Molecular docking and dynamics simulations supported this anti-angiogenic activity. Compound 1 showed the highest VEGFR-2 binding affinity (-9.24 kcal/mol), comparable to sunitinib (-9.52 kcal/mol), further verified by an immunoblotting assay. This study demonstrated the successful integration of GNPS and bioactivity-guided isolation for identifying natural VEGFR-2 inhibitors. Our findings highlight Compounds 1 and 4 as promising lead candidates for anti-angiogenic therapy. - Source: PubMed
Raviraj ThiyagarajanYu Chen-LinIntharuksa AekkhaluckLai Shang-ChihTenderly Vidya FebrascaLoo Yen ChiChen Pin-WeiWang Shih-WeiPurnomo Kartiko ArifKulandhaivel Soundar RajanRenadi SedinLirio StephenCheng Yuan-BinYang Yu-LiangHwang Tsong-LongChang Fang-RongKorinek Michal - Age-related macular degeneration (AMD), characterized by pathologic choroidal neovascularization (CNV), is a leading cause of vision loss in the elderly. Vascular endothelial growth factor A (VEGFa) antagonists can prevent acute vision loss, but high treatment burden and loss of efficacy with chronic therapy highlight the need to explore alternative mechanisms. Recently, microRNA-34a (miR-34a) has emerged as a key regulator in aging and age-related diseases, but its role in neovascular AMD is unclear. In an injury-induced murine CNV model, we found miR-34a promoted pathological angiogenesis, without altering expression of Vegfa or its receptor Kdr, the canonical regulators of CNV. Mechanistically, miR-34a directly targets and inhibits the transcription factor KLF2, thereby upregulating the proangiogenic factors CXCR4 and CXCL12. Finally, we show miR-34a exacerbates CNV in aged mice and is expressed in CNV lesions excised from wet AMD patients. These findings establish a causal link between the age-related miR-34a and neovascularization in AMD. - Source: PubMed
Publication date: 2026/08/12
Colasanti Jason JSanteford AndreaLin Joseph BTerao RyoLee Tae JunApte Rajendra S - This study aimed to evaluate the potential of Acer truncatum leaf extract (ATLE) to mitigate oxidative-stress-induced impairment of reproductive function in laying hens, with a focus on mechanisms involving antioxidant defense, angiogenesis, and ovarian microenvironment homeostasis. Oxidative stress was induced by tert-butyl hydroperoxide (tBHP) injection. Hens were randomly assigned to a control group (CON), an oxidative stress group (BCON), and an oxidative stress group supplemented with 0.6% ATLE (BATLE). Egg-laying performance, ovarian morphology, reproductive hormones, oxidative stress markers, and angiogenesis indicators were evaluated and integrated with transcriptomic analysis. The results were as follows: 1) Production and Morphology: ATLE supplementation alleviated (P < 0.05) the tBHP-induced decrease in egg laying rate and elevation in feed conversion ratio (FCR). It also mitigated (P < 0.05) reductions in the number of hierarchical follicles and the ovarian stroma index while restoring (P < 0.05) serum concentrations of LH and GH, thereby re-establishing reproductive endocrine balance. 2) Antioxidant Defense: ATLE activated (P < 0.05) Nrf2 and increased (P < 0.05) transcription of downstream antioxidant genes, including SOD3, GPX3, PRDX4, GSR and CAT, thereby enhancing (P < 0.05) the SOD and CAT activities and reducing (P < 0.05) MDA concentrations within both serum and ovarian tissues. 3) Vascular Network Support: ATLE attenuated (P < 0.05) the tBHP-induced downregulation of angiogenic factors, including protein levels of VEGF, ANGPT1, and HIF-1α and mRNA expression levels of VEGFA, ANGPT1, ANGPT2, ITGA5, and MMP9. 4) Microenvironment Remodeling: Transcriptomic integration revealed that ATLE-mediated repair overlapped (> 88%) with oxidative-stress-induced damage across functional modules. By reversing dysregulation of key genes such as VEGFA, KDR, and FN1, ATLE restored core pathways including focal adhesion and ECM-receptor interaction, and coordinated processes such as extracellular matrix, angiogenesis, and response to wounding, driving a systemic remodeling of the ovarian reproductive microenvironment toward homeostasis. In summary, this study demonstrated that ATLE activated multiple signaling axes, notably Nrf2 and VEGF. As a result, ATLE enhanced antioxidant defenses against oxidative damage and promoted vascular health and microenvironmental remodeling in the ovary. Together, these effects preserved the structural integrity and function of the laying hen reproductive system. These findings supported the potential of ATLE as a natural feed additive and provided a scientific rationale for using nutritional strategies to alleviate oxidative stress and improve reproductive health in laying hens. - Source: PubMed
Publication date: 2026/08/12
Qin KailongMa JunjieGao MingluLiu YanliYang Xiaojun - Jiao-Ai Decoction (JAD), a classic Traditional Chinese Medicine (TCM) formula, has been applied traditionally for treating gynecological conditions such as menorrhagia, post-abortion bleeding, and threatened abortion (TA). Clinically, it yields an efficacy rate of over 90% for TA treatment, yet its associated molecular events have not been characterized. - Source: PubMed
Publication date: 2026/08/11
Hu XinruYun JiaqiDeng JiaLiu ChenNiu XueyuGao JialinLu YuechunOu HanWang ZiqiGeng TingZhang YiZhang Li