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huVEGFA Mouse
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huVEGFA Mouse
製品名
huVEGFA Mouse
製品ID
C001555
系統名
C57BL/6JCya-Vegfatm1(hVEGFA)/Cya
背景情報
C57BL/6JCya
状況
このマウス系統を論文で使用する場合は、「huVEGFA Mouse(カタログ番号C001555)はサイアジェンから購入しました。」と引用してください。
HUGO-GT Humanized Models
Tumor Target Humanized Mouse Models
Cytokine Gene Humanized Mouse Models
製品タイプ
年齢
遺伝子型
性別
数量
標準的な配送方法では、少なくとも3匹のヘテロ接合体キャリアを保証しています。ホモ接合体キャリアや指定された性別の個体の繁殖サービスも利用可能です。
お見積もりについてはこちらまでご連絡ください
HUGO-GT Humanized Models
Tumor Target Humanized Mouse Models
Cytokine Gene Humanized Mouse Models
基本情報
検証 Data
関連リソース
基本情報
遺伝子名
遺伝子別名
VPF, VEGF, MVCD1
NCBI ID
染色体
Chr 6
MGI ID
さらに
系統詳細
The Vascular Endothelial Growth Factor (VEGF) family is a group of particular endothelial growth factors intimately associated with angiogenesis. These factors promote increased vascular permeability, extracellular matrix degeneration, vascular endothelial cell migration and proliferation, and are capable of stimulating angiogenesis and increasing the permeability of existing vessels. As such, they play a pivotal role in normal vascular development and wound healing. The VEGF family comprises VEGFA, VEGFB, VEGFC, VEGFD, VEGFE, and PLGF [1]. Of these, VEGFA is the most commonly targeted in research related to neovascular ophthalmic diseases due to its crucial role in the proliferation, migration, and formation of endothelial cell microvessels [2]. Overexpression of VEGFA in the eye can result in abnormal vascular growth and leakage, leading to various ophthalmic diseases such as Age-Related Macular Degeneration (AMD), Diabetic Retinopathy (DR), and corneal neovascularization [2-3]. The progression of solid tumors depends on vascularization and angiogenesis within malignant tissues, with VEGFA playing a crucial role among various pro-angiogenic factors. The VEGFA gene is upregulated in many known tumors, correlating with tumor staging and progression. Blocking VEGFA may lead to vascular network regression, thereby inhibiting tumor growth[4]. Thus, VEGFA is an important target for anti-angiogenic cancer therapies.
The huVEGFA mice were generated by replacing the mouse Vegfa gene sequence with the human VEGFA gene sequence, including the non-coding 3’ UTR region. This model expresses the human VEGFA protein. huVEGFA mice can be used for mechanistic studies and efficacy evaluations of ophthalmic diseases such as Age-Related Macular Degeneration (AMD), Diabetic Retinopathy (DR), and corneal neovascularization, as well as for tumor development and cancer drug research.
参考文献
Hoeben A, Landuyt B, Highley MS, Wildiers H, Van Oosterom AT, De Bruijn EA. Vascular endothelial growth factor and angiogenesis. Pharmacol Rev. 2004 Dec;56(4):549-80.
Apte RS, Chen DS, Ferrara N. VEGF in Signaling and Disease: Beyond Discovery and Development. Cell. 2019 Mar 7;176(6):1248-1264.
Mesquita J, Castro-de-Sousa JP, Vaz-Pereira S, Neves A, Passarinha LA, Tomaz CT. Vascular endothelial growth factors and placenta growth factor in retinal vasculopathies: Current research and future perspectives. Cytokine Growth Factor Rev. 2018 Feb;39:102-115.
Chekhonin VP, Shein SA, Korchagina AA, Gurina OI. VEGF in tumor progression and targeted therapy. Curr Cancer Drug Targets. 2013 May;13(4):423-43.
系統作製戦略
The sequence from the CTG start codon to 3'UTR of the mouse Vegfa gene was replaced with the sequence from the CTG start codon to 3'UTR of the human VEGFA gene.

Figure 1. Gene editing strategy of huVEGFA mice.
適用分野
Research on Age-Related Macular Degeneration (AMD);
Research on Diabetic Retinopathy (DR);
Research on corneal neovascular diseases;
Tumor development and cancer drug research.
検証 Data
1. Human and mouse gene expression detection
RT-qPCR results showed significant expression of the human VEGFA gene in the eyes, lungs, heart, and liver of huVEGFA mice, with no expression of the mouse Vegfa gene. In contrast, only the expression of the mouse Vegfa gene was detected in WT mice, with no expression of the human VEGFA gene. The tissue-specific expression profile of the human VEGFA gene in huVEGFA mice was similar to the expression profile of the mouse endogenous Vegfa gene in wild-type mice (Bars represent mean ± SD, n ≥ 3; ND: Not Detected).

Figure 2. Gene expression in the eye, heart, liver, and lungs of 8-week-old male homozygous huVEGFA mice and wild-type (WT) mice.
2. Normal retinal morphology and vasculature in huVEGFA mice
The fundus morphology, retinal OCT, and fundus fluorescein angiography results of heterozygous and homozygous huVEGFA mice were consistent with those of WT.

Figure 3. Fundus morphology, OCT and FFA results of wild-type and huVEGFA mice.
3. Normal photoreceptor function in huVEGFA mice
Compared with WT, the amplitudes of the a-wave and b-wave in both scotopic and photopic ERG recordings of heterozygous and homozygous huVEGFA mice were nearly identical to those of the WT. The retinal photoreceptor function of heterozygous and homozygous huVEGFA mice were normal.

Figure 4. Electroretinogram (ERG) detection results of WT and huVEGFA mice.
関連リソース
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