Logo
ホームページ
当社のモデルを探求してください。
カート
連絡先
購読する
モデル製品
HUGOシリーズ 🌟
HUGO-GT™(ヒト化ゲノムオルソログ)
HUGO-Ab™(抗体開発)
HUGO-Mab™ – 完全ヒトモノクローナル抗体マウス
MouseAtlas モデルライブラリ
期間限定セール
研究用動物モデル
Creマウス系統
ヒト化ターゲット遺伝子モデル
代謝疾患モデル
眼科疾患モデル
神経疾患モデル
自己免疫疾患モデル
免疫不全マウスモデル
ヒト化免疫系マウスモデル
腫瘍学・免疫腫瘍学モデル
新型コロナウイルス感染症(Covid-19)用マウスモデル
細胞株モデル
ノックアウト細胞株製品カタログ
iPS細胞株製品カタログ
腫瘍細胞株製品カタログ
AAV 标準製品カタログ
サービス
前臨床薬効評価
神経科学
アルツハイマー病前臨床CROサービス
パーキンソン病前臨床CROサービス
ハンチントン病前臨床CROサービス
血液脳関門(BBB)研究ソリューション
眼科分野
緑内障前臨床CROサービス
加齢黄斑変性(AMD)前臨床CROサービス
がん研究
PBMCヒト化マウスモデル
ヒト免疫システム(HIS)マウスモデル
代謝・循環器系疾患
抗肥満薬開発向け前臨床CROサービス
自己免疫・炎症疾患
喘息前臨床CROサービス
遺伝子改変動物
ノックアウトマウス
トランスジェニックマウス
ノックインマウス
ノックアウトラット
ノックインラット
トランスジェニックラット
遺伝子改変モデルの作製技術
TurboknockoutTMゲノム標的化技術
ターゲティング遺伝子編集
通常型トランスジェニック
PiggyBacトランスジェネシス
BACトランスジェニック
ES細胞ターゲティング
繁殖・サポートサービス
繫殖サービス
凍結保存および回復
表型解析サービス
BAC改変
ウイルスパッケージング
アデノ関連ウイルス(AAV)パッケージング
レントウイルスパッケージング
アデノウイルスパッケージング
カスタム細胞株作製サービス
誘導多能性幹細胞(iPS細胞)
ノックアウト細胞株
ノックイン細胞株
点変異細胞株
過剰発現細胞株
モダリティ
遺伝子治療
AI駆動型AAV開発
核酸医薬
細胞免疫療法
コミュ二ティー
キャンペーン
イベント・ウェビナー
ニュース
研究情報
資料室
データベース
査読済み文献(引用)
希少疾患データセンター
AbSeek
Cell iGeneEditor™ システム
OriCell 細胞培養関連
会社案内
企業概要
施設概要
動物の健康・福祉
健康報告書
協力企業・代理店
採用情報
お問い合わせ
Login
フィルター
フィルター
KO/cKO マウスモデル
フラッシュセール
HUGO-GT™ プラットフォーム
ヒト化ターゲット遺伝子モデル
ヒト化ターゲット遺伝子モデル
免疫ターゲットヒト化モデル腫瘍ターゲットヒト化モデル代謝ターゲットヒト化モデルサイトカインヒト化モデルその他のターゲットヒト化モデル
免疫系マウスモデル
免疫不全マウスモデルヒト化免疫系モデル
遺伝学ツールマウスモデル
Creドライバー系統レポーターマウス系統その他の遺伝学ツール系統
専門疾患モデル
眼科疾患モデル神経疾患モデル代謝疾患モデル腫瘍学・免疫腫瘍学モデル自己免疫疾患モデル希少疾患モデル感染症疾患モデルその他の疾患モデル
57 件の結果が で取得されました
フィルター
並べ替える:
アルファベット順(A-Z)
ベストセラー
Alas2-P2A-EGFP-T2A-iCre
製品ID :
C001650
系統:
C57BL/6JCya
状況:
Live Mouse
説明:
The TAA stop codon was replaced with the P2A-EGFP-T2A-iCre cassette. Cre recombinase and enhanced green fluorescent protein (EGFP) are expressed under the regulatory control of Alas2 gene elements.
The TAA stop codon was replaced with the P2A-EGFP-T2A-iCre cassette. Cre recombinase and enhanced green fluorescent protein (EGFP) are expressed under the regulatory control of Alas2 gene elements.
Adgrl2-3xGGGGS-mCherry
製品ID :
C001743
系統:
C57BL/6JCya
状況:
Live Mouse
説明:
The ADGRL2 gene (Adhesion G Protein-Coupled Receptor L2), also known as latrophilin 2, encodes a member of the adhesion G protein-coupled receptor (aGPCR) family, which are characterized by a long N-terminal domain involved in cell-cell and cell-matrix interactions [1]. The encoded protein, ADGRL2, is involved in various physiological processes, including cell adhesion, neuronal development, regulation of exocytosis (e.g., as a low-affinity receptor for alpha-latrotoxin), and maintaining intestinal homeostasis [2]. It is expressed in numerous tissues, with notable expression in the central nervous system (neurons, hippocampus), intestinal epithelium, and specifically, its expression is strongly upregulated during keratinocyte differentiation in epidermal tissue [3]. Dysregulation or variations in ADGRL2 have been associated with a range of conditions, including neurodegenerative diseases (like Alzheimer's and Parkinson's), inflammatory bowel diseases (Crohn's disease, ulcerative colitis), certain autoimmune diseases (rheumatoid arthritis, systemic lupus erythematosus, multiple sclerosis), and even metabolic syndrome and cocaine use disorder. Adgrl2-3xGGGGS-mCherry mice are constructed by replacing the partial exon 1 coding region of the mouse Adgrl2 gene with HA signal peptide - HA tag - Mouse Adgrl2 CDS (without signal peptide) - 3xGGGGS - mCherry - rBG pA cassette using gene editing technology. The Adgrl2-3xGGGGS-mCherry mouse carries a red fluorescent protein (mCherry) expression cassette, making it a precise research model that maintains protein function while offering fluorescence visualization. This model is valuable for several key areas of study. For instance, it can be used for the spatio-temporal dynamic analysis of the Adgrl2 gene expression profile. Researchers can also utilize it for investigating neuronal development and synapse formation mechanisms. Furthermore, it enables live-animal dynamic tracking and real-time imaging observation, providing invaluable insights. Lastly, this model is well-suited for systematic studies of protein interaction networks and downstream signaling pathways.
The ADGRL2 gene (Adhesion G Protein-Coupled Receptor L2), also known as latrophilin 2, encodes a member of the adhesion G protein-coupled receptor (aGPCR) family, which are characterized by a long N-terminal domain involved in cell-cell and cell-matrix interactions [1]. The encoded protein, ADGRL2, is involved in various physiological processes, including cell adhesion, neuronal development, regulation of exocytosis (e.g., as a low-affinity receptor for alpha-latrotoxin), and maintaining intestinal homeostasis [2]. It is expressed in numerous tissues, with notable expression in the central nervous system (neurons, hippocampus), intestinal epithelium, and specifically, its expression is strongly upregulated during keratinocyte differentiation in epidermal tissue [3]. Dysregulation or variations in ADGRL2 have been associated with a range of conditions, including neurodegenerative diseases (like Alzheimer's and Parkinson's), inflammatory bowel diseases (Crohn's disease, ulcerative colitis), certain autoimmune diseases (rheumatoid arthritis, systemic lupus erythematosus, multiple sclerosis), and even metabolic syndrome and cocaine use disorder. Adgrl2-3xGGGGS-mCherry mice are constructed by replacing the partial exon 1 coding region of the mouse Adgrl2 gene with HA signal peptide - HA tag - Mouse Adgrl2 CDS (without signal peptide) - 3xGGGGS - mCherry - rBG pA cassette using gene editing technology. The Adgrl2-3xGGGGS-mCherry mouse carries a red fluorescent protein (mCherry) expression cassette, making it a precise research model that maintains protein function while offering fluorescence visualization. This model is valuable for several key areas of study. For instance, it can be used for the spatio-temporal dynamic analysis of the Adgrl2 gene expression profile. Researchers can also utilize it for investigating neuronal development and synapse formation mechanisms. Furthermore, it enables live-animal dynamic tracking and real-time imaging observation, providing invaluable insights. Lastly, this model is well-suited for systematic studies of protein interaction networks and downstream signaling pathways.
Agrp-IRES-CreERT2-P2A-tdTomato
製品ID :
C001558
系統:
C57BL/6JCya
状況:
Live Mouse
説明:
The AGRP gene encodes Agouti-related protein (AgRP), a neuropeptide synthesized by AgRP/NPY neurons predominantly located in the arcuate nucleus of the hypothalamus, as well as in the kidneys and adrenal glands. The expression of AGRP is modulated by various factors, including nutritional status and hormonal signals. Notably, AGRP expression is markedly upregulated during periods of starvation and rapidly downregulated following refeeding. AgRP is exclusively synthesized in the ventromedial part of the arcuate nucleus within neuropeptide Y (NPY)-containing cells, where it is co-expressed with NPY. This neuropeptide plays a pivotal role in enhancing appetite, reducing metabolic rate, and decreasing energy expenditure, making it one of the most potent and enduring appetite stimulators. AgRP exerts its orexigenic effects by antagonizing melanocortin receptor 4 (MC4R), thereby promoting food intake and inhibiting energy expenditure, which is crucial for weight regulation. Mutations in the AGRP gene have been implicated in conditions such as late-onset obesity and anorexia nervosa, underscoring its significant role in energy homeostasis and body weight control. The Agrp-IRES-CreERT2-P2A-tdTomato mouse model was generated by integrating the IRES-CreERT2-P2A-tdTomato gene expression cassette into the endogenous Agrp locus via gene editing technology. Under the control of the mouse endogenous Agrp gene regulatory elements, this mouse expresses tamoxifen-inducible CreERT2 recombinase. Additionally, the cassette includes a red fluorescent protein (tdTomato) for lineage tracing of Agrp-positive cells. In the absence of tamoxifen, CreERT2 recombinase remains cytoplasmic. Upon tamoxifen administration, CreERT2 translocates to the nucleus to mediate recombination. When Agrp-IRES-CreERT2-P2A-tdTomato mice are crossed with mice containing loxP sites, tamoxifen induction can trigger Cre recombinase-mediated sequence recombination between loxP sites in AgRP-positive neurons of the offspring.
The AGRP gene encodes Agouti-related protein (AgRP), a neuropeptide synthesized by AgRP/NPY neurons predominantly located in the arcuate nucleus of the hypothalamus, as well as in the kidneys and adrenal glands. The expression of AGRP is modulated by various factors, including nutritional status and hormonal signals. Notably, AGRP expression is markedly upregulated during periods of starvation and rapidly downregulated following refeeding. AgRP is exclusively synthesized in the ventromedial part of the arcuate nucleus within neuropeptide Y (NPY)-containing cells, where it is co-expressed with NPY. This neuropeptide plays a pivotal role in enhancing appetite, reducing metabolic rate, and decreasing energy expenditure, making it one of the most potent and enduring appetite stimulators. AgRP exerts its orexigenic effects by antagonizing melanocortin receptor 4 (MC4R), thereby promoting food intake and inhibiting energy expenditure, which is crucial for weight regulation. Mutations in the AGRP gene have been implicated in conditions such as late-onset obesity and anorexia nervosa, underscoring its significant role in energy homeostasis and body weight control. The Agrp-IRES-CreERT2-P2A-tdTomato mouse model was generated by integrating the IRES-CreERT2-P2A-tdTomato gene expression cassette into the endogenous Agrp locus via gene editing technology. Under the control of the mouse endogenous Agrp gene regulatory elements, this mouse expresses tamoxifen-inducible CreERT2 recombinase. Additionally, the cassette includes a red fluorescent protein (tdTomato) for lineage tracing of Agrp-positive cells. In the absence of tamoxifen, CreERT2 recombinase remains cytoplasmic. Upon tamoxifen administration, CreERT2 translocates to the nucleus to mediate recombination. When Agrp-IRES-CreERT2-P2A-tdTomato mice are crossed with mice containing loxP sites, tamoxifen induction can trigger Cre recombinase-mediated sequence recombination between loxP sites in AgRP-positive neurons of the offspring.
Alpl-NLS-mScarlet
製品ID :
C001746
系統:
C57BL/6JCya
状況:
Live Mouse
説明:
The P2A-3xSV40 NLS-mScarlet cassette was inserted upstream of TGA stop codon. Nuclear-localized mScarlet is expressed under the regulatory control of Alpl gene elements in this mouse model. This localization is achieved through the Nuclear Localization Signal (NLS), which efficiently targets mScarlet to the cell nucleus. This enables mScarlet fluorescence protein nuclear tracing studies.
The P2A-3xSV40 NLS-mScarlet cassette was inserted upstream of TGA stop codon. Nuclear-localized mScarlet is expressed under the regulatory control of Alpl gene elements in this mouse model. This localization is achieved through the Nuclear Localization Signal (NLS), which efficiently targets mScarlet to the cell nucleus. This enables mScarlet fluorescence protein nuclear tracing studies.
Adgrg3-EGFP
製品ID :
C001649
系統:
C57BL/6JCya
状況:
Live Mouse
説明:
The TAG stop codon was replaced with "3xGGGGS-EGFP" cassette. Enhanced green fluorescent protein (EGFP) is expressed under the regulatory control of Adgrg3 gene elements. This model enables EGFP fluorescence protein tracing studies.
The TAG stop codon was replaced with "3xGGGGS-EGFP" cassette. Enhanced green fluorescent protein (EGFP) is expressed under the regulatory control of Adgrg3 gene elements. This model enables EGFP fluorescence protein tracing studies.
Col10a1-IRES-Cre-P2A-EGFP
製品ID :
I001055
系統:
C57BL/6JCya
状況:
Live Mouse
説明:
For the Kl model, the IRES-Cre-P2A-EGFP-rBG pA cassette was inserted downstream of the TGA of the mouse Col10a1 gene. In this model, Cre recombinase is expressed under the regulation of the regulatory elements of the mouse Col10a1 gene. In addition, there is an enhanced green fluorescent protein (EGFP) expression element after the Cre recombinase element, which can be used for the tracking of Col10a1-positive cells.
For the Kl model, the IRES-Cre-P2A-EGFP-rBG pA cassette was inserted downstream of the TGA of the mouse Col10a1 gene. In this model, Cre recombinase is expressed under the regulation of the regulatory elements of the mouse Col10a1 gene. In addition, there is an enhanced green fluorescent protein (EGFP) expression element after the Cre recombinase element, which can be used for the tracking of Col10a1-positive cells.
Ccr7-EGFP-loxP-Stop-loxP-DTR
製品ID :
C001749
系統:
C57BL/6JCya
状況:
Live Mouse
説明:
The TAG stop codon was replaced with P2A-EGFP-IRES-loxP-6xSV40 pA-loxP-DTR cassette. Upstream of the DTR (diphtheria toxin receptor) gene lies a loxP-Stop-loxP cassette that blocks DTR transcription and expression. In the absence of Cre recombinase, the Ccr7 promoter drives EGFP expression, labeling Ccr7-positive cells with green fluorescence. Upon Cre recombination, Cre-mediated deletion of the loxP-flanked stop (LSL) element enables DTR expression in Cre-positive cells. Intravenous administration of diphtheria toxin (DT) then selectively ablates these cells.
The TAG stop codon was replaced with P2A-EGFP-IRES-loxP-6xSV40 pA-loxP-DTR cassette. Upstream of the DTR (diphtheria toxin receptor) gene lies a loxP-Stop-loxP cassette that blocks DTR transcription and expression. In the absence of Cre recombinase, the Ccr7 promoter drives EGFP expression, labeling Ccr7-positive cells with green fluorescence. Upon Cre recombination, Cre-mediated deletion of the loxP-flanked stop (LSL) element enables DTR expression in Cre-positive cells. Intravenous administration of diphtheria toxin (DT) then selectively ablates these cells.
Ctnnd2-tdTomato-loxP-Stop-loxP-DTR
製品ID :
C001751
系統:
C57BL/6JCya
状況:
Live Mouse
説明:
The TAA stop codon was replaced with the P2A-tdTomato-IRES-loxP-6xSV40 pA loxP-DTR cassette. Upstream of the DTR (diphtheria toxin receptor) gene lies a loxP-Stop-loxP cassette that blocks DTR transcription and expression. In the absence of Cre recombinase, the Ctnnd2 promoter drives tdTomato expression, labeling Ctnnd2-positive cells with red fluorescence. Upon Cre recombination, Cre-mediated deletion of the loxP-flanked stop (LSL) element enables DTR expression in Cre-positive cells. Intravenous administration of diphtheria toxin (DT) then selectively ablates these cells.
The TAA stop codon was replaced with the P2A-tdTomato-IRES-loxP-6xSV40 pA loxP-DTR cassette. Upstream of the DTR (diphtheria toxin receptor) gene lies a loxP-Stop-loxP cassette that blocks DTR transcription and expression. In the absence of Cre recombinase, the Ctnnd2 promoter drives tdTomato expression, labeling Ctnnd2-positive cells with red fluorescence. Upon Cre recombination, Cre-mediated deletion of the loxP-flanked stop (LSL) element enables DTR expression in Cre-positive cells. Intravenous administration of diphtheria toxin (DT) then selectively ablates these cells.
Calb1-dgCre (DHFR-EGFP-Cre)
製品ID :
C001747
系統:
C57BL/6JCya
状況:
Live Mouse
説明:
The TAG stop codon was replaced with the T2A-dgCre (DHFR-EGFP-Cre) cassette. Cre recombinase and enhanced green fluorescent protein (EGFP) are expressed under the regulatory control of Calb1 gene elements. The DHFR (dihydrofolate reductase) fragment, derived from the N-terminal 159 amino acids of E. coli ecDHFR, functions as a destabilizing domain (DD). In the absence of specific ligands like TMP (Trimethoprim), this fragment leads to the rapid proteasomal degradation of Cre recombinase. This mechanism allows for the temporal-specific induction of Cre recombinase activity by regulating DHFR-Cre stability with small molecules such as TMP. In addition to studies of Cre recombinase-mediated gene recombination, this model can also be used for EGFP fluorescent protein tracing studies.
The TAG stop codon was replaced with the T2A-dgCre (DHFR-EGFP-Cre) cassette. Cre recombinase and enhanced green fluorescent protein (EGFP) are expressed under the regulatory control of Calb1 gene elements. The DHFR (dihydrofolate reductase) fragment, derived from the N-terminal 159 amino acids of E. coli ecDHFR, functions as a destabilizing domain (DD). In the absence of specific ligands like TMP (Trimethoprim), this fragment leads to the rapid proteasomal degradation of Cre recombinase. This mechanism allows for the temporal-specific induction of Cre recombinase activity by regulating DHFR-Cre stability with small molecules such as TMP. In addition to studies of Cre recombinase-mediated gene recombination, this model can also be used for EGFP fluorescent protein tracing studies.
Car1-CreERT2-EGFP
製品ID :
C001748
系統:
C57BL/6JCya
状況:
Live Mouse
説明:
The IRES-CreERT2-P2A-EGFP-WPRE-BGH pA cassette was inserted downstream of the TGA stop codon. CreERT2 recombinase and enhanced green fluorescent protein (EGFP) are expressed under the regulatory control of Car1 gene elements. This model is a Tamoxifen-inducible Cre mouse, and when crossed with mice containing loxP sites, the offspring mice are expected to undergo sequence recombination between loxP sites mediated by Cre recombinase in Car1-positive cells following Tamoxifen induction. In addition to studies of Cre recombinase-mediated gene recombination, this model can also be used for EGFP fluorescent protein tracing studies.
The IRES-CreERT2-P2A-EGFP-WPRE-BGH pA cassette was inserted downstream of the TGA stop codon. CreERT2 recombinase and enhanced green fluorescent protein (EGFP) are expressed under the regulatory control of Car1 gene elements. This model is a Tamoxifen-inducible Cre mouse, and when crossed with mice containing loxP sites, the offspring mice are expected to undergo sequence recombination between loxP sites mediated by Cre recombinase in Car1-positive cells following Tamoxifen induction. In addition to studies of Cre recombinase-mediated gene recombination, this model can also be used for EGFP fluorescent protein tracing studies.
Items: 1 to 10 of 57
1
2
3
4
5
6
さらに
すべてのフィルター
Strain Type
Mouse
Rat
Modification Type
Knockout
Conditional Knockout
Knockin
Point Mutation
Transgenic
Conditional Knockin
Others
Status
Live Mice
R&D
Frozen Sperm
Validation Data
Verified
In Progress
リセット
確認する
モデルライブラリ
モデルライブラリ
リソース
リソース
動物の品質
動物の品質
サポートを受ける
サポートを受ける
住所:
〒543-0071 大阪府大阪市天王寺区生玉町2-3 小出ビル410室
電話 :
06-7652-3321
メール:
[email protected]
モデル製品
HUGO-Ab™(抗体開発)HUGO-GT™(ヒト化ゲノムオルソログ)MouseAtlas モデルライブラリ研究用動物モデル
サービス
神経科学眼科分野がん研究代謝・循環器系疾患自己免疫・炎症疾患
会社案内
企業概要施設概要動物の健康・福祉健康報告書協力企業・代理店採用情報お問い合わせ
SNS
免責事項:当社の製品およびサービスの価格や入手可能性は地域によって異なります。記載されている価格は特定の国々に適用されます。詳細についてはご連絡ください。
Copyright © 2025 Cyagen. All rights reserved.
プライバシーポリシー
サイトマップ
Cyagenの最新情報をお届けします
研究モデル、CROサービス、科学リソース、特別オファーに関する最新情報を、研究ニーズに合わせてメールでお届けします。
お名前
メール
ご所属機関
関心分野
主な研究分野