購読する
モデル製品
サービス
前臨床薬効評価
コミュ二ティー
Acute PKD (inducible) Mouse
製品のお見積りを依頼する
当社のカタログから製品を選択してご注文ください。当社チームが詳細な情報をご連絡いたします。
Acute PKD (inducible) Mouse
製品名
Acute PKD (inducible) Mouse
製品ID
C001889
系統名
C57BL/6N;6JCya-Pkd1em1floxCdh16em1(IRES-MerCreMer)/Cya
背景情報
C57BL/6N;6JCya
状況
このマウス系統を論文で使用する場合は、「Acute PKD (inducible) Mouse(カタログ番号C001889)はサイアジェンから購入しました。」と引用してください。
Disease Animal 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
Disease Animal 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
PC1, mFLJ00285
NCBI ID
染色体
Chr 17
MGI ID
さらに
系統詳細
Polycystin-1 (PC1), encoded by the PKD1 gene, is a large transmembrane glycoprotein that orchestrates critical cellular processes—including cell–cell and cell–matrix interactions, calcium signaling, and mechanosensation—in renal tubular epithelial cells. PC1 regulates various aspects of cellular function, including signal transduction, cytoskeletal remodeling, and cell adhesion. It forms a functional complex with Polycystin-2 (PC2), the product of the PKD2 gene, to maintain intracellular calcium homeostasis and facilitate mechanotransduction [1]. Disruption of PC1 signaling, due to PKD1 mutations—which account for approximately 85% of autosomal dominant polycystic kidney disease (ADPKD) cases—undermines these regulatory pathways, promoting abnormal cell proliferation and cyst formation [2]. Clinically, ADPKD is characterized by the progressive development of multiple fluid-filled cysts, renal enlargement, hypertension, and eventual progression to end-stage kidney disease (ESKD). With a global incidence estimated at 1 in 400 to 1 in 1000 individuals, ADPKD affects nearly 500,000 people in the United States alone and frequently involves extra-renal manifestations, including the heart, liver, pancreas, spleen, and arachnoid membrane [3]. Notably, genotypic heterogeneity exists, with PKD1 mutations often associated with an earlier onset and more aggressive disease course [2-3].
Traditional systemic Pkd1 knockout models are typically embryonically lethal, precluding long-term pathogenesis studies. In contrast, inducible, kidney-specific conditional knockout models using the Cre-LoxP system recapitulate the clinical features of human ADPKD and permit the investigation of disease progression in adult mice [4-5]. Acute PKD (inducible) mice represent an inducible conditional Pkd1 knockout model generated by crossing Pkd1-floxed mice with kidney-specific, tamoxifen-inducible Cre mice (Cdh16-MerCreMer). Offspring were induced with tamoxifen during lactation to achieve targeted deletion of Pkd1 within renal tubular epithelial cells. Preliminary observations at three weeks post-induction reveal pronounced polycystic kidney disease phenotypes, including the emergence of renal cysts, a marked increase in kidney volume, and elevated serum blood urea nitrogen (BUN) levels. We will continue to monitor this model to assess its late-stage phenotypes and overall disease progression.
参考文献
Su Q, Hu F, Ge X, Lei J, Yu S, Wang T, Zhou Q, Mei C, Shi Y. Structure of the human PKD1-PKD2 complex. Science. 2018 Sep 7;361(6406):eaat9819.
Harris PC, Torres VE. Polycystic kidney disease. Annu Rev Med. 2009;60:321-37.
Mahboob M, Rout P, Leslie SW, et al. Autosomal Dominant Polycystic Kidney Disease. [Updated 2024 Mar 20]. In: StatPearls [Internet]. Treasure Island (FL): StatPearls Publishing; 2025 Jan.
Sieben CJ, Harris PC. Experimental Models of Polycystic Kidney Disease: Applications and Therapeutic Testing. Kidney360. 2023 Aug 1;4(8):1155-1173.
Happé H, Peters DJ. Translational research in ADPKD: lessons from animal models. Nat Rev Nephrol. 2014 Oct;10(10):587-601.
系統作製戦略
The Acute PKD (inducible) mouse model is generated by mating Pkd1-flox mice with kidney-specific, tamoxifen-inducible Cre mice (Cdh16-MerCreMer, Catalog No.: C001432). Female mother mice were administered a specific dose of tamoxifen via intraperitoneal injection. Offspring acquired tamoxifen through breast milk, and following 3 weeks of induction, the mice began to develop polycystic kidney disease phenotypes. For further details regarding the Cdh16-MerCreMer strain, please consult the strain datasheet. The gene editing strategy employed for generating the Pkd1-flox allele is illustrated below.

Figure 1. Gene editing strategy for Pkd1-flox mice. Exons 2–8 of the mouse Pkd1 gene serve as the conditional knockout (cKO) region.
適用分野
Research on renal tubular calcium homeostasis and mechanotransduction;
Research on renal tubular structure, function, and signal transduction;
Research on autosomal dominant polycystic kidney disease (ADPKD);
Research on other renal diseases.
検証 Data
1. Kidney Index & Anatomical Results
Anatomical results showed that both female and male Acute PKD (inducible) mice exhibited polycystic kidney phenotypes at 3 weeks after TAM induction. At 3 weeks post-TAM induction, the kidney weight (kidney/body weight ratio) of Acute PKD (inducible) mice showed an increasing trend compared with the corn oil-treated group. (Bars represent mean ± SEM; P values were calculated by One-Way ANOVA)

Figure 2. Comparison of kidney appearance and weight in Acute PKD (inducible) mice treated with corn oil and tamoxifen (TAM), respectively.
The genotype of Acute PKD (inducible) mice is Pkd1flox/flox;Cdh16IRES-MerCreMer/+, as follows.
2. Renal Pathology & Cystic Index
H&E staining results showed that the kidneys of TAM-induced Acute PKD (inducible) mice exhibited a cystic phenotype: multiple cysts in the entire kidney (red arrows); renal tubular atrophy and deformation with extensive nuclear pyknosis (blue arrows); structural destruction with massive spindle fiber hyperplasia in the interstitium (yellow arrows). Additionally, compared with the corn oil-treated group, the number of renal cysts and cystic index in TAM-induced Acute PKD (inducible) mice showed significant differences. (Bars represent mean ± SEM; P values were calculated by One-Way ANOVA)

Figure 3. Renal tissue pathology and cystic index statistics of Acute PKD (inducible) mice treated with corn oil and tamoxifen (TAM), respectively.
3. Blood Urea Nitrogen (BUN) and Creatinine (CREA)
Serum biochemical analysis was performed on mice at 3 weeks after TAM induction, with results shown in the figure. Compared with the corn oil-treated group, the serum BUN content in the TAM-treated group showed an increasing trend, while the CREA level exhibited no significant change yet. (Bars represent mean ± SEM; P values were calculated by Unpaired t test)

Figure 4. Comparison of serum levels of blood urea nitrogen (BUN) and creatinine (CREA) in Acute PKD (inducible) mice treated with corn oil and tamoxifen (TAM), respectively.
関連リソース
お問い合わせ
ご不明な点やご質問などございましたら、お気軽にお問い合わせください。担当スタッフがサポートさせていただきます。下記のフォームにご記入いただければ、1〜2営業日以内に折り返しご連絡いたします。
Related Product
All Related ProductsResources
お問い合わせ
カスタムの動物モデルに関するご相談は、下記のフォームにご記入いただき、ご連絡いただくか見積もりをご依頼ください。
Cyagenはお客様のプライバシーを大変重視しています。当社の最新の製品や情報をお届けしたいと思っています。お客様の設定をご確認ください。
これらの配信はいつでも解除できます。配信停止方法およびデータ保護の詳細は プライバシーポリシー をご確認ください。
以下のボタンをクリックすることで、このフォームにご入力いただいた個人情報をCyagenが保存・処理し、ご要望のコンテンツを提供することに同意されたことになります。
