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huCFTR Mouse
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huCFTR Mouse
제품명
huCFTR Mouse
제품 ID
C001964
품종 계통
C57BL/6NCya-Cftrtm1(hCFTR)/Cya
Backgroud
C57BL/6NCya
상태
이 마우스 계통을 논문에서 사용할 경우, “huCFTR Mouse (카탈로그 번호 C001964)은 Cyagen에서 구입하였습니다.”라고 명시해 주시기 바랍니다.
HUGO-GT Humanized Models
구매 가능한 제품 종류
연령
Genotype
성별
수량
표준 제공 조건은 최소 3마리의 이형접합(heterozygous) 보균자를 보장합니다. 동형접합(homozygous) 보균자 및/또는 특정 성별에 대한 브리딩 서비스도 제공됩니다.
가격 문의
HUGO-GT Humanized Models
기본 정보
검증 데이터
관련 자료
기본 정보
유전자명
유전자 별칭
CF, MRP7, ABC35, ABCC7, CFTR/MRP, TNR-CFTR, dJ760C5.1
NCBI ID
염색체
Chr 7
MGI ID
Datasheet
품종 계통 설명
Cystic Fibrosis (CF) is an autosomal recessive disorder causing severe damage to the lungs, digestive system, and other organs. It thickens mucus, sweat, and digestive fluids, blocking ducts and channels. The disease manifests as a persistent cough, hyperinflation of lung lobes, chronic nasal congestion, headaches, sleep disorders, digestive and reproductive system disorders, and nutritional and growth development disorders. CF is caused by mutations in the CF-transmembrane conductance regulator (CFTR) gene, which encodes a cAMP-dependent chloride ion channel protein. Abnormal CFTR function can cause transmembrane transport disorders of chloride ions and bicarbonate, leading to mucus obstruction in exocrine glands, and affecting respiration, digestion, endocrine, and reproduction [1-2].
Current CF treatment research primarily focuses on small-molecule drugs, but gene therapy-related pipelines are emerging. Eluforsen, a Phase 1 ASO-related pipeline by ProQR, targets the F508dcl mutation region of the CFTR gene to restore its function [3-4]. Most gene therapies act on the human CFTR gene, and humanizing mouse genes could expedite these treatments into clinical stages, emphasizing precision in therapeutic development. This strain is a mouse Cftr gene humanized model and can be used for research on CF. The homozygous huCFTR mice are viable and fertile. In addition, based on the independently developed TurboKnockout fusion BAC recombination technology, Cyagen can also generate hot mutation models based on this strain and provide customized services for specific mutations to meet the experimental needs in pharmacology and other fields.
Reference
Zeiher B G, Eichwald E, Smith J J, et al.A MouseModelfortheAF508Allele of Cystic Fibrosis[J].[2023-07-17].
Enrica F, Anna T, Tiziana J, et al. A Peptide Nucleic Acid against MicroRNA miR-145-5p Enhances the Expression of the Cystic Fibrosis Transmembrane Conductance Regulator (CFTR) in Calu-3 Cells[J]. Molecules, 2018, 23(1).
Sermet-Gaudelus, IsabelleClancy, John P.Nichols, David P.Nick, Jerry A.De Boeck, KrisSolomon, George M.Mall, Marcus A.Bolognese, JamesBouisset, Florileneden Hollander, WilhelminaPaquette-Lamontagne, NicolasTomkinson, NigelHenig, NoreenElborn, J. StuartRowe, Steven M.Antisense oligonucleotide eluforsen improves CFTR function in F508del cystic fibrosis[J]. Journal of cystic fibrosis: official journal of the European Cystic Fibrosis Society, 2019, 18(4).
Beumer W, Swildens J, Leal T, et al. Evaluation of eluforsen, a novel RNA oligonucleotide for restoration of CFTR function in in vitro and murine models of p.Phe508del cystic fibrosis[J].PLoS ONE, 2019, 14(6):e0219182-.
변형 전략
The sequence from 5'UTR to 3'UTR of the mouse Cftr was replaced with the sequence from 5'UTR to 3'UTR of the human CFTR.

Figure 1. Gene editing strategy of huCFTR mice.
응용 분야
Research on Cystic Fibrosis (CF).
검증 데이터
1. Gene Expression
RT‑qPCR results showed that hCFTR expression was detected in the colon and testis of huCFTR mice, while mCftr expression was not detected. In WT mice, only mCftr expression was observed, with no hCFTR expression. (ND: Not detected)

Figure 2. RT‑qPCR analysis of human CFTR (hCFTR) and mouse Cftr (mCftr) gene expression in colon and testis of 7‑week‑old wild‑type (WT) and huCFTR mice.
2. Incisor Phenotype
WT mice exhibited yellow incisors, while homozygous huCFTR mice presented white incisors.

Figure 3. Incisor phenotype of wild-type (WT) and huCFTR mice (6 weeks old, female, homozygous).
3. Histopathology
(1)Lung Histopathology
Results showed that both WT and huCFTR homozygous mice exhibited perivascular and peribronchial inflammation with edema, fatty proliferation, inflammatory cell infiltration and thickening of alveolar walls, and focal alveolar wall necrosis in the lungs. No obvious bronchial mucus accumulation or obstruction was observed. Pathological scores were consistent with background lesions (WT as blank control), with no significant non-background damage detected. Scale bar: 200 μm. (n ≥ 3; Bars represent mean ± SEM)

Figure 4. Histopathological comparison of lung tissues from wild-type (WT) and huCFTR mice (16 weeks old, homozygous, male).
(2)Small Intestine Histopathology
Histological sections of mouse small intestine were observed at 80× magnification. Intestinal wall thickness was measured and quantified at 3 random sites. Goblet cell number was counted at 3 random fields under 40× magnification. Results showed no significant difference in intestinal wall thickness between huCFTR homozygous mice and WT mice. A slight increase in goblet cells and small amounts of mucus were observed in the small intestinal villi of huCFTR mice. Scale bar: 200 μm. (n = 4; Bars represent mean ± SEM)

Figure 5. Comparison of intestinal wall thickness and goblet cell number in wild-type (WT) and huCFTR mice (16 weeks old, homozygous, male).
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