S100a9-flox Mouse
Common Name
S100a9-flox
제품 ID
S-CKO-04902
Backgroud
C57BL/6JCya
품종 계통계통 ID
CKOCMP-20202-S100a9-B6J-VA
상태
이 마우스 계통을 논문에서 사용할 경우, “S100a9-flox Mouse (카탈로그 번호 S-CKO-04902)은 Cyagen에서 구입하였습니다.”라고 명시해 주시기 바랍니다.
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.
기본 정보
품종 계통
S100a9-flox
품종 계통계통 ID
CKOCMP-20202-S100a9-B6J-VA
유전자명
제품 ID
S-CKO-04902
유전자 별칭
p14, Cagb, GAGB, L1Ag, BEE22, MRP14, 60B8Ag
배경
C57BL/6JCya
NCBI ID
변형 내용
Conditional knockout
염색체
Chr 3
Phenotype
Datasheet
적용 분야
--
품종 계통 설명
Ensembl 전사체 ID
ENSMUST00000117167
NCBI 전사체 ID
NM_009114
타겟 영역
Exon 3
유효 영역 크기
~1.6 kb
유전자 연구 개요
S100a9, a Ca2+ binding protein, belongs to the S100 family. It is mainly expressed in neutrophils and monocytes and plays crucial roles in modulating inflammatory responses and inflammation-associated diseases. S100a9 often forms a heterodimer with S100a8 (S100A8/A9), participating in multiple signaling pathways like Toll-like receptor 4/MyD88/NF-κB, IL-17-NFκB-caspase-3, and is involved in various biological processes including tumor development, myocardial infarction response, and skin inflammation regulation [1,2,4].
In gene knockout studies, S100a9-KO mice have shown that long-term S100a9 blockade negatively impacts cardiac recovery after myocardial infarction, as it reduces the proliferation of certain hematopoietic stem and progenitor cells and impairs monocyte-macrophage transition [2]. In hepatocellular carcinoma, depletion of S100a9 dampens tumor growth and metastatic ability [3]. In rosacea-like mouse models, inhibition of S100a9 suppresses disease progression and inflammatory responses [4]. In myocardial ischemia-reperfusion mouse models, targeting S100a9 with a specific inhibitor mitigates acute inflammatory damage and fibrosis [5]. In sepsis-induced acute lung injury, S100a9 knockout alleviates lung damage and epithelial cell apoptosis [6]. In sepsis-induced acute liver injury, S100a9-KO mice show attenuated liver dysfunction and injury with improved mitochondrial function [7]. In acute pancreatitis, pancreatic ductal deletion of S100a9 alleviates the injury by inhibiting NLRP3 activation [8].
In conclusion, S100a9 is significantly involved in inflammation, tissue repair, and tumor-related processes. Gene knockout models of S100a9 have revealed its roles in diseases such as myocardial infarction, cancer, rosacea, and various inflammatory diseases, highlighting its potential as a therapeutic target for these conditions.
References:
1. Chen, Yu, Ouyang, Yuzhen, Li, Zhixin, Wang, Xiufang, Ma, Jian. 2023. S100A8 and S100A9 in Cancer. In Biochimica et biophysica acta. Reviews on cancer, 1878, 188891. doi:10.1016/j.bbcan.2023.188891. https://pubmed.ncbi.nlm.nih.gov/37001615/
2. Marinković, Goran, Koenis, Duco Steven, de Camp, Lisa, Jovinge, Stefan, Schiopu, Alexandru. 2020. S100A9 Links Inflammation and Repair in Myocardial Infarction. In Circulation research, 127, 664-676. doi:10.1161/CIRCRESAHA.120.315865. https://pubmed.ncbi.nlm.nih.gov/32434457/
3. Zhong, Chengrui, Niu, Yi, Liu, Wenwu, Yuan, Yunfei, Li, Binkui. 2022. S100A9 Derived from Chemoembolization-Induced Hypoxia Governs Mitochondrial Function in Hepatocellular Carcinoma Progression. In Advanced science (Weinheim, Baden-Wurttemberg, Germany), 9, e2202206. doi:10.1002/advs.202202206. https://pubmed.ncbi.nlm.nih.gov/36041055/
4. Le, Yan, Zhang, Jiawen, Lin, Yi, Xiang, Leihong, Zhang, Chengfeng. 2024. S100A9 Exacerbates the Inflammation in Rosacea through Toll-Like Receptor 4/MyD88/NF-κB Signaling Pathway. In The Journal of investigative dermatology, 144, 1985-1993.e1. doi:10.1016/j.jid.2024.02.012. https://pubmed.ncbi.nlm.nih.gov/38447867/
5. Shen, Shichun, Zhang, Meng, Wang, Xiaohe, Gong, Chen, Ma, Likun. 2024. Single-cell RNA sequencing reveals S100a9hi macrophages promote the transition from acute inflammation to fibrotic remodeling after myocardial ischemia‒reperfusion. In Theranostics, 14, 1241-1259. doi:10.7150/thno.91180. https://pubmed.ncbi.nlm.nih.gov/38323308/
6. Pei, Hui, Chen, Jianming, Qu, Jie, Lu, Zhongqiu. 2024. S100A9 exacerbates sepsis-induced acute lung injury via the IL17-NFκB-caspase-3 signaling pathway. In Biochemical and biophysical research communications, 710, 149832. doi:10.1016/j.bbrc.2024.149832. https://pubmed.ncbi.nlm.nih.gov/38588614/
7. Zhang, Yanting, Wu, Feng, Teng, Fei, Guo, Shubin, Li, Huihua. 2023. Deficiency of S100A9 Alleviates Sepsis-Induced Acute Liver Injury through Regulating AKT-AMPK-Dependent Mitochondrial Energy Metabolism. In International journal of molecular sciences, 24, . doi:10.3390/ijms24032112. https://pubmed.ncbi.nlm.nih.gov/36768433/
8. Xiang, Hong, Guo, Fangyue, Tao, Xufeng, Li, Lunxu, Shang, Dong. 2021. Pancreatic ductal deletion of S100A9 alleviates acute pancreatitis by targeting VNN1-mediated ROS release to inhibit NLRP3 activation. In Theranostics, 11, 4467-4482. doi:10.7150/thno.54245. https://pubmed.ncbi.nlm.nih.gov/33754072/
품질 관리 기준
정자 검사
동결 보존 전: 정자 농도 측정 및 정자 생존율 평가.
동결 보존 후: 각 배치에서 동결 보존된 정자 바이알 1개를 선택하여 체외수정(in vitro fertilization)에 사용합니다.
Environmental Standards:
SPFAvailable Region:
GlobalSource:
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