Rat Cardiac Troponin Ⅰ(cTn-Ⅰ) ELISA kit
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中文名称:
大鼠心肌肌钙蛋白Ⅰ(cTn-Ⅰ)酶联免疫试剂盒
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货号:
CSB-E08594r
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规格:
96T/48T
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价格:
¥3900/¥2500
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其他:
产品详情
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产品描述:
cTn-I(心肌肌钙蛋白-I,cardiac Troponin-I)是一种心肌特异性蛋白,主要存在于心肌细胞中,是心肌收缩过程中的重要调节蛋白。cTn-I在心肌细胞中与其他肌钙蛋白一起组成肌钙蛋白复合体,调控心肌细胞的收缩和舒张过程。临床上,cTn-I常作为一种重要的生物标志物用于心肌损伤的诊断和评估,其含量的变化可以反映心肌损伤的程度和预后,对于急性心肌梗死等心血管疾病的诊断和治疗具有重要意义。
j9九游会登录入口首页生物所提供的Rat Cardiac Troponin Ⅰ(cTn-Ⅰ) ELISA kit属于ELISA检测试剂盒,采用双抗夹心法定量检测大鼠血清、血浆、组织匀浆样本中的cTn-I,其灵敏度为7.81 pg/mL,检测范围为31.25 pg/mL-2000 pg/mL。
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别名:
Tnni3 ELISA Kit; Ctni ELISA Kit; Tni ELISA Kit; Troponin I ELISA Kit; cardiac muscle ELISA Kit; Cardiac troponin I ELISA Kit
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缩写:
cTn-Ⅰ
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Uniprot No.:
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种属:
Rattus norvegicus (Rat)
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样本类型:
serum, plasma, tissue homogenates
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检测范围:
31.25 pg/mL-2000 pg/mL
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灵敏度:
7.81 pg/mL
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反应时间:
1-5h
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样本体积:
50-100ul
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检测波长:
450 nm
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研究领域:
Cardiovascular
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测定原理:
quantitative
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测定方法:
Sandwich
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精密度:
Intra-assay Precision (Precision within an assay): CV%<8% |
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Three samples of known concentration were tested twenty times on one plate to assess. |
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Inter-assay Precision (Precision between assays): CV%<10% |
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Three samples of known concentration were tested in twenty assays to assess. |
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线性度:
To assess the linearity of the assay, samples were spiked with high concentrations of rat cTn-Ⅰ in various matrices and diluted with the Sample Diluent to produce samples with values within the dynamic range of the assay. |
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Sample |
Serum(n=4) |
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1:1 |
Average % |
92 |
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Range % |
88-98 |
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1:2 |
Average % |
98 |
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Range % |
91-104 |
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1:4 |
Average % |
99 |
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Range % |
94-105 |
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1:8 |
Average % |
87 |
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Range % |
82-93 |
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回收率:
The recovery of rat cTn-Ⅰ spiked to levels throughout the range of the assay in various matrices was evaluated. Samples were diluted prior to assay as directed in the Sample Preparation section. |
Sample Type |
Average % Recovery |
Range |
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Serum (n=5) |
88 |
82-92 |
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EDTA plasma (n=4) |
95 |
90-100 |
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标准曲线:
These standard curves are provided for demonstration only. A standard curve should be generated for each set of samples assayed. |
pg/ml |
OD1 |
OD2 |
Average |
Corrected |
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2000 |
2.321 |
2.220 |
2.271 |
2.118 |
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1000 |
1.340 |
1.441 |
1.391 |
1.238 |
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500 |
0.814 |
0.835 |
0.825 |
0.672 |
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250 |
0.529 |
0.540 |
0.535 |
0.382 |
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125 |
0.345 |
0.334 |
0.340 |
0.187 |
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62.5 |
0.261 |
0.250 |
0.256 |
0.103 |
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31.25 |
0.197 |
0.193 |
0.195 |
0.042 |
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0 |
0.153 |
0.152 |
0.153 |
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本试剂盒所含材料:
- A micro ELISA plate ---The 96-well plate has been pre-coated with an anti-Rat cTn-I antibody. This dismountable microplate can be divided into 12 x 8 strip plates.
- Two vials lyophilized standard ---Dilute a bottle of the standard at dilution series, read the OD values, and then draw a standard curve.
- One vial Biotin-labeled cTn-I antibody (100 x concentrate) (120 μl/bottle) ---Act as the detection antibody.
- One vial HRP-avidin (100 x concentrate) (120 μl/bottle) ---Bind to the detection antibody and react with the TMB substrate to make the solution chromogenic.
- One vial Biotin-antibody Diluent (15 ml/bottle) ---Dilute the Biotin-antibody.
- One vial HRP-avidin Diluent (15 ml/bottle) ---Dilute the HRP-avidin solution.
- One vial Sample Diluent (50 ml/bottle)---Dilute the sample to an appropriate concentration.
- One vial Wash Buffer (25 x concentrate) (20 ml/bottle) ---Wash away unbound or free substances.
- One vial TMB Substrate (10 ml/bottle) ---Act as the chromogenic agent. TMB interacts with HRP, eliciting the solution turns blue.
- One vial Stop Solution (10 ml/bottle) ---Stop the color reaction. The solution color immediately turns from blue to yellow.
- Four Adhesive Strips (For 96 wells) --- Cover the microplate when incubation.
- An instruction manual
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本试剂盒不含材料:
- A microplate reader capable of measuring absorbance at 450 nm, with the correction wavelength set at 540 nm or 570 nm.
- An incubator can provide stable incubation conditions up to 37°C±5°C.
- Centrifuge
- Vortex
- Squirt bottle, manifold dispenser, or automated microplate washer
- Absorbent paper for blotting the microtiter plate
- 50-300ul multi-channel micropipette
- Pipette tips
- Single-channel micropipette with different ranges
- 100ml and 500ml graduated cylinders
- Deionized or distilled water
- Timer
- Test tubes for dilution
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数据处理:
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货期:
3-5 working days
引用文献
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Uncovering the Cardioprotective Potential of Diacerein in Doxorubicin Cardiotoxicity: Mitigating Ferritinophagy-Mediated Ferroptosis via Upregulating NRF2/SLC7A11/GPX4 Axis
RM El,Antioxidants,2024
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Hydromorphone hydrochloride preconditioning combined with postconditioning attenuates myocardial ischemia/reperfusion injury in rats by improving mitochondrial function and activating the PI3K/Akt signaling pathway
L Qiu,Chemical biology & drug design,2024
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Lead activates neutrophil degranulation to induce early myocardial injury in mice
Y Wu,Ecotoxicology and environmental safety,2023
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Linagliptin and secoisolariciresinol diglucoside attenuate hyperlipidemia and cardiac hypertrophy induced by a high-methionine diet in rats via suppression of hyperhomocysteinemia-induced endoplasmic reticulum stress
IA Jalal,Frontiers in pharmacology,2023
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Impacts of dietary lipids derived from animal or vegetable sources on healthy rats
MM Dalal,Egyptian Journal of Basic and Applied Sciences,2023
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RNA Sequencing of Cardiac in a Rat model Uncovers Potential Target LncRNA of Diabetic Cardiomyopathy
Y Xi,Frontiers in Genetics,2023
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Integrated insights into the mechanisms underlying sepsis-induced myocardial depression using a quantitative global proteomic analysis
N Yang,Journal of proteomics,2023
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LC-MS-based metabolomics reveals metabolic changes in short- and long-term administration of Compound Danshen Dripping Pills against acute myocardial infarction in rats
Lu Zhang,Phytomedicine,2023
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Targeting the adenosine monophosphate-activated protein kinase signalling pathway by bempedoic acid attenuates Angiotensin II-induced cardiac remodelling in renovascular hypertension in rats
AA Ahmed,Life sciences,2023
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Toxicological and histopathological alterations in the heart of young and adult albino rats exposed to mosquito coil smoke.
AES Abdrabouh - 2023 - researchsquare.com,researchsquare,2023
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Adenosine 2 receptor regulates autophagy and apoptosis to alleviate ischemia reperfusion injury in type 2 diabetes via IRE-1 signaling
MB Yacouba Moukeila,BMC cardiovascular disorders,2023
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Electroacupuncture at Neiguan (PC6) attenuates cardiac dysfunction caused by cecal ligation and puncture via the vagus nerve
Z Wu,Biomedicine & pharmacotherapy,2023
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Exosomal HSP90 induced by remote ischemic preconditioning alleviates myocardial ischemia/reperfusion injury by inhibiting complement activation and inflammation
XF Cheng,BMC cardiovascular disorders,2023
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Optimized Synthesis Characterization and Protective Activity of Quercetin and Quercetin Chitosan Nanoformula against Cardiotoxicity that was induced in Male Wister Rats via Anticancer Agent: Doxorubicin
AG Soliman,ResearchSquare,2022
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Subthreshold splenic nerve stimulation prevents myocardial Ischemia-Reperfusion injury via neuroimmunomodulation of proinflammatory factor levels
X Jin,International Immunopharmacology,2022
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Cardio-protective and Anti-atherosclerosis Effect of Crocetin on Vitamin D3 and HFD-induced Atherosclerosis in Rats
L Yu,Journal of oleo science,2021
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5′-N-Ethylcarboxamido Adenosine Attenuates Myocardial Ischemia/Reperfusion Injury In Type 2 Diabetic Rats Through A2AR/PKCα/miR-15a Signaling
C Chen,Research Square,2021
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On the mechanisms of taurine in alleviating electrocardiographic, hemodynamic, and biochemical parameters following aluminum phosphide cardiotoxicity
M Samadi,Food and Chemical Toxicology,2021
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Roflumilast Attenuates Doxorubicin-Induced Cardiotoxicity by Targeting Inflammation and Cellular Senescence in Cardiomyocytes Mediated by SIRT1
S Zhang,Drug Design, Development and Therapy,2021
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Discovery of novel urea-diarylpyrazole hybrids as dual COX-2/sEH inhibitors with improved anti-inflammatory activity and highly reduced cardiovascular risks
AH Abdelazeem,European Journal of Medicinal Chemistry,2020
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Downregulation of miRNA-663b protects against hypoxia-induced injury in cardiomyocytes by targeting BCL2L1
F Yu,Experimental and Therapeutic Medicine,2020
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Endosulfan induces cardiotoxicity through apoptosis via unbalance of pro-survival and mitochondrial-mediated apoptotic pathways
J Wei,Science of The Total Environment,2020
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Preparation and appraisal of self assembled valsartan-loaded amalgamated Pluronic F127/Tween 80 polymeric micelles: Boosted cardioprotection via regulation of Mhrt/Nrf2 and Trx1 pathways in cisplatin-induced cardiotoxicity
Aboud HM, et al,Journal of Drug Targeting,2019
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Protection of Myocardial Ischemia-Reperfusion by Therapeutic Hypercapnia: a Mechanism Involving Improvements in Mitochondrial Biogenesis and Function
Chi L, et al,Journal of Cardiovascular Translational Research,2019
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The protective effect of kaempferol on heart via the regulation of Nrf2, NF-κβ, and PI3K/Akt/GSK-3β signaling pathways in isoproterenol-induced heart failure in diabetic rats
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Antioxidant and cytoprotective effects of N-acetylcysteine against subchronic oral glyphosate-based herbicide-induced oxidative stress in rats
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Dexmedetomidine Preconditioning Protects Cardiomyocytes Against Hypoxia/Reoxygenation-Induced Necroptosis by Inhibiting HMGB1-Mediated Inflammation
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Protective effects of resveratrol on biomarkers of oxidative stress, biochemical and histopathological changes induced by sub-chronic oral glyphosate-based herbicide in rats
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Study on Cardiotoxicity and Mechanism of “Fuzi” Extracts Based on Metabonomics
Huang G, et al,International Journal of Molecular Sciences,2018
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Astragaloside IV Protects Rat Cardiomyocytes from Hypoxia-Induced Injury by Down-Regulation of miR-23a and miR-92a
Gong L.et al,Cell Physiol Biochem,2018
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Involvement of brain natriuretic peptide signaling pathway in the cardioprotective action of sitagliptin
Samah S.Abbas.et al,Pharmacological Reports,2018
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Anti-atherosclerosis and cardio-protective effects of the Angong Niuhuang Pill on a high fat and vitamin D3 induced rodent model of atherosclerosis
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靶点详情
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最新研究进展:
cTn-I(肌钙蛋白I)是心肌细胞中的一种肌钙蛋白,在心肌梗死的诊断和治疗中具有重要作用。最新研究表明,cTn-I不仅在急性心肌梗死中有显著升高,也在慢性心力衰竭、冠心病和心肌缺血等其他心血管疾病中存在不同程度的升高。此外,cTn-I还可能是COVID-19患者的疾病评估和治疗监测的有用指标。
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功能:
Troponin I is the inhibitory subunit of troponin, the thin filament regulatory complex which confers calcium-sensitivity to striated muscle actomyosin ATPase activity.
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基因功能参考文献:
- Pim-1 is a novel kinase that phosphorylates cTnI primarily at Ser23/24 and Ser150 in cardiomyocytes, which in turn may modulate myofilament function under a variety of physiological and pathophysiological conditions. PMID: 29544221
- Cardiac troponin I mutation P83S present in hypertrophic cardiomyopathy changes the contractile myofibril properties and modulation by PKA-mediated phosphorylation. PMID: 27150586
- Troponin I interaction with calcium and Troponin C in cardiac muscle PMID: 28864299
- Compared to cTnI(WT), both truncations displayed greater Ca(2+)-sensitivity and faster cross-bridge attachment rates at both SLs. Furthermore, cTnI(1-167) slowed MgADP release rate and enhanced cross-bridge binding. Our findings imply that cTnI-MD truncations affect the blocked-to closed-state transition(s) and destabilize the closed-state position of tropomyosin. PMID: 28958680
- PKC phosphorylates cardiac troponin I (cTnI) S23/24, S43/45 and T144 to fine tune myocyte function. PMID: 28587770
- These findings demonstrate that S-nitrosylation and S-glutathionylation exert opposing effects on Ca(2+) sensitivity in mammalian FT muscle fibers, mediated by competitive actions on Cys134 of TnIf. PMID: 27974300
- the interaction between cTnC and cTnI in skinned papillary muscle strips is dependent on sarcomere length PMID: 26944554
- cTnIS43/45N is a functionally conservative substitution, and may be appropriate for use as a phospho-null in rodent models designed for studies on PKC modulation of cardiac performance PMID: 26869200
- This study suggests that cTnI point of care tests can accurately determine heat stroke (HS) severity and could serve as simple, portable, cost-effective HS field tests. PMID: 26290107
- The present study utilizes viral gene transfer of cTnI with phosphomimetic S43D and/or S45D substitutions to evaluate their individual and combined influences on function in intact adult cardiac myocytes. PMID: 25481661
- Results suggest that weakened troponin C interaction with cTnI, via PKA phosphorylation of cTnI, may slow thin filament activation and result in increased myofilament relaxation kinetics PMID: 25185555
- The findings elucidate the pathogenesis of MI, and the gradual increase in serum adropin could be a novel diagnostic marker and serve as an alternative to troponin-I measurement for diagnosing MI. PMID: 24932661
- molecular determinants of cardiac myocyte performance as conferred by isoform-specific TnI residues PMID: 24853739
- Arsenic induced ventricular hypertrophy occurs via MEF2A/CAMKK2/CALM3/TNNI3 signaling. PMID: 25089838
- Data indicate that the serum TnI level was significantly greater in the acute coronary syndrome (ACS) group compared to the control group. PMID: 23904327
- A cutoff value of 4.8ng/mL for cTnI could be used as early as 8h after MI to accurately identify infarct in this model, whereas echocardiographic images taken 48h after MI predicted the infarcted area 14days after MI. PMID: 23764111
- Mutation in the C helix of cTnC can reduce Ca2+ binding affinity and cTnC-cTnI interaction. PMID: 23454346
- Hypertrophic cardiomyopathy related mutations R146G/Q and R163W impact interactions between cTnI and cardiac troponin C or actin. PMID: 23246786
- Aan increase in calpain activity may enhance cTnI degradation in the myocardium of tail-suspended rats. PMID: 20945043
- Normal developing myocardium and skeletal muscle transiently share both sk-fMHC and cTn-I proteins. PMID: 22808244
- the functional impact of cardiac troponin I (cTnI) phosphorylation by protein kinase A PMID: 22684024
- cTnC, cTnI, cTnT and cTm are not only present in myofilaments of ventricular cardiomyocytes in culture but are also within their nuclei; significantly, these four proteins appear between days 3 and 5 in both myofilaments and nuclei PMID: 22364878
- differential histidine ionization may be necessary for cTnI A164H to act as a molecular sensor capable of modulating sarcomere performance in response to changes in the cytosolic milieu PMID: 22500757
- Structural dynamics of C-domain of cardiac troponin I protein in reconstituted thin filament. PMID: 22207765
- PKC phosphorylation of cTnI may be maladaptive and potentially associated with cardiac dysfunction PMID: 22052912
- Cardiac function and phosphorylation of PLB and cTnI were compared in pacing, isoproterenol treatment, and combined pacing and isoproterenol treatment in isolated working heart. PMID: 21876643
- Ulinastatin may protect myocardium from the damage resulted from sepsis in a rat model, probably by lowering expressions of cTnI, TNF-alpha and ET-1. PMID: 20594472
- Data show that dual expression of two CM mutants, tropomyosin mutant A63V and cardiac troponin mutant R146G, were shown to additively slow myocyte relaxation beyond either mutant studied in isolation. PMID: 20161772
- Time-dependent cTnI breakdown occurs during global ischemia independent of reperfusion. cTnI breakdown during ischemia is further increased in presence of antioxidants. ROS generated during ischemia may play cTnI protective role. PMID: 15142843
- cardiac Troponin I Thr144 plays an important role in the acute acceleration of relaxation, whereas Ser23/Ser24 contributes to relaxation during more prolonged activation of protein kinase C by endothelin PMID: 16236710
- GATA elements control repression of cTNI promoter activity in skeletal muscle cells. PMID: 17875210
- Overexpression of heat shock protein 27 protects against ischaemia/reperfusion-induced cardiac dysfunction via stabilization of troponin I and T. PMID: 18397962
- cTnI-R145G expression influences the response to adrenergic stimulation dependent on the receptor subtype PMID: 18548271
- Metabolic inhibition of cardiomyocytes induces a parallel release of intact cTnI and its degradation products, starting only after onset of irreversible cardiomyocyte damage. PMID: 18721805
- the nNOS-PMCA4b complex regulates contractility via cAMP and phosphorylation of both PLB and cTnI. PMID: 19278978
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蛋白家族:
Troponin I family
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数据库链接:
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