Anti-MuRF1 (C-terminal region) Antibody

Our MuRF1 (C-terminal region) rabbit polyclonal primary antibody from PhosphoSolutions is produced in-house. It detects human, mouse, and rat MuRF1 (C-terminal region) and is antigen affinity purified. It is great for use in WB, ICC.



SKU: MP3401

Volume: 100 µL
Price:
Sale price$329.00

Product Specific References for Applications and Species

Immunocytochemistry: Mouse
PMID Dilution Publication
30922397not listedLiu, D, et al. 2019. IMB0901 inhibits muscle atrophy induced by cancer cachexia through MSTN signaling pathway. Skeletal muscle, 8.
Immunohistochemistry: Mouse
PMID Dilution Publication
287621621:1000Sakai, H, et al. 2017. Effect of acute treadmill exercise on cisplatin-induced muscle atrophy in the mouse. Pflügers Archiv : European journal of physiology, 1495-1505.
282865331:100Zhang, Y, et al. 2017. Chinese Herbal Medicine Baoyuan Jiedu Decoction Inhibited Muscle Atrophy of Cancer Cachexia through Atrogin-l and MuRF-2. Evidence-based complementary and alternative medicine : eCAM, 6268378.
Immunohistochemistry: Rat
PMID Dilution Publication
32806520not listedRusbana, TB, et al. 2020. Supplementation with Fermented Rice Bran Attenuates Muscle Atrophy in a Diabetic Rat Model. Nutrients, 2409.
Western Blot: Human
PMID Dilution Publication
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332384421:1000Oxfeldt, M, et al. 2020. Influence of Fermented Red Clover Extract on Skeletal Muscle in Early Postmenopausal Women: A Double-Blinded Cross-Over Study. Nutrients, 3587.
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320505851:500Aravena, J, et al. 2020. Angiotensin (1-7) Decreases Myostatin-Induced NF-κB Signaling and Skeletal Muscle Atrophy. International journal of molecular sciences, 1167.
31568675not listedGharahdaghi, N, et al. 2019. Testosterone therapy induces molecular programming augmenting physiological adaptations to resistance exercise in older men. Journal of cachexia, sarcopenia and muscle, 1276-1294.
31518665not listedMoro, T, et al. 2019. Low skeletal muscle capillarization limits muscle adaptation to resistance exercise training in older adults. Experimental gerontology, 110723.
315134501:1000Fyfe, J, et al. 2019. Cold water immersion attenuates anabolic signaling and skeletal muscle fiber hypertrophy, but not strength gain, following whole-body resistance training. Journal of applied physiology (Bethesda, Md. : 1985), 1403-1418.
31123725not listedBrightwell, C, et al. 2019. Moderate-intensity aerobic exercise improves skeletal muscle quality in older adults. Translational sports medicine, 109-119.
30928279not listedPark, YM, et al. 2019. Acute estradiol treatment reduces skeletal muscle protein breakdown markers in early- but not late-postmenopausal women. Steroids, 43-49.
287748891:2000Crossland, H, et al. 2017. A dynamic ribosomal biogenesis response is not required for IGF-1-mediated hypertrophy of human primary myotubes. FASEB journal : official publication of the Federation of American Societies for Experimental Biology, 5196-5207.
Western Blot: Mouse
PMID Dilution Publication
38792078not listedZhou, Y, et al. 2024. Deciphering the Therapeutic Role of Lactate in Combating Disuse-Induced Muscle Atrophy: An NMR-Based Metabolomic Study in Mice. Molecules, 0.
38569555not listedDomaniku-Waraich, A, et al. 2024. Oncostatin M signaling drives cancer-associated skeletal muscle wasting. Cell Reports, 101498.
37525907not listedWang, L, et al. 2023. ER Stress is Activated and Involved in Disuse-Induced Muscle Atrophy. Frontiers in Bioscience, 136.
37699022not listedHsu, TH, et al. 2023. The combination of quercetin and leucine synergistically improves grip strength by attenuating muscle atrophy by multiple mechanisms in mice exposed to cisplatin. PloS one, e0291462.
375266461:1000Schifino, AG, et al. 2023. Resistance wheel running improves contractile strength, but not metabolic capacity, in a murine model of volumetric muscle loss injury. Experimental physiology, .
37344807not listedZhang, He, et al. 2023. Decreased expression of H19/miR-675 ameliorates muscle atrophy by regulating the IGF1R/Akt/FoxO signaling pathway. Molecular Medicine (Cambridge, Mass.), 78.
372579441:1000Sato, K, et al. 2023. Platinum-based anticancer drugs-induced downregulation of myosin heavy chain isoforms in skeletal muscle of mouse. Journal of pharmacological sciences, 167-177.
372374001:500Orozco-Aguilar, J, et al. 2023. Ursodeoxycholic acid induces sarcopenia associated with decreased protein synthesis and autophagic flux. Biological research, 28.
371651861:1000Bilgic, S.N., et al. 2023. EDA2R–NIK signalling promotes muscle atrophy linked to cancer cachexia. Nature, 827-834.
365365121:1000Raymond‐Pope, C.J., et al. 2023. Restricted physical activity after volumetric muscle loss alters whole‐body and local muscle metabolism. Journal of Physiology, 743-761.
366527671:1000Wang, J, et al. 2023. Carboxyl-terminal modulator protein (CTMP) deficiency mitigates denervation-induced skeletal muscle atrophy. Biochemical and biophysical research communications, 155-161.
36353482not listedAmitani, H., et al. 2022. Impact of Ninjin'yoeito on frailty and short life in klotho-hypomorphic (kl/kl) mice. Frontiers in Pharmacology, 973897.
342701781:1000Fix, DK, et al. 2021. Wheel running improves fasting-induced AMPK signaling in skeletal muscle from tumor-bearing mice. Physiological reports, e14924.
342689021:1000Sakai, H, et al. 2021. Exogenous insulin-like growth factor 1 attenuates cisplatin-induced muscle atrophy in mice. Journal of cachexia, sarcopenia and muscle, 1570-1581.
338031241:1000Paixão, AO, et al. 2021. Palmitic Acid Impairs Myogenesis and Alters Temporal Expression of miR-133a and miR-206 in C2C12 Myoblasts. International journal of molecular sciences, 2748.
33731895not listedYoo, W, et al. 2021. Pancreatic cancer induces muscle wasting by promoting the release of pancreatic adenocarcinoma upregulated factor. Experimental & molecular medicine, 432-445.
333866111:2000Kawanishi, N, et al. 2021. Alterations of macrophage and neutrophil content in skeletal muscle of aged versus young mice. Muscle & nerve, 600-607.
331138501:500Abrigo, J, et al. 2020. Sarcopenia Induced by Chronic Liver Disease in Mice Requires the Expression of the Bile Acids Membrane Receptor TGR5. International journal of molecular sciences, 7922.
317368711:2000Counts, BR, et al. 2019. The Effect of Estradiol Administration on Muscle Mass Loss and Cachexia Progression in Female Apc Min/+ Mice. Frontiers in endocrinology, 720.
315253471:1000Scholpa, NE, et al. 2019. β2-adrenergic receptor-mediated mitochondrial biogenesis improves skeletal muscle recovery following spinal cord injury. Experimental neurology, 113064.
315147531:500Pérez, V, et al. 2019. The p75NTR neurotrophin receptor is required to organize the mature neuromuscular synapse by regulating synaptic vesicle availability. Acta neuropathologica communications, 147.
31126323not listedLala-Tabbert, N, et al. 2019. Targeted ablation of the cellular inhibitor of apoptosis 1 (cIAP1) attenuates denervation-induced skeletal muscle atrophy. Skeletal muscle, 13.
309433151:1000Silva,WJ, et al. 2019. miR-29c improves skeletal muscle mass and function throughout myocyte proliferation and differentiation and by repressing atrophy-related genes. Acta physiologica (Oxford, England), e13278.
30922397not listedLiu, D, et al. 2019. IMB0901 inhibits muscle atrophy induced by cancer cachexia through MSTN signaling pathway. Skeletal muscle, 8.
30884219not listedZhang, P, et al. 2019. Hemojuvelin is a novel suppressor for Duchenne muscular dystrophy and age-related muscle wasting. Journal of cachexia, sarcopenia and muscle, 557-573.
30681896not listedChoi, RH, et al. 2019. TRB3 regulates skeletal muscle mass in food deprivation-induced atrophy. FASEB journal : official publication of the Federation of American Societies for Experimental Biology, 5654-5666.
305304831:1000Radigan, K, et al. 2019. Influenza A Virus Infection Induces Muscle Wasting via IL-6 Regulation of the E3 Ubiquitin Ligase Atrogin-1. Journal of immunology (Baltimore, Md. : 1950), 484-493.
29671242not listedShin, K, et al. 2018. Fbxw7β is an inducing mediator of dexamethasone-induced skeletal muscle atrophy in vivo with the axis of Fbxw7β-myogenin-atrogenes. Molecular biology reports, 625-631.
292151981:2000Hardee, J, et al. 2018. Inflammatory signalling regulates eccentric contraction-induced protein synthesis in cachectic skeletal muscle. Journal of cachexia, sarcopenia and muscle, 369-383.
290544061:2000Crossland, H, et al. 2017. A novel puromycin decorporation method to quantify skeletal muscle protein breakdown: A proof-of-concept study. Biochemical and biophysical research communications, 608-614.
290217801:1000Paré, MF, et al. 2017. Chronic 5-Aminoimidazole-4-Carboxamide-1-β-d-Ribofuranoside Treatment Induces Phenotypic Changes in Skeletal Muscle, but Does Not Improve Disease Outcomes in the R6/2 Mouse Model of Huntington's Disease. Frontiers in neurology, 516.
289848361:1000Marzuca-Nassr, GN, et al. 2017. Balanced Diet-Fed Fat-1 Transgenic Mice Exhibit Lower Hindlimb Suspension-Induced Soleus Muscle Atrophy. Nutrients, 1100.
28364027not listedGiusto, M, et al. 2017. Skeletal muscle myopenia in mice model of bile duct ligation and carbon tetrachloride-induced liver cirrhosis. Physiological reports, e13153.
282865331:1000Zhang, Y, et al. 2017. Chinese Herbal Medicine Baoyuan Jiedu Decoction Inhibited Muscle Atrophy of Cancer Cachexia through Atrogin-l and MuRF-4. Evidence-based complementary and alternative medicine : eCAM, 6268378.
Western Blot: Rat
PMID Dilution Publication
370162921:1000Kotake, H., et al. 2023. Mechanism for exercise-mediated prevention against muscle wasting on extensor digitorum longus muscle in Spontaneously Diabetic Torii fatty rats. Journal of Physiological Sciences, 5.
356069081:1000Wang, R., et al. 2022. Resveratrol ameliorates muscle atrophy in chronic kidney disease via the axis of SIRT1/FoxO1. Phytotherapy Research, 3265-3275.
354329791:1000Kim, J.H., et al. 2022. Effect of oligonol, a lychee‐derived polyphenol, on skeletal muscle in ovariectomized rats by regulating body composition, protein turnover, and mitochondrial quality …. Food Science and Nutrition, 1184-1194.
347489201:1000Yeo, D., et al. 2022. Protective effects of extra virgin olive oil and exercise training on rat skeletal muscle against high-fat diet feeding. Journal of Nutritional Biochemistry, 108902.
325883431:1000Lawrence, MM, et al. 2021. Muscle from aged rats is resistant to mechanotherapy during atrophy and reloading. GeroScience, 65-83.
32985798not listedKnapp, F, et al. 2020. Differential effects of right and left heart failure on skeletal muscle in rats. Journal of cachexia, sarcopenia and muscle, 1830-1849.
32806520not listedRusbana, TB, et al. 2020. Supplementation with Fermented Rice Bran Attenuates Muscle Atrophy in a Diabetic Rat Model. Nutrients, 2409.
324055061:1000Tanabe, J, et al. 2020. Relationship between Urinary Liver-Type Fatty Acid-Binding Protein (L-FABP) and Sarcopenia in Spontaneously Diabetic Torii Fatty Rats. Journal of diabetes research, 7614035.
322339501:1000Lu, X, et al. 2020. Modulation of HOXA9 after skeletal muscle denervation and reinnervation. American journal of physiology. Cell physiology, C1154-C1165.
321257701:1000Lawrence, MM, et al. 2020. Massage as a mechanotherapy promotes skeletal muscle protein and ribosomal turnover but does not mitigate muscle atrophy during disuse in adult rats. Acta physiologica (Oxford, England), e13460.
316706001:1000Van Pelt, DW, et al. 2019. Age-related responses to a bout of mechanotherapy in skeletal muscle of rats. Journal of applied physiology (Bethesda, Md. : 1985), 1782-1791.
300916651:1000Shimkus, K, et al. 2018. Responses of skeletal muscle size and anabolism are reproducible with multiple periods of unloading/reloading. Journal of applied physiology (Bethesda, Md. : 1985), 1456-1467.
29123487not listedFortes, M, et al. 2017. Hypertrophy Stimulation at the Onset of Type I Diabetes Maintains the Soleus but Not the EDL Muscle Mass in Wistar Rats. Frontiers in physiology, 830.
280000441:1000Gerlinger-Romero, F, et al. 2017. Dysregulation between TRIM63/FBXO32 expression and soleus muscle wasting in diabetic rats: potential role of miR-1-3p, -29a/b-3p, and -133a/b-3p. Molecular and cellular biochemistry, 187-199.

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