product summary
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company name :
Novus Biologicals
other brands :
IMGENEX
product type :
antibody
product name :
STING/TMEM173 Antibody - BSA Free
catalog :
NBP2-24683
quantity :
0.1 mg (also 0.025 mg)
price :
469 USD
clonality :
polyclonal
host :
domestic rabbit
conjugate :
nonconjugated
reactivity :
human, mouse, rat, dogs, rhesus macaque
application :
western blot, ELISA, immunohistochemistry, immunocytochemistry, immunoprecipitation, flow cytometry, immunohistochemistry - paraffin section, immunohistochemistry - frozen section
more info or order :
citations: 69
Published Application/Species/Sample/DilutionReference
  • immunohistochemistry - paraffin section; mouse; 1:100; loading ...; fig 1c
  • immunohistochemistry; mouse; 1:100; loading ...; fig s5a
Ding R, Li H, Liu Y, Ou W, Zhang X, Chai H, et al. Activating cGAS-STING axis contributes to neuroinflammation in CVST mouse model and induces inflammasome activation and microglia pyroptosis. J Neuroinflammation. 2022;19:137 pubmed publisher
Herbstein F, Sapochnik M, Attorresi A, Pollak C, Senin S, Gonilski Pacin D, et al. The SASP factor IL-6 sustains cell-autonomous senescent cells via a cGAS-STING-NFκB intracrine senescent noncanonical pathway. Aging Cell. 2024;23:e14258 pubmed publisher
Pham A, Oliveira A, Albanna M, Alvarez Castanon J, Dupee Z, Patel D, et al. Non-Interferon-Dependent Role of STING Signaling in Pulmonary Hypertension. Arterioscler Thromb Vasc Biol. 2024;44:124-142 pubmed publisher
Varga K, Gyurina K, Radv xe1 nyi x, P xe1 l T, Sasi Szab xf3 L, Yu H, et al. Stimulator of Interferon Genes (STING) Triggers Adipocyte Autophagy. Cells. 2023;12: pubmed publisher
Liu H, Ghosh S, Vaidya T, Bammidi S, Huang C, Shang P, et al. Activated cGAS/STING signaling elicits endothelial cell senescence in early diabetic retinopathy. JCI Insight. 2023;8: pubmed publisher
Gupta U, Ghosh S, Wallace C, Shang P, Xin Y, Nair A, et al. Increased LCN2 (lipocalin 2) in the RPE decreases autophagy and activates inflammasome-ferroptosis processes in a mouse model of dry AMD. Autophagy. 2023;19:92-111 pubmed publisher
Gong L, Yang X, Yang J, Wu S, Chen Y, Zhang J, et al. Low-dose ganciclovir ameliorates dextran sulfate sodium-induced ulcerative colitis through inhibiting macrophage STING activation in mice. Front Pharmacol. 2022;13:1020670 pubmed publisher
Hoang A, Sasi Szab xf3 L, P xe1 l T, Szab xf3 T, Diedrich V, Herwig A, et al. Mitochondrial RNA stimulates beige adipocyte development in young mice. Nat Metab. 2022;4:1684-1696 pubmed publisher
Pantelidou C, Jadhav H, Kothari A, Liu R, Wulf G, Guerriero J, et al. STING agonism enhances anti-tumor immune responses and therapeutic efficacy of PARP inhibition in BRCA-associated breast cancer. NPJ Breast Cancer. 2022;8:102 pubmed publisher
Li X, Zhu Y, Zhang X, An X, Weng M, Shi J, et al. An alternatively spliced STING isoform localizes in the cytoplasmic membrane and directly senses extracellular cGAMP. J Clin Invest. 2022;132: pubmed publisher
Jeong S, Yang M, Choi S, Kim J, Koh G. Refractoriness of STING therapy is relieved by AKT inhibitor through effective vascular disruption in tumour. Nat Commun. 2021;12:4405 pubmed publisher
Kim J, Cho E, Mun S, Kim S, Kim S, Kim D, et al. Multi-Functional MPT Protein as a Therapeutic Agent against Mycobacterium tuberculosis. Biomedicines. 2021;9: pubmed publisher
Shmuel Galia L, Humphries F, Lei X, Ceglia S, Wilson R, Jiang Z, et al. Dysbiosis exacerbates colitis by promoting ubiquitination and accumulation of the innate immune adaptor STING in myeloid cells. Immunity. 2021;54:1137-1153.e8 pubmed publisher
Inoue Y, Ayaki T, Ishimoto T, Yamakado H, Maki T, Matsuzawa S, et al. The stimulator of interferon genes (STING) pathway is upregulated in striatal astrocytes of patients with multiple system atrophy. Neurosci Lett. 2021;757:135972 pubmed publisher
Jiang G, Yang X, Zhou H, Long J, Liu B, Zhang L, et al. cGAS knockdown promotes microglial M2 polarization to alleviate neuroinflammation by inhibiting cGAS-STING signaling pathway in cerebral ischemic stroke. Brain Res Bull. 2021;171:183-195 pubmed publisher
Dai E, Han L, Liu J, Xie Y, Zeh H, Kang R, et al. Ferroptotic damage promotes pancreatic tumorigenesis through a TMEM173/STING-dependent DNA sensor pathway. Nat Commun. 2020;11:6339 pubmed publisher
Kim J, Leem J, Hong H. Protective Effects of SPA0355, a Thiourea Analogue, Against Lipopolysaccharide-Induced Acute Kidney Injury in Mice. Antioxidants (Basel). 2020;9: pubmed publisher
He Y, Hong C, Yan E, Fletcher S, Zhu G, Yang M, et al. Self-assembled cGAMP-STINGΔTM signaling complex as a bioinspired platform for cGAMP delivery. Sci Adv. 2020;6:eaba7589 pubmed publisher
Jing Y, Dai X, Yang L, Kang D, Jiang P, Li N, et al. STING couples with PI3K to regulate actin reorganization during BCR activation. Sci Adv. 2020;6:eaax9455 pubmed publisher
Yu H, Kim Y, Cho M. Cytoplasm-localized SIRT1 downregulation attenuates apoptosis and cell cycle arrest in cisplatin-resistant lung cancer A549 cells. J Cancer. 2020;11:4495-4509 pubmed publisher
Chipurupalli S, Ganesan R, Dhanabal S, Kumar M, Robinson N. Pharmacological STING Activation Is a Potential Alternative to Overcome Drug-Resistance in Melanoma. Front Oncol. 2020;10:758 pubmed publisher
Kim Y, Kim J, Gu S, Jo S, Kim S, Young Kim S, et al. Identification of highly potent and selective inhibitor, TIPTP, of the p22phox-Rubicon axis as a therapeutic agent for rheumatoid arthritis. Sci Rep. 2020;10:4570 pubmed publisher
Qu H, Li L, Wang T, Seckin T, Segars J, Shih I. Epithelial Cells in Endometriosis and Adenomyosis Upregulate STING Expression. Reprod Sci. 2020;27:1276-1284 pubmed publisher
Wang L, Chiou J, Lee Y, Huang C, Shi Y, Chang L. SIRT3, PP2A and TTP protein stability in the presence of TNF-α on vincristine-induced apoptosis of leukaemia cells. J Cell Mol Med. 2020;24:2552-2565 pubmed publisher
Li L, Chen B, Zhu R, Li R, Tian Y, Liu C, et al. Fructus Ligustri Lucidi preserves bone quality through the regulation of gut microbiota diversity, oxidative stress, TMAO and Sirt6 levels in aging mice. Aging (Albany NY). 2019;11:9348-9368 pubmed publisher
Chen Y, Wu T, Ho C, Yeh T, Sun G, Kung Y, et al. Dapagliflozin Prevents NOX- and SGLT2-Dependent Oxidative Stress in Lens Cells Exposed to Fructose-Induced Diabetes Mellitus. Int J Mol Sci. 2019;20: pubmed publisher
Rojas Morales P, Tapia E, León Contreras J, González Reyes S, Jiménez Osorio A, Trujillo J, et al. Mechanisms of Fasting-Mediated Protection against Renal Injury and Fibrosis Development after Ischemic Acute Kidney Injury. Biomolecules. 2019;9: pubmed publisher
Yang H, Lee W, Kong S, Kim C, Kim J, Chang S, et al. STING activation reprograms tumor vasculatures and synergizes with VEGFR2 blockade. J Clin Invest. 2019;129:4350-4364 pubmed publisher
Wegner A, Campos N, Robbins M, Haddad A, Cunningham H, Yik J, et al. Acute Changes in NADPH Oxidase 4 in Early Post-Traumatic Osteoarthritis. J Orthop Res. 2019;37:2429-2436 pubmed publisher
Ikeda S, Matsushima S, Okabe K, Ikeda M, Ishikita A, Tadokoro T, et al. Blockade of L-type Ca2+ channel attenuates doxorubicin-induced cardiomyopathy via suppression of CaMKII-NF-κB pathway. Sci Rep. 2019;9:9850 pubmed publisher
Chen Z, Tao S, Li X, Zeng X, Zhang M, Yao Q. Anagliptin protects neuronal cells against endogenous amyloid β (Aβ)-induced cytotoxicity and apoptosis. Artif Cells Nanomed Biotechnol. 2019;47:2213-2220 pubmed publisher
Buck T, Hack C, Berg D, Berg U, Kunz L, Mayerhofer A. The NADPH oxidase 4 is a major source of hydrogen peroxide in human granulosa-lutein and granulosa tumor cells. Sci Rep. 2019;9:3585 pubmed publisher
Bitar M, Nader J, Al Ali W, Al Madhoun A, Arefanian H, Al Mulla F. Hydrogen Sulfide Donor NaHS Improves Metabolism and Reduces Muscle Atrophy in Type 2 Diabetes: Implication for Understanding Sarcopenic Pathophysiology. Oxid Med Cell Longev. 2018;2018:6825452 pubmed publisher
Tang P, Dang H, Huang J, Xu T, Yuan P, Hu J, et al. NADPH oxidase NOX4 is a glycolytic regulator through mROS-HIF1α axis in thyroid carcinomas. Sci Rep. 2018;8:15897 pubmed publisher
Lanza Jacoby S, Cheng G. 3,3'-Diindolylmethane enhances apoptosis in docetaxel-treated breast cancer cells by generation of reactive oxygen species. Pharm Biol. 2018;56:407-414 pubmed publisher
Liu R, Yan X. Sulforaphane protects rabbit corneas against oxidative stress injury in keratoconus through activation of the Nrf-2/HO-1 antioxidant pathway. Int J Mol Med. 2018;42:2315-2328 pubmed publisher
Lindquist R, Bayat Sarmadi J, Leben R, Niesner R, Hauser A. NAD(P)H Oxidase Activity in the Small Intestine Is Predominantly Found in Enterocytes, Not Professional Phagocytes. Int J Mol Sci. 2018;19: pubmed publisher
Seo G, Hyun C, Koh D, Park S, Lim Y, Kim Y, et al. A Novel Synthetic Material, BMM, Accelerates Wound Repair by Stimulating Re-Epithelialization and Fibroblast Activation. Int J Mol Sci. 2018;19: pubmed publisher
Dai Y, Zhang H, Zhang J, Yan M. Isoquercetin attenuates oxidative stress and neuronal apoptosis after ischemia/reperfusion injury via Nrf2-mediated inhibition of the NOX4/ROS/NF-κB pathway. Chem Biol Interact. 2018;284:32-40 pubmed publisher
Moloney J, Jayavelu A, Stanicka J, Roche S, O Brien R, Scholl S, et al. Nuclear membrane-localised NOX4D generates pro-survival ROS in FLT3-ITD-expressing AML. Oncotarget. 2017;8:105440-105457 pubmed publisher
Shanmugasundaram K, Nayak B, Friedrichs W, Kaushik D, Rodriguez R, Block K. NOX4 functions as a mitochondrial energetic sensor coupling cancer metabolic reprogramming to drug resistance. Nat Commun. 2017;8:997 pubmed publisher
Tsubouchi K, Araya J, Minagawa S, Hara H, Ichikawa A, Saito N, et al. Azithromycin attenuates myofibroblast differentiation and lung fibrosis development through proteasomal degradation of NOX4. Autophagy. 2017;13:1420-1434 pubmed publisher
Wang L, Ma R, Guo Y, Sun J, Liu H, Zhu R, et al. Antioxidant Effect of Fructus Ligustri Lucidi Aqueous Extract in Ovariectomized Rats Is Mediated through Nox4-ROS-NF-κB Pathway. Front Pharmacol. 2017;8:266 pubmed publisher
Kim Y, Kim S, Tatsunami R, Yamamura H, Fukai T, Ushio Fukai M. ROS-induced ROS release orchestrated by Nox4, Nox2, and mitochondria in VEGF signaling and angiogenesis. Am J Physiol Cell Physiol. 2017;312:C749-C764 pubmed publisher
Bhattacharya S, Srinivasan K, Abdisalaam S, Su F, Raj P, Dozmorov I, et al. RAD51 interconnects between DNA replication, DNA repair and immunity. Nucleic Acids Res. 2017;45:4590-4605 pubmed publisher
Sigala F, Efentakis P, Karageorgiadi D, Filis K, Zampas P, Iliodromitis E, et al. Reciprocal regulation of eNOS, H2S and CO-synthesizing enzymes in human atheroma: Correlation with plaque stability and effects of simvastatin. Redox Biol. 2017;12:70-81 pubmed publisher
Dickson B, Gatie M, Spice D, Kelly G. NOX1 and NOX4 are required for the differentiation of mouse F9 cells into extraembryonic endoderm. PLoS ONE. 2017;12:e0170812 pubmed publisher
Sweetwyne M, Pippin J, Eng D, Hudkins K, Chiao Y, Campbell M, et al. The mitochondrial-targeted peptide, SS-31, improves glomerular architecture in mice of advanced age. Kidney Int. 2017;91:1126-1145 pubmed publisher
Chen L, Zhao M, Li J, Wang Y, Bao Q, Wu S, et al. Critical role of X-box binding protein 1 in NADPH oxidase 4-triggered cardiac hypertrophy is mediated by receptor interacting protein kinase 1. Cell Cycle. 2017;16:348-359 pubmed publisher
Moloney J, Stanicka J, Cotter T. Subcellular localization of the FLT3-ITD oncogene plays a significant role in the production of NOX- and p22phox-derived reactive oxygen species in acute myeloid leukemia. Leuk Res. 2017;52:34-42 pubmed publisher
Reinert L, Lopušná K, Winther H, Sun C, Thomsen M, Nandakumar R, et al. Sensing of HSV-1 by the cGAS-STING pathway in microglia orchestrates antiviral defence in the CNS. Nat Commun. 2016;7:13348 pubmed publisher
Liu X, Hao B, Ma A, He J, Liu X, Chen J. The Expression of NOX4 in Smooth Muscles of Small Airway Correlates with the Disease Severity of COPD. Biomed Res Int. 2016;2016:2891810 pubmed
Sato N, Takasaka N, Yoshida M, Tsubouchi K, Minagawa S, Araya J, et al. Metformin attenuates lung fibrosis development via NOX4 suppression. Respir Res. 2016;17:107 pubmed publisher
Dosoki H, Stegemann A, Taha M, Schnittler H, Luger T, Schröder K, et al. Targeting of NADPH oxidase in vitro and in vivo suppresses fibroblast activation and experimental skin fibrosis. Exp Dermatol. 2017;26:73-81 pubmed publisher
Maraldi T, Resca E, Nicoli A, Beretti F, Zavatti M, Capodanno F, et al. NADPH oxidase-4 and MATER expressions in granulosa cells: Relationships with ovarian aging. Life Sci. 2016;162:108-14 pubmed publisher
Min H, Cha J, Kim K, Kim J, Ghee J, Kim H, et al. Renoprotective Effects of a Highly Selective A3 Adenosine Receptor Antagonist in a Mouse Model of Adriamycin-induced Nephropathy. J Korean Med Sci. 2016;31:1403-12 pubmed publisher
Avin K, Chen N, Organ J, Zarse C, O Neill K, Conway R, et al. Skeletal Muscle Regeneration and Oxidative Stress Are Altered in Chronic Kidney Disease. PLoS ONE. 2016;11:e0159411 pubmed publisher
Dushpanova A, Agostini S, Ciofini E, Cabiati M, Casieri V, Matteucci M, et al. Gene silencing of endothelial von Willebrand Factor attenuates angiotensin II-induced endothelin-1 expression in porcine aortic endothelial cells. Sci Rep. 2016;6:30048 pubmed publisher
Dalal S, Zha Q, Singh M, Singh K. Osteopontin-stimulated apoptosis in cardiac myocytes involves oxidative stress and mitochondrial death pathway: role of a pro-apoptotic protein BIK. Mol Cell Biochem. 2016;418:1-11 pubmed publisher
Tyurin Kuzmin P, Zhdanovskaya N, Sukhova A, Sagaradze G, Albert E, Ageeva L, et al. Nox4 and Duox1/2 Mediate Redox Activation of Mesenchymal Cell Migration by PDGF. PLoS ONE. 2016;11:e0154157 pubmed publisher
Li T, Cheng H, Yuan H, Xu Q, Shu C, Zhang Y, et al. Antitumor Activity of cGAMP via Stimulation of cGAS-cGAMP-STING-IRF3 Mediated Innate Immune Response. Sci Rep. 2016;6:19049 pubmed publisher
Shi Y, Sun X, Sun Y, Hou L, Yao M, Lian K, et al. Elevation of cortical C26:0 due to the decline of peroxisomal β-oxidation potentiates amyloid β generation and spatial memory deficits via oxidative stress in diabetic rats. Neuroscience. 2016;315:125-35 pubmed publisher
Austin S, Santhanam A, d Uscio L, Katusic Z. Regional Heterogeneity of Cerebral Microvessels and Brain Susceptibility to Oxidative Stress. PLoS ONE. 2015;10:e0144062 pubmed publisher
Cheng G, Lanza Jacoby S. Metformin decreases growth of pancreatic cancer cells by decreasing reactive oxygen species: Role of NOX4. Biochem Biophys Res Commun. 2015;465:41-6 pubmed publisher
Youn J, Zhou J, Cai H. Bone Morphogenic Protein 4 Mediates NOX1-Dependent eNOS Uncoupling, Endothelial Dysfunction, and COX2 Induction in Type 2 Diabetes Mellitus. Mol Endocrinol. 2015;29:1123-33 pubmed publisher
Sun C, Schattgen S, Pisitkun P, Jorgensen J, Hilterbrand A, Wang L, et al. Evasion of innate cytosolic DNA sensing by a gammaherpesvirus facilitates establishment of latent infection. J Immunol. 2015;194:1819-31 pubmed publisher
Yu C, Luo X, Duquette N, Thorin Trescases N, Thorin E. Knockdown of angiopoietin like-2 protects against angiotensin II-induced cerebral endothelial dysfunction in mice. Am J Physiol Heart Circ Physiol. 2015;308:H386-97 pubmed publisher
Sanders Y, Liu H, Liu G, Thannickal V. Epigenetic mechanisms regulate NADPH oxidase-4 expression in cellular senescence. Free Radic Biol Med. 2015;79:197-205 pubmed publisher
Milara J, Peiró T, Serrano A, Artigues E, Aparicio J, Tenor H, et al. Simvastatin Increases the Ability of Roflumilast N-oxide to Inhibit Cigarette Smoke-Induced Epithelial to Mesenchymal Transition in Well-differentiated Human Bronchial Epithelial Cells in vitro. COPD. 2015;12:320-31 pubmed publisher
product information
master code :
NBP2-24683
SKU :
NBP2-24683
product name :
STING/TMEM173 Antibody - BSA Free
unit size :
0.1 mg (also 0.025 mg)
description :
The STING/TMEM173 Antibody - BSA Free from Novus is a rabbit polyclonal antibody to STING/TMEM173. This antibody reacts with canine,human,mouse,primate,rat,rhesus macaque. The STING/TMEM173 Antibody - BSA Free has been validated for the following applications: Western Blot,IF/IHC,ELISA,Flow Cytometry,Immunoprecipitation,Immunohistochemistry-Paraffin,Immunohistochemistry-Frozen,Immunocytochemistry/ Immunofluorescence,Knockout Validated,Immunohistochemistry.
target :
STING/TMEM173
category :
Primary Antibodies
buffer :
PBS
clonality :
Polyclonal
concentration :
1.0 mg/ml
conjugate :
Unconjugated
host :
Rabbit
immunogen :
Partial synthetic peptide made to an internal portion of human STING/TMEM173 (between amino acids 310-360) [UniProt Q86WV6]
isotype :
IgG
purity :
Peptide affinity purified
species :
Canine,Human,Mouse,Primate,Rat,Rhesus Macaque
theoretical molecular weight :
42 kDa
gene symbol :
STING1
Antibody validation :
Knockout/Knockdown
accessionNumbers :
Q86WV6
applications :
Western Blot,IF/IHC,ELISA,Flow Cytometry,Immunoprecipitation,Immunohistochemistry-Paraffin,Immunohistochemistry-Frozen,Immunocytochemistry/ Immunofluorescence,Knockout Validated,Immunohistochemistry
USD :
469 USD
alt names :
anti-STING, endoplasmic reticulum IFN stimulator, Endoplasmic reticulum interferon stimulator, ERIS, FLJ38577, hMITA, hSTING, human STING, Mediator of IRF3 activation, MITA, mitochondrial mediator of IRF3 activation, mouse STING, MPYS, NET23, N-terminal methionine-proline-tyrosine-serine plasma membrane tetraspanner, SAVI, Stimulator of interferon genes protein, stimulator of interferon protein, sting, STING-beta, TMEM173, transmembrane protein 173
storage :
Store at 4C short term. Aliquot and store at -20C long term. Avoid freeze-thaw cycles.
more info or order :
company information
Novus Biologicals
10771 E Easter Ave
Centennial, CO 80112
novus@novusbio.com
https://www.novusbio.com
3037301950
headquarters: USA
Novus Biologicals licenses, manufactures, and markets antibodies to over 20,000 unique targets to support a wide array of research areas. Novus is built on honesty, collaboration and strong relationships and continues to provide quality tools that accelerate research. Every product is backed by our 100% guarantee.