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anti smad2 3  (Cell Signaling Technology Inc)


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    Structured Review

    Cell Signaling Technology Inc anti smad2 3
    Anti Smad2 3, supplied by Cell Signaling Technology Inc, used in various techniques. Bioz Stars score: 96/100, based on 1012 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/smad2+3/Smad2%2F3+XP+Rabbit+mAb/pmc12914543-97-92-94
    Average 96 stars, based on 1012 article reviews
    anti smad2 3 - by Bioz Stars, 2026-10
    96/100 stars

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    Related Articles

    Incubation:

    Article Title: Coordinated IL-2 and TGF-β Signaling via a Novel Fusion Protein Selectively Expands and Activates Regulatory T Cells
    Article Snippet: Following electrophoresis, proteins were transferred to PVDF membranes using the iBlot 2 Dry Blotting System (Thermo Fisher Scientific, Waltham, MA, USA), then blocked for 2 h at room temperature in SuperBlock buffer (Thermo Fisher Scientific, Waltham, MA, USA). .. Membranes were incubated overnight at 4°C with primary monoclonal antibodies against phospho-SMAD2 (Cell Signaling Technology, Danvers, MA, USA) or total SMAD2/3 (Cell Signaling Technology, Danvers, MA, USA). .. After washing, membranes were incubated with HRP-conjugated goat anti-rabbit IgG (Cell Signaling Technology, Danvers, MA, USA) for 1 h at room temperature, washed again, and developed using SuperSignal West Femto or West Pico chemiluminescent substrates (Thermo Fisher Scientific, Waltham, MA, USA).

    Article Title: Xaliproden improves diabetic kidney disease through JNK-mediated renal tubular protection
    Article Snippet: Diabetic kidney disease (DKD) is a major diabetic complication and the primary global cause of end-stage renal disease.. Hyperglycemia triggers multiple pathological signaling pathways and ultimately leads to structural alterations and functional decline in the kidney.. Xaliproden is a 5-HT1A receptor agonist originally developed for its neuroprotective effects; however, its impacts on renal disease remain unknown.

    Article Title: SIK1 drives lipid-induced insulin resistance in skeletal muscle by linking TGFβ1-Smad2/3 activation to PDE4-cAMP dysregulation.
    Article Snippet: Excessive lipid accumulation in skeletal muscle contributes to insulin resistance.. Salt-inducible kinase 1 (SIK1) is known to be involved in myogenic differentiation, yet its role in lipid-induced skeletal muscle insulin resistance remains unclear.. Here, we identified the functional role of SIK1 in skeletal muscle insulin resistance under lipid overload and delineated the underlying signaling mechanisms.

    Bioprocessing:

    Article Title: Coordinated IL-2 and TGF-β Signaling via a Novel Fusion Protein Selectively Expands and Activates Regulatory T Cells
    Article Snippet: Following electrophoresis, proteins were transferred to PVDF membranes using the iBlot 2 Dry Blotting System (Thermo Fisher Scientific, Waltham, MA, USA), then blocked for 2 h at room temperature in SuperBlock buffer (Thermo Fisher Scientific, Waltham, MA, USA). .. Membranes were incubated overnight at 4°C with primary monoclonal antibodies against phospho-SMAD2 (Cell Signaling Technology, Danvers, MA, USA) or total SMAD2/3 (Cell Signaling Technology, Danvers, MA, USA). .. After washing, membranes were incubated with HRP-conjugated goat anti-rabbit IgG (Cell Signaling Technology, Danvers, MA, USA) for 1 h at room temperature, washed again, and developed using SuperSignal West Femto or West Pico chemiluminescent substrates (Thermo Fisher Scientific, Waltham, MA, USA).

    Article Title: γ-Glutamylcyclotransferase Depletion Induces p15INK4b and p21Cip1-mediated Senescence via TGF-β2/SMAD3 Pathway Activation in Breast Cancer Cells
    Article Snippet: .. Antibodies against various proteins were obtained from the following sources: mouse monoclonal antibodies; p15 INK4b (1:500; cat. no. sc-271791; Santa Cruz Biotechnology, Dallas, TX, USA); p21 WAF1/CIP1 (1:500; cat. no. 556430; BD Biosciences, San Jose, CA, USA); α-tubulin (1:1,000; cat. no. T9026; Sigma–Aldrich Co. LCC, Tokyo, Japan); GGCT (1:500; cat. no. HPA020735; Sigma–Aldrich Co. LCC); TGF-β2 (1:1,000; cat no. 19999-1-AP; Proteintech, Rosemont, IL, USA), phospho-SMAD2 (1:500; cat. no. 3108; Cell Signaling Technology, Danvers, MA, USA); phospho-SMAD3 (1:500; cat. no. 9520; Cell Signaling Technology); SMAD2/3 (1:500; cat. no. 3102; Cell Signaling Technology). .. The secondary antibodies included horseradish peroxidase-conjugated (HRP-conjugated) horse anti-mouse IgG (1:5,000; cat. no. 7076; Cell Signaling Technology) and HRP-conjugated goat anti-rabbit IgG (1:5,000; cat. no. 7074; Cell Signaling Technology).

    Control:

    Article Title: Ellagic Acid Attenuates MASLD by Reducing Hepatic Lipogenesis and Fibrosis in ApoE <sup>–/–</sup> Mice Fed a Cholesterol- and Cholate-Rich Paigen Diet
    Article Snippet: Metabolic dysfunction-associated steatotic liver disease (MASLD) is a chronic liver condition with a rising global incidence, closely linked to metabolic risk factors such as dyslipidemia.. Apolipoprotein E-deficient (ApoE/) mice fed a Paigen diet are an established model for MASLD and atherosclerosis research.. This study investigated the effects of ellagic acid (EA) on MASLD progression in ApoE/ mice fed a Paigen diet.

    Nucleic Acid Electrophoresis:

    Article Title: SIK1 drives lipid-induced insulin resistance in skeletal muscle by linking TGFβ1-Smad2/3 activation to PDE4-cAMP dysregulation.
    Article Snippet: Excessive lipid accumulation in skeletal muscle contributes to insulin resistance.. Salt-inducible kinase 1 (SIK1) is known to be involved in myogenic differentiation, yet its role in lipid-induced skeletal muscle insulin resistance remains unclear.. Here, we identified the functional role of SIK1 in skeletal muscle insulin resistance under lipid overload and delineated the underlying signaling mechanisms.

    Polyacrylamide Gel Electrophoresis:

    Article Title: SIK1 drives lipid-induced insulin resistance in skeletal muscle by linking TGFβ1-Smad2/3 activation to PDE4-cAMP dysregulation.
    Article Snippet: Excessive lipid accumulation in skeletal muscle contributes to insulin resistance.. Salt-inducible kinase 1 (SIK1) is known to be involved in myogenic differentiation, yet its role in lipid-induced skeletal muscle insulin resistance remains unclear.. Here, we identified the functional role of SIK1 in skeletal muscle insulin resistance under lipid overload and delineated the underlying signaling mechanisms.



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