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Results for "

collagen peptide Type I

" in MedChemExpress (MCE) Product Catalog:

14

Inhibitors & Agonists

2

Biochemical Assay Reagents

11

Peptides

1

Natural
Products

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-13948
    Angiotensin II human
    Maximum Cited Publications
    222 Publications Verification

    Angiotensin II; Ang II; DRVYIHPF

    Angiotensin Receptor Apoptosis Cardiovascular Disease Infection Metabolic Disease Inflammation/Immunology Cancer
    Angiotensin II (Angiotensin II) is a vasoconstrictor and a major bioactive peptide of the renin/angiotensin system. Angiotensin II human plays a central role in regulating human blood pressure, which is mainly mediated by interactions between Angiotensin II and the G-protein-coupled receptors (GPCRs) Angiotensin II type 1 receptor (AT1R) and Angiotensin II type 2 receptor (AT2R). Angiotensin II human stimulates sympathetic nervous stimulation, increases aldosterone biosynthesis and renal actions. Angiotensin II human induces growth of vascular smooth muscle cells, increases collagen type I and III synthesis in fibroblasts, leading to thickening of the vascular wall and myocardium, and fibrosis. Angiotensin II human also induces apoptosis. Angiotensin II induces capillary formation from endothelial cells via the LOX-1 dependent redox-sensitive pathway .
    Angiotensin II human
  • HY-13948A
    Angiotensin II human acetate
    Maximum Cited Publications
    222 Publications Verification

    Angiotensin II acetate; Ang II acetate; DRVYIHPF acetate

    Angiotensin Receptor Apoptosis Cardiovascular Disease Infection Metabolic Disease Inflammation/Immunology Cancer
    Angiotensin II human (Angiotensin II) acetate is a vasoconstrictor and a major bioactive peptide of the renin/angiotensin system. Angiotensin II human acetate plays a central role in regulating human blood pressure, which is mainly mediated by interactions between Angiotensin II and the G-protein-coupled receptors (GPCRs) Angiotensin II type 1 receptor (AT1R) and Angiotensin II type 2 receptor (AT2R). Angiotensin II human acetate stimulates sympathetic nervous stimulation, increases aldosterone biosynthesis and renal actions. Angiotensin II human acetate induces growth of vascular smooth muscle cells, increases collagen type I and III synthesis in fibroblasts, leading to thickening of the vascular wall and myocardium, and fibrosis. Angiotensin II human acetate also induces apoptosis. Angiotensin II human acetate induces capillary formation from endothelial cells via the LOX-1 dependent redox-sensitive pathway .
    Angiotensin II human acetate
  • HY-O0004

    MMP Metabolic Disease
    Collagenases are enzymes that break the peptide bonds in collagen. Collagenases are derived from the Clostridium histolyticum. Collagenases (Type I) are proteolytic enzymes that break peptide bonds in collagen and can be used for tissue digestion and dissociation.
    Collagenase I, from Clostridium histolyticum
  • HY-P2738

    MMP Inflammation/Immunology
    Collagen, Type I, from bovine achilles tendon are extracellular matrix proteins and show many applications in food, cosmetic, pharmaceutical and biomedical industries. This product is enzymatically hydrolyzed collagen peptide .
    Collagen, Type I, from bovine achilles tendon
  • HY-13948B
    Angiotensin II human TFA
    Maximum Cited Publications
    222 Publications Verification

    Angiotensin II TFA; Ang II TFA; DRVYIHPF TFA

    Angiotensin Receptor Apoptosis Cardiovascular Disease Metabolic Disease Cancer
    Angiotensin II human (Angiotensin II) TFA is a vasoconstrictor and a major bioactive peptide of the renin/angiotensin system. Angiotensin II human TFA plays a central role in regulating human blood pressure, which is mainly mediated by interactions between Angiotensin II and the G-protein-coupled receptors (GPCRs) Angiotensin II type 1 receptor (AT1R) and Angiotensin II type 2 receptor (AT2R). Angiotensin II human TFA stimulates sympathetic nervous stimulation, increases aldosterone biosynthesis and renal actions. Angiotensin II human TFA induces growth of vascular smooth muscle cells, increases collagen type I and III synthesis in fibroblasts, leading to thickening of the vascular wall and myocardium, and fibrosis. Angiotensin II human TFA also induces apoptosis. Angiotensin II human TFA induces capillary formation from endothelial cells via the LOX-1 dependent redox-sensitive pathway .
    Angiotensin II human TFA
  • HY-P10954

    p38 MAPK Others
    Link N peptide is a proteoglycan aggregates activator in the extracellular matrix. Link N peptide can selectively activate the p38 mitogen-activated protein kinase (MAPK) pathway to promote the expression of type I and II collagens in human intervertebral disc cells. Link N peptide is promising for research of intervertebral disc degeneration-related diseases .
    Link N peptide
  • HY-P5832

    TGF-beta/Smad RUNX Metabolic Disease
    BMP2-derived peptide is an osteogenic inducer and BMP receptor ligand. BMP2-derived peptide binds to BMP receptors on the cell surface to form a complex, activates the downstream Smad signaling pathway, and regulates the expression of osteogenic transcription factors. BMP2-derived peptide effectively promotes the adhesion, proliferation, osteogenic differentiation and mineralization of bone marrow mesenchymal stem cells, significantly up-regulates the mRNA levels of OCN, Runx2 and type I collagen, and increases alkaline phosphatase activity and calcium deposition. BMP2-derived peptide induces osteoblast differentiation and ectopic bone regeneration, and improves cranial bone defect repair. Meanwhile, BMP2-derived peptide enhances the cytocompatibility of mesoporous silica nanoparticles, synergistically increases osteogenic activity with Dexamethasone (HY-14648), serving as an important tool for bone defect repair research .
    BMP2-derived peptide
  • HY-P5232

    Collagen Metabolic Disease
    Tetrapeptide-21 is a bioactive peptide composed of four amino acids. Tetrapeptide-21 effectively enhances the vitality of human dermal fibroblasts. Tetrapeptide-21 upregulates the expression of key extracellular matrix (ECM) genes and promotes the synthesis of ECM proteins (such as type I collagen, hyaluronic acid synthase 1, and fibronectin). Tetrapeptide-21 has the efficacy of anti-wrinkle and improving skin elasticity, and has been reported to be used as a cosmetic ingredient .
    Tetrapeptide-21
  • HY-P11087

    Collagen Others
    P15 is a collagen mimetic peptide with the sequence of GTPGPQGIAGQRGVV. P15 can mimic the cell-binding domain of human type I collagen. P15 is capable of promoting the adhesion, proliferation, and differentiation of osteoblasts. Biomaterials modified with P15 can be used in research related to bone regeneration .
    P15
  • HY-P2738A

    MMP Inflammation/Immunology
    Type I collagen peptide is a fibrillar form of collagen that promotes the activation and growth of epithelial cells . This product is an enzymatically hydrolyzed collagen short peptide.
    Collagen petide Type I
  • HY-P11112

    β-catenin Wnt Inflammation/Immunology
    PTD-DBM is a competitive peptide that blocks the CXXC5-Dvl interaction and induces the expression of β-catenin, α-SMA, and type I collagen. PTD-DBM has skin wound healing activity .
    PTD-DBM
  • HY-P1912

    MMP Endocrinology
    Alpha 1(I) Collagen (614-639), human is a peptide fragment of alpha-1 type I collagen.
    Alpha 1(I) Collagen (614-639), human
  • HY-P0284

    MMP Inflammation/Immunology
    C-telopeptide, a cross-linked peptide of type I collagen, is released during bone resorption and has been correlated with bone mineral density (BMD).
    C-telopeptide
  • HY-P0284A

    MMP Inflammation/Immunology
    C-telopeptide TFA, a cross-linked peptide of type I collagen, is released during bone resorption and has been correlated with bone mineral density (BMD) .
    C-telopeptide TFA

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