10 Results for "

three-dimensional network

" in MedChemExpress (MCE) Product Catalog:
Products (10)

10 Results for "three-dimensional network" in MCE Product Catalog:

Art. -Nr.: HY-NP175
CAS. Nr.: 9064-67-9
Collagen (bovine skin) is a three-dimensional cell culture matrix and morphoregulator extracted from bovine skin, which binds to integrins (such as α1β1, α2β1, α11β1) and discoidin domain receptors (DDR1 and DDR2). Collagen (bovine skin) can be reconstituted into a three-dimensional fibrous network to mimic the in vivo tissue environment. It can not only be modified through cross-linking or concentration adjustment, but also interact with fibronectin to enhance matrix-associated cellular activities. Collagen (bovine skin) mediates the proliferation, aggregation, durotactic migration and differentiation of fibroblasts, regulates the synthesis, remodeling and contraction of extracellular matrix, and modulates the expression, activation of MMP as well as cell apoptosis, etc. Collagen (bovine skin) can be used in studies related to the mechanisms of cancer occurrence and development .
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Art. -Nr.: HY-P2632
CAS. Nr.: 289042-25-7
Synonyms: RADA16
Forschungsgebiete:  

Neurological Disease

RAD16-I (RADA16) is a non-directed self-assembling peptide hydrogel. Under physiological conditions, RAD16-I spontaneously forms a three-dimensional nanofiber network that mimics the extracellular matrix, and possesses excellent properties such as high water content, biocompatibility and degradability. RAD16-I serves as an ideal scaffold for three-dimensional cell culture. RAD16-I not only maintains cell viability and induces self-organization, but also supports cell adhesion, proliferation, differentiation and insulin secretion, effectively stabilizes islet clusters and promotes directed differentiation of the cardiac lineage. RAD16-I can construct a cell-friendly nano-microenvironment for research related to diseases such as myocardial infarction and diabetes .
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Art. -Nr.: HY-156045C
CAS. Nr.: 9041-36-5
Cross-linked dextran G 200 is a hydrophilic gel based on molecular size exclusion and targeted macromolecular separation. Cross-linked dextran G 200 works through the gel permeation mechanism, and the cross-linked structure forms a three-dimensional network with a specific pore size, achieving separation based on the molecular hydrodynamic volume. Cross-linked dextran G 200 can be used to adjust the osmotic solute distribution coefficient and the ability to maintain osmotic equilibrium, such as in gel filtration chromatography for purification and analysis of biomacromolecules such as proteins and nucleic acids . Cross-linked dextran G 200 can also be used as a gel filtration filler (particle size range: 40-120 μm; globular protein separation range: 5-600 kDa) .
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Art. -Nr.: HY-156045B
CAS. Nr.: 12774-36-6
Cross-linked dextran G 150 is a hydrophilic gel based on molecular size exclusion and targeted for the separation of macromolecules. Cross-linked dextran G 150 functions through the gel permeation mechanism, where the cross-linked structure forms a three-dimensional network with specific pore diameters, achieving separation based on the molecular volumetric flow. Cross-linked dextran G 150 can be used to regulate the distribution coefficient of permeating solutes and maintain the permeation balance, such as in gel filtration chromatography for the purification and analysis of biological macromolecules like proteins and nucleic acids. Cross-linked dextran G 150 can also be used as a gel filtration filler (particle size range: 40-120 μm; spherical protein separation range: 5-300 kDa) .
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Art. -Nr.: HY-Y0425
CAS. Nr.: 623-27-8
Terephthalaldehyde is a crosslinking agent. Terephthalaldehyde forms a crosslinked structure inside the gelatin matrix by forming Schiff base imines with the amino groups of gelatin, thereby constructing a three-dimensional network. Terephthalaldehyde improves the hydrophobicity of the gelatin matrix, delays water vapor penetration and enhances the liquid water resistance of gelatin films. Terephthalaldehyde can be used as a crosslinking agent to prepare crosslinked chitosan hydrogel (CAAT) via ultrasound-induced synthesis. Terephthalaldehyde helps CAAT hydrogels selectively adsorb anionic dyes from aqueous media, including multi-component systems containing cationic dyes. Terephthalaldehyde serves as a starting material for the synthesis of bis-heterocyclic compounds (including bis-thiazole and bis-triazolopyrimidine compounds) .
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Art. -Nr.: HY-P6299
CAS. Nr.: 944792-75-0
Forschungsgebiete:  

Neurological Disease Cancer

MAX8 is a synthetic β-hairpin peptide that folds rapidly and self-assembles into a β-sheet-rich fibrous hydrogel network via non-covalent crosslinking. MAX8 hydrogel exhibits excellent shear-thinning and self-healing properties, enabling precise delivery via syringe and maintaining local retention after implantation. MAX8 hydrogel can uniformly encapsulate cells while preserving their viability and morphology, and protect growth factors (e.g., NGF) and chemotherapeutic drugs from degradation. MAX8 is applicable for spinal cord injury repair, medulloblastoma treatment, and three-dimensional high-throughput drug screening .
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Art. -Nr.: HY-P10699
CAS. Nr.: 487036-63-5
Forschungsgebiete:  

Neurological Disease Cancer

MAX1 is a synthetic β-hairpin peptide that folds rapidly and self-assembles into a β-sheet-rich fibrous hydrogel network via non-covalent crosslinking. MAX1 hydrogel exhibits excellent shear-thinning and self-healing properties, enabling precise delivery via syringe and maintaining local retention after implantation. MAX1 hydrogel can uniformly encapsulate cells while preserving their viability and morphology, and protect growth factors (e.g., NGF) and chemotherapeutic drugs from degradation. MAX1 is applicable for spinal cord injury repair, medulloblastoma treatment, and three-dimensional high-throughput drug screening .
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Art. -Nr.: HY-W024564
CAS. Nr.: 625-51-4
Synonyms: Acetamidomethanol
Forschungsgebiete:  

Others

N-(Hydroxymethyl)acetamide (Acetamidomethanol) is a model molecule of Ceramide. The dimers of N-(Hydroxymethyl)acetamide have various hydrogen bonds, and the three-dimensional network structure formed by these hydrogen bonds may be the main reason for the barrier function of the stratum corneum of the skin .
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Art. -Nr.: HY-135721
CAS. Nr.: 13304-62-6
Synonyms: Benzyl acrylamide
Forschungsgebiete:  

Others

N-Benzylacrylamide (Benzyl acrylamide) is a hydrophobic monomer. N-Benzylacrylamide can form hydrophobic microdomains that act as physical cross-linking sites to connect polymer chains to each other into a three-dimensional network; dynamically reversible hydrophobic interactions enable the spontaneous reformation of physical cross-linking sites after contact of fractured surfaces, thereby achieving autonomous self-healing. N-Benzylacrylamide can promote the synthesis of carboxymethyl cellulose-modified amphiphilic copolymers, and enhance the intermolecular association, viscoelasticity, thermal stability, as well as fire resistance/fire extinguishing performance of the resulting hydrogels .
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Art. -Nr.: HY-P2632C
Forschungsgebiete:  

Neurological Disease

RAD16-I, free acid TFA is a derivative of RADA16 (HY-P2632), with no Ac and NH2 modifications at both ends, and it has the same function as RADA16. RAD16-I, free acid TFA is a non-directed self-assembling peptide hydrogel. Under physiological conditions, RAD16-I, free acid TFA spontaneously forms a three-dimensional nanofiber network that mimics the extracellular matrix, and possesses excellent properties such as high water content, biocompatibility and degradability. RAD16-I, free acid TFA serves as an ideal scaffold for three-dimensional cell culture. RAD16-I, free acid TFA not only maintains cell viability and induces self-organization, but also supports cell adhesion, proliferation, differentiation and insulin secretion, effectively stabilizes islet clusters and promotes directed differentiation of the cardiac lineage. RAD16-I, free acid TFA can construct a cell-friendly nano-microenvironment for research related to diseases such as myocardial infarction and diabetes .
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