14 Results for "

biomedical delivery

" in MedChemExpress (MCE) Product Catalog:
Products (14)

14 Results for "biomedical delivery" in MCE Product Catalog:

Cat. No.: HY-W243303M
CAS No.: 9003-01-4
Poly(acrylic acid) (MW 100000) (35% in water) is a polyacrylic acid with a molecular weight of 100000 (an anionic polymer), which can be used as a corrosion inhibitor and surface stabilizer. Poly(acrylic acid) (MW 100000) can be used for biomedical applications, such as drug delivery .
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Cat. No.: HY-112624C
CAS No.: 9004-54-0
Dextran (MW 40000) is a complex carbohydrate polymer consisting of glucose molecules linked by glycosidic bonds. Dextran has excellent solubility in water, making it useful as a viscosity modifier or stabilizer in foods, paints and adhesives. In the biomedical field, dextran is often used as a plasma expander because of its ability to increase blood volume when administered intravenously. It can also be modified to create dextran-based drug delivery systems, such as targeted nanoparticles.
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Cat. No.: HY-W011696
CAS No.: 112-90-3
Synonyms: cis-1-Amino-9-octadecene, 80-90%
Oleylamine, 80-90% (cis-1-Amino-9-octadecene, 80-90%) is a multifunctional reagent used for metal ion coordination and nanoparticle surface modification, and acts as a solvent, surfactant and reducing agent in the synthesis of metal oxide nanoparticles. Oleylamine, 80-90% regulates nanoparticle morphology, magnetization intensity and water proton relaxation rate via thiol-ene "click" reaction, and enhances the colloidal stability of nanoparticles in organic reagents. Oleylamine, 80-90% is mainly used in research and applications in fields such as nanomaterial synthesis, biomedical imaging (MRI contrast agents, fluorescent probes), cancer cell targeting and drug delivery .
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Cat. No.: HY-112531B
CAS No.: 25249-16-5
Research Areas:  

Others

Poly(2-hydroxyethyl methacrylate) (Mv 300000) is a biocompatible, optically transparent, hydrophilic, and non-degradable polymer with excellent cytocompatibility, eliciting a minimal immunological response from host tissue. Poly(2-hydroxyethyl methacrylate) (Mv 300000) can be used for different biomedical applications, such as bone tissue regeneration, wound dressings and drug delivery .
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Cat. No.: HY-153080
Purity:  94.6%
Target:  

Fluorescent Dye mRNA

Research Areas:  

Others

Firefly Luciferase mRNA (N1-Me-Pseudo UTP) is a modified form of firefly luciferase mRNA, which is N1-methylated pseudo uridine (N1-Me-Pseudo UTP). Firefly Luciferase mRNA (N1-Me-Pseudo UTP) is a commonly used reporter molecule in biomedical and mRNA research and its core function is to rapidly and quantitatively monitor the expression and delivery efficiency of mRNA through the emission of light signals .
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Cat. No.: HY-W097122
CAS No.: 170941-79-4
Research Areas:  

Others

Fmoc-Gly-Gly-Gly-OH is a self-assembling gelator tripeptide modified with 9-fluorenylmethoxycarbonyl (Fmoc). Fmoc-Gly-Gly-Gly-OH forms a secondary supramolecular network through non-covalent interactions in hybrid polymer hydrogel systems. Fmoc-Gly-Gly-Gly-OH contributes to the construction of double-network hydrogels. Fmoc-Gly-Gly-Gly-OH can be used in studies of tissue regeneration and biomedical delivery applications .
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Cat. No.: HY-W250312
CAS No.: 24980-41-4
Polycaprolactone is a biodegradable polyester commonly used in various biomedical and industrial applications. It is a white waxy polymer that can be molded into various shapes and forms. Polycaprolactone has various properties suitable for these applications, including low melting point, high flexibility and slow biodegradation rate. It can be used as a raw material for the production of tissue engineering scaffolds, drug delivery systems, and medical implants. In addition, it is used as a binder in the production of adhesives, coatings and paints.
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Cat. No.: HY-W090151
CAS No.: 2396521-63-2
Silyl-ether based ROMP monomer iPrSi is a biochemical reagent that can be used in the synthesis of advanced polymer materials for biomedical applications, including drug delivery vehicles and hydrogels .
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Cat. No.: HY-163977
CAS No.: 1621108-00-6
Synonyms: 2,2-Diphenyl-1,3-dioxa-2-silacyclooct-5-ene
Silyl-ether based ROMP Monomer (2,2-Diphenyl-1,3-dioxa-2-silacyclooct-5-ene) is a biochemical reagent that can be used in the synthesis of advanced polymer materials for biomedical applications, including drug delivery vehicles and hydrogels .
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Cat. No.: HY-D3610
Synonyms: 100000 (average)
Target:  

Fluorescent Dye

Research Areas:  

Others

Sulfo-Cy3 Dextran (MW 100000) is a sulfonated Cy3 fluorescently labeled dextran with an average molecular weight of 100,000, exhibiting excellent water solubility and biocompatibility. Sulfo-Cy3 Dextran (MW 100000) can be used in biomedical research fields such as fluorescence imaging, vascular permeability assessment, endocytosis studies, and drug delivery system evaluation.
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Cat. No.: HY-167809
CAS No.: 1085528-78-4
Research Areas:  

Others

1-Palmitoyl-2-cholesterylcarbonoyl-sn-glycero-3-phosphocholine is a sterol-modified phospholipid with the activity of maintaining the stability of membrane bilayer structure and enhancing the liposome-mediated compound delivery process. 1-Palmitoyl-2-cholesterylcarbonoyl-sn-glycero-3-phosphocholine is widely used in biomedical applications to improve the delivery efficiency of compounds. 1-Palmitoyl-2-cholesterylcarbonoyl-sn-glycero-3-phosphocholine can also improve the release and distribution of compounds in cells.
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Cat. No.: HY-184608
CuS nanoparticles are nanomaterials with unique properties. Their structural characteristics endow them with excellent near-infrared light response, facilitating functional applications through surface modification. This material shows potential in the biomedical field, enabling synergistic photothermal and photodynamic therapies in tumor treatment, as well as precise drug delivery. In the energy sector, it is suitable for the development of novel energy storage devices; in the environmental field, it can participate in photocatalytic degradation processes.
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Cat. No.: HY-L214
227 compounds

Liposomes are spherical or multilayered spherical vesicles formed by the self-assembly of diacyl chain phospholipids (lipid bilayers) in aqueous solutions, which can be made from natural or synthetic phospholipids and exhibit good biocompatibility and low toxicity. They can serve as delivery carriers for various bioactive substances (such as drugs, proteins, nucleic acids, etc.) and are widely used in biomedical and chemical research. The main advantages of liposomes include 1) Protective effect: Their bilayer structure can protect encapsulated molecules from enzymatic degradation, oxidation, and other influences, extending stability and activity; 2) Active targeting: Surface modifications enable active targeting, enhancing the concentration of drugs or molecules in specific tissues or cells; 3) Customizability: The composition and structure of liposomes can be adjusted according to needs, such as altering phospholipid types or adding targeting ligands. These properties make liposomes highly valuable in developing novel drug delivery systems, serving as nucleic acid carriers for gene transfection, studying cellular uptake mechanisms and drug release kinetics, as well as developing functional food additives to improve the bioavailability of nutritional components.

MCE contains 227 liposome compounds, which is a good tool for drug delivery-related studies.

Cat. No.: HY-L251
93 compounds

Ionizable lipids are a class of specialized, functional lipid molecules with pH-sensitive charge characteristics. They are primarily divided into two major categories: ionizable cationic lipids and ionizable anionic lipids, though the term typically specifies ionizable cationic lipids within the biomedical field. Structurally, these lipids consist of an ionizable hydrophilic headgroup, a biodegradable linker, and hydrophobic tails. Their primary application is serving as the key delivery vehicle in lipid nanoparticles (LNPs) to encapsulate negatively charged nucleic acid macromolecules, such as mRNA vaccines, siRNA therapeutics, and CRISPR gene-editing components. In a physiological, neutral environment, they remain electrically neutral to minimize systemic toxicity and prolong circulation time. Upon entering the acidic microenvironment of cellular endosomes, however, they undergo protonation to become positively charged, thereby inducing membrane fusion and enabling the highly efficient intracellular release of the nucleic acid cargo. Consequently, they serve as the technological cornerstone for bringing nucleic acid therapies into clinical application.

To accelerate the translational process of cutting-edge nucleic acid drugs, MCE has meticulously constructed an ionizable lipid compound library containing 93 high-performance molecules, aiming to provide researchers and pharmaceutical professionals with a high-throughput, multi-dimensional lipid screening platform.

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