209 Results for "

Biodegradable

" in MedChemExpress (MCE) Product Catalog:
Products (209)

209 Results for "Biodegradable" in MCE Product Catalog:

Cat. No.: HY-W093282
CAS No.: 8013-07-8
Synonyms: Soybean oil epoxide
Epoxidized soya bean oil (ESBO) is a vegetable oil-derived organic compound used as a plasticizer and stabilizer in various applications. It is produced by epoxidation of soybean oil, which introduces epoxy groups into the fatty acid chains of the oil. ESBO is a viscous, pale yellow liquid that is soluble in many organic solvents, such as chloroform and ethanol, but insoluble in water. It is commonly used as a plasticizer in polyvinyl chloride (PVC) products, including toys, food packaging materials and medical devices. In addition to its plasticizing properties, ESBO acts as an antioxidant and UV stabilizer, helping to prevent degradation and discoloration of PVC products over time. ESBOs have been investigated for their potential use in biodegradable plastics and as bio-based alternatives to traditional petroleum-derived plasticizers.
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Cat. No.: HY-108036AR
CAS No.: 868156-46-1
Synonyms: (S)-Hydroxypropyl tetrahydropyrantriol (Standard)
(S)-Pro-xylane (Standard) is the analytical standard of (S)-Pro-xylane (HY-108036A). This product is intended for research and analytical applications. (S)-Pro-xylane ((S)-Hydroxypropyl tetrahydropyrantriol) is a bioactive C-glycoside that targets the biosynthesis pathway of glycosaminoglycans/mucopolysaccharides (GAGs) in the sKin matrix and can be absorbed transdermally. (S)-Pro-xylane stimulates the biosynthesis of GAGs in fibroblasts, enhances the structural stability of the sKin extracellular matrix, improves sKin elasticity and moisturizing ability, and delays wrinkle formation. (S)-Pro-xylane can effectively promote the synthesis of collagen fibers and hyaluronic acid in the dermis. (S)-Pro-xylane is used in the field of anti-aging cosmetics to improve sKin hydration and elasticity. (S)-Pro-xylane is eco-friendly and biodegradable .
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Cat. No.: HY-177531
CAS No.: 2796227-17-1
S-Ac7-DOG is a cationic lipid with biodegradability, low immunogenicity and high nucleic acid transfection capacity, which is commonly used to construct lipid nanoparticles for nucleic acid molecule delivery. S-Ac7-DOG can bind to mRNA, microRNA and self-amplifying RNA through electrostatic interaction. Lipid nanoparticles formed by S-Ac7-DOG enter cells via an energy-dependent endocytic pathway, release nucleic acid cargos, induce antigen-specific CD8 + T cell responses, promote the generation of precursor memory T cells, and regulate neuroinflammatory pathways. S-Ac7-DOG can be used in the research of retinal diseases, neuroinflammation and cancer .
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Cat. No.: HY-184870
CAS No.: 31621-87-1
Target:  

Others

Research Areas:  

Inflammation/Immunology

Polydioxanone is a colorless, crystalline semi-crystalline thermoplastic poly (ether-ester) bioabsorbable polymer. Polydioxanone serves as a hemostatic agent, biodegradable agent, degradant, lumen patency maintainer, as well as a temporary inducer of tracheal tissue injury and inflammation. Polydioxanone controls bone bleeding in biocompatible matrices, degrades via random hydrolytic scission and end-chain scission, with accelerated degradation occurring at pH <1.67, maintains tracheal lumen patency, and induces reversible tracheal epithelial necrosis, inflammation, fibrous tissue hyperplasia, and goblet cell hyperplasia. Polydioxanone can be used in research on bone bleeding, non-malignant tracheal stenosis, tracheobronchial stenosis, tracheobronchomalacia, and airway obstruction associated with vascular compression .
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Cat. No.: HY-19873
CAS No.: 925438-34-2
Target:  

Photosensitizer

Research Areas:  

Cancer

SL-052 is a hypocrellin-based photosensitizer that has recently shown promising results in clinical and preclinical testing for cancer photodynamic therapy (PDT). SL-052 is encapsulated in biodegradable polylactic-co-glycolic acid (PLGA) polymer nanoparticles optimized using single emulsion solvent evaporation technology. The SL-052-PLGA nanoparticles were more effective in PDT treatment of subcutaneous SCCVII squamous cell carcinoma compared to polyvinylpyrrolidone (PVP)-based and standard liposomal SL-052 formulations. A longer time interval between drug injection and tumor illumination can improve tumor cure rates, and SL-052-PLGA nanoparticles showed the best therapeutic effect among all SL-052 formulations.
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Cat. No.: HY-167142
CAS No.: 3397-16-8
Synonyms: N-Stearoyl-L-glutamic acid
Research Areas:  

Others

Stearoyl glutamic acid (N-Stearoyl-L-glutamic acid) is a saturated aliphatic amide compound and also an additive for lipid cubic phase materials. Stearoyl glutamic acid is used in studies as a surfactant and emulsifier .
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Cat. No.: HY-177921
CAS No.: 3058580-71-2
Target:  

Liposome

Research Areas:  

Others

PL53 is a kind of cycloalkylamine lipid nanoparticles. PL53 exhibits outstanding transfection efficiency both in vitro and in vivo, especially showing strong protein expression ability and potential tissue targeting after intramuscular injection. PL53 can be used for the study of nucleic acid delivery .
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Cat. No.: HY-148775A
CAS No.: 743423-15-6
MPEG-PLGA (21500-26500) is a biodegradable amphipathic polymeric nanocarrier of poly (lactic-co-glycolic acid)-block-poly (ethylene glycol) (PLGA-PEG-Mal) that allows covalent modification of functional molecules. MPEG-PLGA (21500-26500) modified with Angiopep-2 can cross the blood-brain barrier and exhibits targeting selectivity for glioblastoma cells. MPEG-PLGA (21500-26500) can capture tumor-derived protein antigens, and exerts immunomodulatory effects when conjugated with anti-OX40 antibody; when used in combination with A2-CL/Dbait nanoparticles and radiotherapy, it prolongs survival time and reduces tumor volume in glioblastoma mouse models. MPEG-PLGA (21500-26500) can be used for studies related to bacterial wound infections and glioblastoma .
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Cat. No.: HY-W010639S
Synonyms: Pent-4-en-1-ol-d9
4-Penten-ol-d9 (Pent-4-en-1-ol-d9) is the deuterium labeled 4-Penten-1-ol (HY-W010639). 4-Penten-1-ol is commonly used as a flavor ingredient in various products, including food, beverages, and perfumes, and can also be used as a starting material for the synthesis of various organic compounds, including pharmaceuticals and agrochemicals. In addition, 4-Penten -1-ol has been investigated for its potential use as a biobased solvent due to its low toxicity and biodegradability, and its antimicrobial properties against certain bacteria and fungi, which may make it useful for developing new Antibacterial agents.
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Cat. No.: HY-Y0850U1
CAS No.: 9002-89-5
Synonyms: Polyvinyl alcohol (Mw 61000, 98-99% hydrolyzed, ~1400 polymerization); Poly(Ethenol) (Mw 61000, 98-99% hydrolyzed, ~1400 polymerization)
PVA (Mw 61000, 98-99% hydrolyzed, ~1400 polymerization) is a semicrystalline and biocompatible synthetic polymer with excellent safety properties including non-toxicity, no accumulation, and non-mutagenicity. PVA (Mw 61000, 98-99% hydrolyzed, ~1400 polymerization) undergoes cross-linking via acetal bond formation between hydroxyl and aldehyde groups, and it can be used to prepare highly rigid, low-solubility degradable films as well as for dry or minimally invasive in vitro wound studies. PVA (Mw 61000, 98-99% hydrolyzed, ~1400 polymerization) can construct a hydroxyl-rich microenvironment to trap photogenerated holes, thereby promoting hydrogen peroxide production and enhancing the redox cycle of iron species in the photo-Fenton reaction. PVA (Mw 61000, 98-99% hydrolyzed, ~1400 polymerization) can act as a sacrificial agent and substrate to achieve synchronous degradation with pollutants, and it is applicable to sustainable waste management and water treatment .
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Cat. No.: HY-W110540
CAS No.: 25852-47-5
Poly(ethylene glycol) dimethacrylate (MW 550) is a photopolymerizable poly(ethylene glycol)-based macromer and biocompatible crosslinking agent with a molecular weight of approximately 550. Poly(ethylene glycol) dimethacrylate (MW 550) can form photopolymerized hydrogels. Poly(ethylene glycol) dimethacrylate (MW 550) can be used for research on tissue engineering and drug delivery .
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Cat. No.: HY-W110540A
CAS No.: 25852-47-5
Poly(ethylene glycol) dimethacrylate (MW 750) is a photopolymerizable poly(ethylene glycol)-based macromer and biocompatible crosslinking agent with a molecular weight of approximately 750. Poly(ethylene glycol) dimethacrylate (MW 750) can form photopolymerized hydrogels. Poly(ethylene glycol) dimethacrylate (MW 750) can be used for research on tissue engineering and drug delivery .
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Cat. No.: HY-W110540C
CAS No.: 25852-47-5
Poly(ethylene glycol) dimethacrylate (MW 1000) is a photopolymerizable poly(ethylene glycol)-based macromer and biocompatible crosslinking agent with a molecular weight of approximately 1000. Poly(ethylene glycol) dimethacrylate (MW 1000) can form photopolymerized hydrogels. Poly(ethylene glycol) dimethacrylate (MW 1000) can be used for research on tissue engineering and drug delivery .
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Cat. No.: HY-W110540D
CAS No.: 25852-47-5
Poly(ethylene glycol) dimethacrylate (MW 2000) is a photopolymerizable poly(ethylene glycol)-based macromer and biocompatible crosslinking agent with a molecular weight of approximately 2000. Poly(ethylene glycol) dimethacrylate (MW 2000) can form photopolymerized hydrogels. Poly(ethylene glycol) dimethacrylate (MW 2000) can be used for research on tissue engineering and drug delivery .
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Cat. No.: HY-W110540H
CAS No.: 25852-47-5
Poly(ethylene glycol) dimethacrylate (MW 3400) is a photopolymerizable poly(ethylene glycol)-based macromer and biocompatible crosslinking agent with a molecular weight of approximately 3400. Poly(ethylene glycol) dimethacrylate (MW 3400) can form photopolymerized hydrogels. Poly(ethylene glycol) dimethacrylate (MW 3400) can be used for research on tissue engineering and drug delivery .
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Cat. No.: HY-W110540I
CAS No.: 25852-47-5
Poly(ethylene glycol) dimethacrylate (MW 4000) is a photopolymerizable poly(ethylene glycol)-based macromer and biocompatible crosslinking agent with a molecular weight of approximately 4000. Poly(ethylene glycol) dimethacrylate (MW 4000) can form photopolymerized hydrogels. Poly(ethylene glycol) dimethacrylate (MW 4000) can be used for research on tissue engineering and drug delivery .
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Cat. No.: HY-W110540J
CAS No.: 25852-47-5
Poly(ethylene glycol) dimethacrylate (MW 6000) is a photopolymerizable poly(ethylene glycol)-based macromer and biocompatible crosslinking agent with a molecular weight of approximately 6000. Poly(ethylene glycol) dimethacrylate (MW 6000) can form photopolymerized hydrogels. Poly(ethylene glycol) dimethacrylate (MW 6000) can be used for research on tissue engineering and drug delivery .
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Cat. No.: HY-W110540K
CAS No.: 25852-47-5
Poly(ethylene glycol) dimethacrylate (MW 10000) is a photopolymerizable poly(ethylene glycol)-based macromer and biocompatible crosslinking agent with a molecular weight of approximately 10000. Poly(ethylene glycol) dimethacrylate (MW 10000) can form photopolymerized hydrogels. Poly(ethylene glycol) dimethacrylate (MW 10000) can be used for research on tissue engineering and drug delivery .
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Cat. No.: HY-W110540L
CAS No.: 25852-47-5
Poly(ethylene glycol) dimethacrylate (MW 20000) is a photopolymerizable poly(ethylene glycol)-based macromer and biocompatible crosslinking agent with a molecular weight of approximately 20000. Poly(ethylene glycol) dimethacrylate (MW 20000) can form photopolymerized hydrogels. Poly(ethylene glycol) dimethacrylate (MW 20000) can be used for research on tissue engineering and drug delivery .
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Cat. No.: HY-112624E
CAS No.: 9004-54-0
Synonyms: Dextran 0.8; Dextran D0.8; Dextran T0.8(MW 640-960)
Dextran T0.8 (Dextran 0.8; Dextran T0.8(MW 640-960)) is a food additive with a porous network structure that exhibits strong hydration capacity and low browning activity. Dextran T0.8 (MW 800) can improve the coagulation of dairy products and is used as a prebiotic in baked goods. Dextran T0.8 (MW 800) is non-toxic to HeLa cells at a concentration of ~500 μg/mL and has a low relative browning rate in the Maillard reaction. The Dextran series of compounds are also natural polysaccharide drug carriers that can be connected to drugs through covalent bonding methods such as ester bonds, amide bonds or click chemistry, or self-assembled to form carriers such as nanoparticles and hydrogels. Dextran is biodegradable and biocompatible, and can achieve targeted delivery and controlled release of drugs. Dextran derivatives can prolong the half-life of drugs, increase local concentrations, and reduce the activity of immune clearance .
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