23 Results for "

chemical delivery system

" in MedChemExpress (MCE) Product Catalog:
Products (23)

23 Results for "chemical delivery system" in MCE Product Catalog:

9
9 Cited Publications
Cat. No.: HY-Y0623
CAS No.: 6066-82-6
Synonyms: HOSu; 1-Hydroxy-2,5-pyrrolidinedione
N-Hydroxysuccinimide (HOSu; 1-Hydroxy-2,5-pyrrolidinedione) is a covalent crosslinker commonly used in bioconjugation technology with a primary amine group. N-Hydroxysuccinimide reacts with amino groups (-NH2) to form a stable amide bond, which can modify amino-containing biomolecules. N-Hydroxysuccinimide can be used, for example, for protein labeling with fluorescent dyes and enzymes, surface activation of chromatography supports, microbeads, nanoparticles and microarray slides, and chemical synthesis of peptides. N-Hydroxysuccinimide has a wide range of applications in biomaterial synthesis (such as collagen, chitosan crosslinking), drug delivery systems (such as hydrogel preparation) and tissue engineering .
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Cat. No.: HY-115415
CAS No.: 108321-18-2
Purity:  ≥98.0%
Target:  

Liposome

Research Areas:  

Others

1,2-Distearoyl-sn-glycero-3-phosphate, sodium salt is a phospholipid commonly used as a component of liposome formulations and drug delivery systems. 1,2-Distearoyl-sn-glycero-3-phosphate, sodium salt has unique chemical properties that make it an effective tool for encapsulating drugs and delivering them to specific targets in the body. It acts as a stabilizer and emulsifier, which can improve the solubility and bioavailability of drugs.
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Cat. No.: HY-W105639A
CAS No.: 865717-20-0
Synonyms: Calcium lactate pentahydrate, meets USP testing specifications
Calcium L-lactate pentahydrate, meets USP testing specifications (Calcium lactate pentahydrate, meets USP testing specifications) is a biochemical reagent and serves as one of the important sources of calcium. Compared to other organic calcium salts, Calcium L-lactate pentahydrate, meets USP testing specifications exhibits excellent solubility and bioavailability. Calcium L-lactate pentahydrate, meets USP testing specifications possesses remarkable moisture resistance, thermal stability, and chemical stability and can be used in medical implants and drug delivery systems .
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Cat. No.: HY-106828
CAS No.: 103562-82-9
Synonyms: Estradiol 17-Dihydrotrigonelline
Target:  

Estrogen Receptor/ERR

Research Areas:  

Metabolic Disease

E2-CDS (Estradiol 17-Dihydrotrigonelline) is a redox-based chemical delivery system for estradiol (E2). E2-CDS is capable of sustained and brain-selective delivery of estradiol .
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Cat. No.: HY-132397S
CAS No.: 1246819-29-3
Phenylephrone-d3 (hydrochloride) is a deuterium labeled Phenylephrone hydrochloride. Phenylephrone hydrochloride can be used for the phenylephrone chemical delivery systems as safe and effective mydriatic agents .
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Cat. No.: HY-125619
CAS No.: 19191-91-4
Purity:  99.86%
Target:  

Liposome

Research Areas:  

Others

1,2-dioctanoyl-sn-glycero-3-phosphocholine, is a phospholipid commonly used as a component of liposome formulations and drug delivery systems. 1,2-dioctanoyl-sn-glycero-3-phosphocholine has unique chemical properties that allow it to form stable bilayers and vesicles, allowing drug encapsulation and delivery to specific targets in the body. It acts as a stabilizer and emulsifier, which can improve the solubility and bioavailability of drugs.
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Cat. No.: HY-183019
mPEG300-Mannose is a polymeric derivative formed by the chemical coupling of methoxy polyethylene glycol (mPEG) and mannose. mPEG300-Mannose combines the biocompatibility of polyethylene glycol with the specificity of mannose in biorecognition, and is widely used in fields such as biomaterial modification and targeted delivery systems.
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Cat. No.: HY-183019A
mPEG500-Mannose is a polymeric derivative formed by the chemical coupling of methoxy polyethylene glycol (mPEG) and mannose. mPEG500-Mannose combines the biocompatibility of polyethylene glycol with the specificity of mannose in biorecognition, and is widely used in fields such as biomaterial modification and targeted delivery systems.
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Cat. No.: HY-183019B
mPEG550-Mannose is a polymeric derivative formed by the chemical coupling of methoxy polyethylene glycol (mPEG) and mannose. mPEG550-Mannose combines the biocompatibility of polyethylene glycol with the specificity of mannose in biorecognition, and is widely used in fields such as biomaterial modification and targeted delivery systems.
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Cat. No.: HY-183019C
mPEG750-Mannose is a polymeric derivative formed by the chemical coupling of methoxy polyethylene glycol (mPEG) and mannose. mPEG750-Mannose combines the biocompatibility of polyethylene glycol with the specificity of mannose in biorecognition, and is widely used in fields such as biomaterial modification and targeted delivery systems.
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Cat. No.: HY-183019D
mPEG1000-Mannose is a polymeric derivative formed by the chemical coupling of methoxy polyethylene glycol (mPEG) and mannose. mPEG1000-Mannose combines the biocompatibility of polyethylene glycol with the specificity of mannose in biorecognition, and is widely used in fields such as biomaterial modification and targeted delivery systems.
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Cat. No.: HY-183019E
mPEG2000-Mannose is a polymeric derivative formed by the chemical coupling of methoxy polyethylene glycol (mPEG) and mannose. mPEG2000-Mannose combines the biocompatibility of polyethylene glycol with the specificity of mannose in biorecognition, and is widely used in fields such as biomaterial modification and targeted delivery systems.
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Cat. No.: HY-183019H
mPEG5000-Mannose is a polymeric derivative formed by the chemical coupling of methoxy polyethylene glycol (mPEG) and mannose. mPEG5000-Mannose combines the biocompatibility of polyethylene glycol with the specificity of mannose in biorecognition, and is widely used in fields such as biomaterial modification and targeted delivery systems.
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Cat. No.: HY-183019I
mPEG10000-Mannose is a polymeric derivative formed by the chemical coupling of methoxy polyethylene glycol (mPEG) and mannose. mPEG10000-Mannose combines the biocompatibility of polyethylene glycol with the specificity of mannose in biorecognition, and is widely used in fields such as biomaterial modification and targeted delivery systems.
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Cat. No.: HY-183019J
mPEG20000-Mannose is a polymeric derivative formed by the chemical coupling of methoxy polyethylene glycol (mPEG) and mannose. mPEG20000-Mannose combines the biocompatibility of polyethylene glycol with the specificity of mannose in biorecognition, and is widely used in fields such as biomaterial modification and targeted delivery systems.
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Cat. No.: HY-183019K
mPEG30000-Mannose is a polymeric derivative formed by the chemical coupling of methoxy polyethylene glycol (mPEG) and mannose. mPEG30000-Mannose combines the biocompatibility of polyethylene glycol with the specificity of mannose in biorecognition, and is widely used in fields such as biomaterial modification and targeted delivery systems.
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Cat. No.: HY-183015
Mannose-PEG1000-NH2 is composed of mannose, PEG chains, and terminal amino groups (–NH2). Mannose-PEG-NH2 combines the targeting recognition ability of mannose with the chemical modifiability of amino groups, making it suitable for applications such as targeted drug delivery systems and nanoparticle modification.
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Cat. No.: HY-183015A
Mannose-PEG2000-NH2 is composed of mannose, PEG chains, and terminal amino groups (–NH2). Mannose-PEG-NH2 combines the targeting recognition ability of mannose with the chemical modifiability of amino groups, making it suitable for applications such as targeted drug delivery systems and nanoparticle modification.
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Cat. No.: HY-183015B
Mannose-PEG3400-NH2 is composed of mannose, PEG chains, and terminal amino groups (–NH2). Mannose-PEG-NH2 combines the targeting recognition ability of mannose with the chemical modifiability of amino groups, making it suitable for applications such as targeted drug delivery systems and nanoparticle modification.
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Cat. No.: HY-183015C
Mannose-PEG5000-NH2 is composed of mannose, PEG chains, and terminal amino groups (–NH2). Mannose-PEG-NH2 combines the targeting recognition ability of mannose with the chemical modifiability of amino groups, making it suitable for applications such as targeted drug delivery systems and nanoparticle modification.
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