391 Results for "

Delivery systems

" in MedChemExpress (MCE) Product Catalog:
Products (391)

391 Results for "Delivery systems" in MCE Product Catalog:

Cat. No.: HY-116604A
CAS No.: 21314-60-3
Synonyms: PD 139530 hydrochloride
Target:  

PI3K Akt

Research Areas:  

Cancer

RLX (PD 139530) hydrochloride is the hydrochloride of RLX (HY-116604). RLX is a PI3K/Akt/FoxO3a signaling inhibitor, possessing significant therapeutic potential in experimental colon cancer. RLX can effectively modulate the tumor microenvironment, enhancing the efficacy of cancer immunotherapy. RLX demonstrates the ability to improve the retention time of therapeutic agents within the tumor microenvironment by utilizing advanced nanoparticle delivery systems. RLX can be integrated with various treatment modalities, such as chemotherapy and radiotherapy, to enhance overall tumor therapy effectiveness .
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Cat. No.: HY-W002879
CAS No.: 269409-70-3
4-Hydroxyphenylboronic acid pinacol ester is a ROS-responsive component. 4-Hydroxyphenylboronic acid pinacol ester can structurally modify hyaluronic acid to prepare ROS-responsive intelligent nanocarriers and compound delivery systems. 4-Hydroxyphenylboronic acid pinacol ester endows hyaluronic acid-based nanocarriers with ROS responsiveness, enabling them to rapidly release the encapsulated Curcumin (HY-N0005) in the presence of reactive oxygen species. 4-Hydroxyphenylboronic acid pinacol ester is applicable to research related to periodontitis. 4-Hydroxyphenylboronic acid pinacol ester can also be used for the synthesis of boronic acid-modified resins .
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Cat. No.: HY-W1049011
3-Arm PEG2000-SG is a three-armed PEG derivative. The core structure of 3-Arm PEG2000-SG consists of three PEG chains, each terminal of which is modified with a succinimide glutarate (-SG) group. The succinimide glutarate in 3-Arm PEG2000-SG can undergo rapid addition reactions with molecules containing primary amine groups to form stable amide bonds, which can be used in applications such as constructing targeted drug delivery systems and nanoparticle modification.
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Cat. No.: HY-W1049011A
3-Arm PEG5000-SG is a three-armed PEG derivative. The core structure of 3-Arm PEG5000-SG consists of three PEG chains, each terminal of which is modified with a succinimide glutarate (-SG) group. The succinimide glutarate in 3-Arm PEG5000-SG can undergo rapid addition reactions with molecules containing primary amine groups to form stable amide bonds, which can be used in applications such as constructing targeted drug delivery systems and nanoparticle modification.
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Cat. No.: HY-W1049011B
3-Arm PEG10000-SG is a three-armed PEG derivative. The core structure of 3-Arm PEG10000-SG consists of three PEG chains, each terminal of which is modified with a succinimide glutarate (-SG) group. The succinimide glutarate in 3-Arm PEG10000-SG can undergo rapid addition reactions with molecules containing primary amine groups to form stable amide bonds, which can be used in applications such as constructing targeted drug delivery systems and nanoparticle modification.
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Cat. No.: HY-W1049011C
3-Arm PEG20000-SG is a three-armed PEG derivative. The core structure of 3-Arm PEG20000-SG consists of three PEG chains, each terminal of which is modified with a succinimide glutarate (-SG) group. The succinimide glutarate in 3-Arm PEG20000-SG can undergo rapid addition reactions with molecules containing primary amine groups to form stable amide bonds, which can be used in applications such as constructing targeted drug delivery systems and nanoparticle modification.
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Cat. No.: HY-W1049011D
3-Arm PEG40000-SG is a three-armed PEG derivative. The core structure of 3-Arm PEG40000-SG consists of three PEG chains, each terminal of which is modified with a succinimide glutarate (-SG) group. The succinimide glutarate in 3-Arm PEG40000-SG can undergo rapid addition reactions with molecules containing primary amine groups to form stable amide bonds, which can be used in applications such as constructing targeted drug delivery systems and nanoparticle modification.
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Cat. No.: HY-W1049013
Synonyms: 3-Arm PEG2000-N3
3-Arm PEG2000-Azide (3-Arm PEG2000-N3) is a three-armed PEG derivative. The core structure of 3-Arm PEG2000-Azide consists of three PEG chains, each terminal of which is modified with an azide (-N3) group. The azide group in 3-Arm PEG2000-Azide can undergo click chemistry reactions and is used for applications such as constructing targeted drug delivery systems and nanoparticle modification.
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Cat. No.: HY-W1049013A
Synonyms: 3-Arm PEG5000-N3
3-Arm PEG5000-Azide (3-Arm PEG5000-N3) is a three-armed PEG derivative. The core structure of 3-Arm PEG5000-Azide consists of three PEG chains, each terminal of which is modified with an azide (-N3) group. The azide group in 3-Arm PEG5000-Azide can undergo click chemistry reactions and is used for applications such as constructing targeted drug delivery systems and nanoparticle modification.
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Cat. No.: HY-W1049013B
Synonyms: 3-Arm PEG10000-N3
3-Arm PEG10000-Azide (3-Arm PEG10000-N3) is a three-armed PEG derivative. The core structure of 3-Arm PEG10000-Azide consists of three PEG chains, each terminal of which is modified with an azide (-N3) group. The azide group in 3-Arm PEG10000-Azide can undergo click chemistry reactions and is used for applications such as constructing targeted drug delivery systems and nanoparticle modification.
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Cat. No.: HY-W1049013C
Synonyms: 3-Arm PEG20000-N3
3-Arm PEG20000-Azide (3-Arm PEG20000-N3) is a three-armed PEG derivative. The core structure of 3-Arm PEG20000-Azide consists of three PEG chains, each terminal of which is modified with an azide (-N3) group. The azide group in 3-Arm PEG20000-Azide can undergo click chemistry reactions and is used for applications such as constructing targeted drug delivery systems and nanoparticle modification.
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Cat. No.: HY-W1049013D
Synonyms: 3-Arm PEG40000-N3
3-Arm PEG40000-Azide (3-Arm PEG40000-N3) is a three-armed PEG derivative. The core structure of 3-Arm PEG40000-Azide consists of three PEG chains, each terminal of which is modified with an azide (-N3) group. The azide group in 3-Arm PEG40000-Azide can undergo click chemistry reactions and is used for applications such as constructing targeted drug delivery systems and nanoparticle modification.
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Cat. No.: HY-L256
100 compounds

In modern drug discovery and chemical biology research, the azide group (-N3) is an important functional moiety that is widely used in click chemistry, biomolecular labeling, drug delivery systems, and prodrug design due to its unique reactivity and bioorthogonality.

The MCE Azide Structural Compound Library contains 100 compounds featuring -N3 functional groups. It is designed for the construction of click chemistry reaction systems and the subsequent development of functional molecules. This library enables the rapid assembly of targeting ligands, linkers, and functional molecular modules, thereby accelerating PROTAC assembly, optimization of antibody-drug conjugate (ADC) linkers, and the development of biological labeling probes. In addition, the high reaction selectivity and excellent biocompatibility of the azide group allow it to maintain stable reactivity even in complex biological environments, improving controllability and efficiency in drug design. It serves as an indispensable molecular tool in modern medicinal chemistry and chemical biology research.

Cat. No.: HY-142980
CAS No.: 62700-69-0
Synonyms: Dioleoylphosphatidylglycerol
Target:  

Liposome

Research Areas:  

Inflammation/Immunology

DOPG (Dioleoylphosphatidylglycerol) is a negatively charged phosphatidylglycerol phospholipid. DOPG is abundant in prokaryotic cell membranes and mitochondria, and has a low phase transition temperature and a tendency to form stable vesicles. DOPG inhibits the production of inflammatory mediators in macrophages in response to heat shock protein B4 (HSPB4)-activated toll-like receptor 2 (TLR2). DOPG is applicable to studies of membrane biology, drug-membrane interactions (especially in systems targeting negatively charged membranes), construction of drug delivery carriers, as well as research on sterile corneal inflammation and wound healing promotion .
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Cat. No.: HY-158189
CAS No.: 3030629-73-0
TPP-Ce6 is a mitochondria-targeted photosensitizer formed by the ester bond conjugation of chlorophyll e6 (Ce6) with triphenylphosphine (TPP). Under light irradiation or ultrasound exposure, TPP-Ce6 generates reactive oxygen species, induces cell apoptosis, and triggers immunogenic cell death. TPP-Ce6 can serve as a component of carrier-free co-delivery systems, undergo enzyme-induced self-assembly within tumors, and modulate tumor hypoxia. TPP-Ce6 is applicable to research on breast cancer and glioblastoma .
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Cat. No.: HY-B0315A
Synonyms: Biotin-Cyanocobalamin B12
Biotin-Vitamin B12 (Biotin-Cyanocobalamin B12) is the biotinylated Vitamin B12 (HY-B0315). Vitamin B12 is a vitamin that can pass through the blood-brain barrier. Vitamin B12 plays a key role in the normal functioning of the brain and nervous system, and for the formation of blood. Vitamin B12 is beneficial for many inflammatory diseases and also provides protection in oxidative-stress-associated pathologies. Biotin-Vitamin B12 can be used in researches on vitamin B12 transport, cellular uptake, targeted delivery, analytical detection, and other areas .
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Cat. No.: HY-B0633C
CAS No.: 9004-61-9
Hyaluronic acid (Mw: 1000-2000 Da) is a long-chain unbranched polysaccharide with a molecular weight of 1000-2000 Da. Hyaluronic acid (Mw: 2000 Da) inhibits IL-1β expression and increases LC3-II. Hyaluronic acid (Mw: 1000-2000Da) can regulate tissue homeostasis and stress resistance, promote angiogenesis and tissue remodeling. Hyaluronic acid (Mw: 1000-2000 Da) has good biocompatibility and biodegradability, and can be used in drug delivery systems and tissue engineering. Hyaluronic acid (Mw: 2000 Da) can reduce facial skin blemishes and sagging .
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Cat. No.: HY-DY1091
CAS No.: 1461-15-0
Synonyms: Fluorexon (solution)
Calcein (solution) (Fluorexon (solution)) is a fluorescent dye and self-quenching probe, used as an indicator of lipid vesicle leakage, and also as a complexometric indicator for titration of calcium ions with EDTA, and for fluorometric determination of calcium. Calcein cannot directly cross the intact cell membrane of a living cell, unlike Calcein-AM (HY-D0041) which is cell-permeable. Calcein can also be used as a model drug for evaluating efficiency and bioavailability of drug delivery systems .
Solvent and concentration: DMSO: 2 mM
The 1 mL volume is defined as the base specification. All larger sizes correspond to incremental volumes of this base.
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Cat. No.: HY-W1049017
3-Arm PEG2000-NCO is a three-armed PEG derivative. The core structure of 3-Arm PEG2000-NCO consists of three PEG chains, each terminal of which is modified with an isocyanate (-NCO) group. The isocyanate groups in 3-Arm PEG2000-NCO can undergo rapid addition reactions with molecules containing amino (-NH2) or hydroxyl (-OH) groups to form stable carbamate or urea bonds, which can be used in applications such as constructing targeted drug delivery systems and modifying nanoparticles.
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Cat. No.: HY-W1049017A
3-Arm PEG5000-NCO is a three-armed PEG derivative. The core structure of 3-Arm PEG5000-NCO consists of three PEG chains, each terminal of which is modified with an isocyanate (-NCO) group. The isocyanate groups in 3-Arm PEG5000-NCO can undergo rapid addition reactions with molecules containing amino (-NH2) or hydroxyl (-OH) groups to form stable carbamate or urea bonds, which can be used in applications such as constructing targeted drug delivery systems and modifying nanoparticles.
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