322 Results for "

linear

" in MedChemExpress (MCE) Product Catalog:
Products (322)

322 Results for "linear" in MCE Product Catalog:

Cat. No.: HY-184414B
Research Areas:  

Cancer

BMS-135-L-Lys dihydrochloride is a dual-cation prodrug derived from CK2 inhibitor BMS-135 (HY-181022) through esterification with L-lysine using a secondary alcohol. BMS-135-L-Lys dihydrochloride achieves enhanced solubility by maintaining protonation of the ε-amino group of the Lys side chain at intestinal pH. BMS-135-L-Lys dihydrochloride is released in situ by intestinal wall esterase from the parent drug, significantly increasing the oral bioavailability of the parent drug and overcoming the non-linear pharmacokinetic problem when the dose of the parent drug is increased. BMS-135-L-Lys dihydrochloride can be used in related research on colon cancer and lung cancer .
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Cat. No.: HY-P5520
CAS No.: 2413262-74-3
GB-6 is a short linear peptide that targets the gastrin releasing peptide receptor (GRPR). GRPR is overexpressed in pancreatic cancer. Based on the tumor selectivity and tumor-specific accumulation properties of GB-6, GB-6 labeled with near infrared (NIR) fluorescent dyes or radionuclide netium-99m (99mTc) can be used as a high-contrast imaging probe. GB-6 has excellent in vivo stability, with tumor to pancreatic and intestinal fluorescence signal ratios of 5.2 and 6.3, respectively, in SW199 0 subcutaneous xenograft models. GB-6 can rapidly target tumors and accurately delineate tumor boundaries, which has broad application prospects .
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Cat. No.: HY-E0224
compounds
0.5 mL Storage Tube, Three-Code Tube, External Thread with Screw Cap, Compatible with SBS- 96-Well Racks. This product is made from high-quality PP material, suitable for ultra-low temperature storage, with excellent weather resistance. Free from DNase and RNase, and can be sterilized by irradiation. The bottom of the tube features a unique QR code, while the side wall has a 1D linear barcode and directly readable numeric code, all three codes are identical and unique. The codes are laser-etched, scratch-resistant, not easy to fall off, and have high contrast for easy reading. The accompanying tube rack (HY-E0225) is made of the same material as the tube, effectively preventing uneven expansion issues during freeze-thaw cycles.
Cat. No.: HY-B0696AR
CAS No.: 145821-59-6
Synonyms: NO050328 hydrochloride (Standard); NO328 hydrochloride (Standard); TGB hydrochloride (Standard)
Research Areas:  

Neurological Disease

Tiagabine (hydrochloride) (Standard) is the analytical standard of Tiagabine (hydrochloride). This product is intended for research and analytical applications. Tiagabine hydrochloride (NO050328; NO328; TGB) is an orally active, highly selective, and reversible GAT-1 inhibitor and anticonvulsant that crosses the blood-brain barrier. By blocking the reuptake of GABA in neurons and glial cells, tiagabine increases extracellular GABA levels to enhance inhibitory signal transduction, thereby exerting multiple activities such as anticonvulsant, neuroprotective, and antioxidant effects. Tiagabine hydrochloride exhibits linear pharmacokinetic properties. Although it is metabolized by CYP3A and has a high protein binding rate, it carries a low risk of cognitive impairment. Tiagabine hydrochloride is widely used in research on related diseases including epilepsy (including refractory partial seizures), alcohol withdrawal symptoms, and Huntington's disease .
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Cat. No.: HY-B0696AS
Synonyms: NO050328-d4 hydrochloride; NO328-d4 hydrochloride; TGB-d4 hydrochloride
Tiagabine-d4 hydrochloride is deuterated labeled Tiagabine hydrochloride (HY-B0696A). Tiagabine hydrochloride (NO050328; NO328; TGB) is an orally active, highly selective, and reversible GAT-1 inhibitor and anticonvulsant that crosses the blood-brain barrier. By blocking the reuptake of GABA in neurons and glial cells, tiagabine increases extracellular GABA levels to enhance inhibitory signal transduction, thereby exerting multiple activities such as anticonvulsant, neuroprotective, and antioxidant effects. Tiagabine hydrochloride exhibits linear pharmacokinetic properties. Although it is metabolized by CYP3A and has a high protein binding rate, it carries a low risk of cognitive impairment. Tiagabine hydrochloride is widely used in research on related diseases including epilepsy (including refractory partial seizures), alcohol withdrawal symptoms, and Huntington's disease .
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Cat. No.: HY-B0696S
CAS No.: 1217672-34-8
Synonyms: NO050328-d6; NO328-d6; TGB-d6
Tiagabine-d6 (NO050328-d6) is deuterium labeled Tiagabine. Tiagabine (NO050328; NO328; TGB) is an orally active, highly selective, and reversible GAT-1 inhibitor and anticonvulsant that crosses the blood-brain barrier. By blocking the reuptake of GABA in neurons and glial cells, tiagabine increases extracellular GABA levels to enhance inhibitory signal transduction, thereby exerting multiple activities such as anticonvulsant, neuroprotective, and antioxidant effects. Tiagabine exhibits linear pharmacokinetic properties. Although it is metabolized by CYP3A and has a high protein binding rate, it carries a low risk of cognitive impairment. Tiagabine is widely used in research on related diseases including epilepsy (including refractory partial seizures), alcohol withdrawal symptoms, and Huntington's disease .
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Cat. No.: HY-B0696S1
Synonyms: NO050328-d4; NO328-d4; TGB-d4
Tiagabine-d4 (NO050328-d4) is deuterium labeled Tiagabine. Tiagabine (NO050328; NO328; TGB) is an orally active, highly selective, and reversible GAT-1 inhibitor and anticonvulsant that crosses the blood-brain barrier. By blocking the reuptake of GABA in neurons and glial cells, tiagabine increases extracellular GABA levels to enhance inhibitory signal transduction, thereby exerting multiple activities such as anticonvulsant, neuroprotective, and antioxidant effects. Tiagabine exhibits linear pharmacokinetic properties. Although it is metabolized by CYP3A and has a high protein binding rate, it carries a low risk of cognitive impairment. Tiagabine is widely used in research on related diseases including epilepsy (including refractory partial seizures), alcohol withdrawal symptoms, and Huntington's disease .
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Cat. No.: HY-D3086
CAS No.: 1668565-72-7
Target:  

Fluorescent Dye

Research Areas:  

Cancer

Mito-polarity is a mitochondria-targeted polarity probe. Mito-polarity can be used to detect mitochondrial polarity. The detection mechanism of Mito-polarity is based on an intramolecular charge transfer (ICT) system designed with a donor-π-bridge-acceptor (D-π-A) structure. Among them, the 467 nm green emission generated by the Coumarin (HY-N0709) structure is extremely sensitive to polarity changes, while the 642 nm red emission produced by the extended π-conjugation and ICT effect between the Coumarin and benzothiazine structures shows only a weak response, thus forming a ratiometric fluorescence response that is linearly correlated with solvent polarity. When Mito-polarity is excited at 405 nm in methanol, its excitation/emission wavelengths are Ex/Em = 405/467 nm and Ex/Em = 405/642 nm, with maximum absorption wavelengths of 426 nm and 561 nm .
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Cat. No.: HY-P11909
Research Areas:  

Infection

3-WP is a linear 20-peptide with a C-terminal amidation modification. 3-WP acts on lipoteichoic acid (LTA) and disrupts cell wall permeability, induces intracellular reactive oxygen species (ROS) accumulation in a dose-dependent manner, and simultaneously inhibits respiratory chain dehydrogenase activity and intracellular ATP synthesis, thereby interfering with bacterial energy metabolism and exerting Bacterial antibacterial effects. The combination of 3-WP and Melittin (HY-P0233) exerts synergistic antibacterial effects against Gram-positive bacteria, reduces the required dosage of Melittin, and thus improves the cell selectivity of Melittin. 3-WP can serve as a peptide adjuvant for Melittin in food storage scenarios. 3-WP can be used in the research of foodborne diseases caused by methicillin-resistant Staphylococcus aureus .
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Cat. No.: HY-Y1010R
CAS No.: 556-52-5
Synonyms: Glycidol (Standard)
Research Areas:  

Cancer

Oxiran-2-ylmethanol (Standard) is the analytical standard of Oxiran-2-ylmethanol (Glycidol) (HY-Y1010). This product is intended for research and analytical applications. Oxiran-2-ylmethanol is an ester product. Oxiran-2-ylmethanol induces base pair point mutations in bacterial strains and structural chromosome aberrations in cultured cells. Oxiran-2-ylmethanol forms N-(2,3-dihydroxypropyl)valine hemoglobin adducts. Oxiran-2-ylmethanol acts as an animal carcinogen but does not significantly induce micronucleated immature erythrocytes in animal bone marrow. Oxiran-2-ylmethanol enables anionic polymerization to produce linear poly(glycidol). Oxiran-2-ylmethanol can be used for cancer-related research .
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Cat. No.: HY-Y1010S
CAS No.: 1246819-20-4
Synonyms: Glycidol-d5
Oxiran-2-ylmethanol-d5 is the deuterium labeled Oxiran-2-ylmethanol (Glycidol) (HY-Y1010). Oxiran-2-ylmethanol is an ester product. Oxiran-2-ylmethanol induces base pair point mutations in bacterial strains and structural chromosome aberrations in cultured cells. Oxiran-2-ylmethanol forms N-(2,3-dihydroxypropyl)valine hemoglobin adducts. Oxiran-2-ylmethanol acts as an animal carcinogen but does not significantly induce micronucleated immature erythrocytes in animal bone marrow. Oxiran-2-ylmethanol enables anionic polymerization to produce linear poly(glycidol). Oxiran-2-ylmethanol can be used for cancer-related research .
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Cat. No.: HY-W250169
CAS No.: 84133-50-6
Secondary alcohol polyoxyethylene ether is a sedimentation accelerator. Secondary alcohol polyoxyethylene ether improves the sedimentation performance of carbon black, iron powder, grinding wheel dust and their mixtures in fully synthetic grinding fluids. Secondary alcohol polyoxyethylene ether is compatible with anionic surfactants and does not have a negative impact on the rust prevention of parts .
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Cat. No.: HY-187155
CAS No.: 158778-21-3
Target:  

PI3K

Research Areas:  

Others

Cyclo (Gly-{Tyr (PO3H2)-Val-Pro-Met-Leu) is a binding peptide for the PI3K SH2 domain, as well as an inhibitory peptide for the mitogenic signal transduction-mediating domain. Cyclo (Gly-{Tyr (PO3H2)}-Val-Pro-Met-Leu) binds to the SH2 domain of the phosphorylated PI3K p85 subunit, and the spatial arrangement of its phosphotyrosine residue and methionine residue is associated with this interaction .
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Cat. No.: HY-D3003
CAS No.: 2522921-17-9
M-H2S is an endoplasmic reticulum-targeted ratio-type near-infrared fluorescent probe (Ex/Em : 480 nm/560 nm) specifically designed for the detection of hydrogen sulfide (H2S) in living cells and zebrafish. M-H2S exhibits detection limit for H2S of 39.1 nM, and the fluorescence intensity ratio (F₆₅₀/F₅₆₀) within the range of 0-40 μM shows a linear relationship with the H2S concentration. M-H2S responds best under pH = 7.2 (the normal physiological pH of the endoplasmic reticulum) conditions, making it suitable for the detection of the microenvironment of the endoplasmic reticulum. M-H2S can be used to study the role of H2S in endoplasmic reticulum function, stress response, and related diseases .
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Cat. No.: HY-D3106
CAS No.: 2659241-66-2
Target:  

Fluorescent Dye

Research Areas:  

Others

Lys-VBOD is a Fluorescent probe for lysosomal viscosity monitoring and live cell imaging. Its detection mechanism depends on viscosity: increased viscosity restricts the twisting of the double bond between the indole and BODIPY fluorophore, as well as the rotation of the single bond between quinoline and BODIPY, which reduces non-radiative decay and leads to enhanced fluorescence intensity in high viscosity environments; it also features a morpholine group that provides lysosome-targeting properties, allowing it to localize to lysosomes for viscosity detection. The probe has excitation/emission wavelengths of Ex/Em = 602/637 nm, and its fluorescence intensity shows a good linear relationship with log-transformed viscosity values. Lys-VBOD is stable across a wide pH range of 5.35 to 10.74, is not affected by macromolecules and proteins like BSA, has a fluorescence lifetime that increases with viscosity, and can visualize real-time lysosomal viscosity changes in live cells under Dexamethasone (HY-14648) stimulation[1].
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Cat. No.: HY-W127434A
CAS No.: 1466461-81-3
Synonyms: (12R)-Octadecane-1,12-diol
Research Areas:  

Others

(12R)-1,12-Octadecanediol ((12R)-Octadecane-1,12-diol) is a compound characterized by a linear chain of 18 carbon atoms with two hydroxyl groups (C18H38O2). This colorless substance has unique properties owing to the presence of two hydroxyl groups in its molecular structure. Whether derived from natural sources or synthesized chemically, 12-Octadecanediol finds applications in various industries. It is often utilized in the formulation of cosmetics, personal care products, and pharmaceuticals due to its emollient properties, enhancing moisturization and conditioning effects in different formulations. The compound's distinctive structure may make it suitable for specific uses in research or industrial processes. In industrial contexts, 12-Octadecanediol serves as a valuable chemical intermediate for synthesizing other compounds. Its specialized structure and adaptability in formulations make it a significant component across diverse industries, contributing to the development of products for various purposes.
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Cat. No.: HY-L258
437 compounds

In modern medicinal chemistry and chemical biology research, alkyne (-C≡C-) structures play an important role in click chemistry, bioorthogonal labeling, and the construction of functional molecules due to their unique linear geometry and high reactivity. In particular, driven by the development of copper-catalyzed azide-alkyne cycloaddition (CuAAC) and copper-free click reactions (SPAAC), terminal alkyne groups have become important “chemical handles” for building complex biomolecular systems.

The MCE Alkyne Compound Library contains 437 compounds designed for the construction of click chemistry reaction systems and the development of diverse functional molecules. In drug discovery, these structures serve as key reactive sites that can efficiently undergo click reactions with azide groups, enabling modular assembly of PROTAC molecules, construction of ADC linkers, and rapid synthesis of bioorthogonal labeling probes. In addition, alkyne groups exhibit high stability, mild reaction conditions, and excellent biocompatibility, allowing them to maintain reactivity in complex biological environments. This contributes to improved efficiency and controllability in drug development, making them indispensable chemical building blocks in modern drug design and functional molecular engineering.

Cat. No.: HY-LD005
1.2 billion compounds

Cyclic peptide library have advantages such as high affinity, high selectivity, and suitability for targeting protein–protein interactions. Through DEL synthesis technology, the library size can achieve hundreds of millions. DEL cyclic peptide library have advantages like low cost andhigh screeing efficiency, making them valuable for discovering lead compounds against challenging drug targets.

This cyclic peptide library is constructed with unnatural amino acids as building block, synthesized through DNA-compatible chemical reactions. Each cyclic peptide consist of six amino acids and constrained conformations such as side-chain cross-linking, disulfide bonds, and macrocyclization. These cyclic peptides exhibit significantly improved stability and druggability compared with linear peptides, filling the gap between small molecules and macromolecular biologics. Each cyclic peptide is uniquely conjugated to a DNA barcode sequence for molecular identification and sequencing decoding.

MCE’s cyclic peptide library has8 independent sub-libraries, with a total molecular diversity of 1.2 billion. It is constructed via multi-round combinatorial assembly of building blocks and diverse cyclization strategies, facilitating the discovery of cyclic peptide leads for undruggable targets.

Cat. No.: HY-P5415
CAS No.: 127134-13-8
Target:  

HIV

Research Areas:  

Others

DABCYL-GABA-Ser-Gln-Asn-Tyr-Pro-Ile-Val-Gln-EDANS is a biological active peptide. (DABCYL-GABA-Ser-Gln-Asn-Tyr-Pro-Ile-Val-Gln-EDANS is also called HIV protease substrate I in some literature. It is widely used for the continuous assay for HIV protease activity. The 11-Kd protease (PR) encoded by the human immunodeficiency virus 1 (HIV-1) is essential for the correct processing of viral polyproteins and the maturation of infectious virus, and is therefore a target for the design of selective acquired immunodeficiency syndrome (AIDS) therapeutics. The FRET-based fluorogenic substrate is derived from a natural processing site for HIV-1 PR. Incubation of recombinant HIV-1 PR with the fluorogenic substrate resulted in specific cleavage at the Tyr-Pro bond and a time-dependent increase in fluorescence intensity that is linearly related to the extent of substrate hydrolysis. The fluorescence quantum yields of the HIV-1 PR substrate in the FRET assay increased by 40.0- and 34.4-fold, respectively, per mole of substrate cleaved. Because of its simplicity and precision in the determination of reaction rates required for kinetic analysis, this substrate offers many advantages over the commonly used HPLC or electrophoresis-based assays for peptide substrate hydrolysis by retroviral PRs. Abs/Em = 340nm/490nm.)
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Cat. No.: HY-L951
505 compounds

Macrocyclic scaffolds are increasingly valued in modern drug discovery for their exceptional activity against undruggable targets (proteases, kinases, PPIs). 2026 marks a key commercial breakthrough for oral macrocyclic peptides: enlicitide, the world’s first oral PCSK9 macrocyclic peptide, has received FDA approval. Macrocyclic candidates targeting KRAS and other classic undruggable targets have also entered clinical development, validating macrocyclization as an effective strategy to overcome druggability barriers.

Two core R&D directions lead current macrocyclic drug design: AI-driven de novo generation and structural optimization of small-molecule macrocycles, and macrocyclic peptides based on sequence design and conformational engineering. Macrocycle druggability hinges on embedded linkers, which determine cyclization efficiency, final conformation and drug-like properties. Bifunctional reaction orthogonality is the core linker selection criterion. Our linker library enables stepwise intramolecular cyclization with suppressed side reactions, accommodates varied ring sizes, and covers three key reaction systems: amide condensation, nucleophilic substitution and CuAAC click chemistry.

Built on classical macrocyclization systems, the library is processed through reaction classification, bifunctional orthogonality evaluation, novelty clustering and redundancy removal, with PROTAC long-chain and ADC cleavable linkers explicitly excluded. Featuring rigid, semi-rigid and flexible scaffolds, it is widely applicable to small-molecule macrocycle synthesis and linear peptide cyclization.