6 Results for "

Enlicitide

" in MedChemExpress (MCE) Product Catalog:
Products (6)

6 Results for "Enlicitide" in MCE Product Catalog:

Cat. No.: HY-P4153
CAS No.: 2407527-16-4
Synonyms: MK-0616 chloride
Target:  

PCSK9

Research Areas:  

Cardiovascular Disease

Enlicitide chloride is an orally active inhibitor for PCSK9 that blocks the interaction between LPL receptor and PSCK9, with an IC50 of 2.5 nM. Enlicitide chloride can be used in the study of cardiovascular diseases such as atherosclerosis, hypercholesterolemia, coronary heart disease, metabolic syndrome, acute coronary syndrome or related cardiovascular and cardiometabolic disorders .
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Cat. No.: HY-P12216
CAS No.: 3115127-25-5
Target:  

Drug Intermediate

Research Areas:  

Metabolic Disease

Enlicitide northern fragment 4 is a key intermediate obtained via the retrosynthetic disconnection of Enlicitide decanoate (HY-W1126955). Enlicitide northern fragment 4 participates in the protecting-group-free biocatalytic convergent assembly of Enlicitide decanoate, an oral macrocyclic peptide PCSK9 inhibitor. Enlicitide northern fragment 4 can be used for the synthesis of Enlicitide decanoate, thereby supporting research related to hypercholesterolemia .
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Cat. No.: HY-W1126955
CAS No.: 2861205-06-1
Synonyms: MK-0616 decanoate
Target:  

PCSK9

Enlicitide (MK-0616) decanoate is an orally active macrocyclic peptide PCSK9 inhibitor. Enlicitide decanoate binds to PCSK9, blocks its interaction with low-density lipoprotein receptor (LDLR), and enhances hepatic clearance of LDL-C. Enlicitide decanoate reduces atherogenic lipoproteins, including non-HDL cholesterol, apolipoprotein B, and lipoprotein (a). Enlicitide decanoate is applicable to research related to hypercholesterolemia, heterozygous familial hypercholesterolemia, and atherosclerotic cardiovascular disease .
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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.