Creative Peptides

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Creative Peptides is specialized in the process development and the manufacturing of bioactive peptides. We are dedicated to offering custom peptide synthesis, process development, GMP manufacturing as well as catalog products for customers in industry and research area. Creative Peptides is staffed by scientific teams with experts in the field of peptide technology, antibodies and synthetic chemistry. Our extensive expertise is translated into high quality products and world-class services to ensure the maximum satisfaction of the customers.

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S3 Fragment, ADF/cofilin Inquiry  | >95%

Creative Peptides

This peptide contains the unique amino-terminal phosphorylation site of Xenopus ADF/cofilin, the LIM kinase (LIMK) phosphorylation site. LIMK1 is a key regulator of the actin cytoskeleton through its phosphorylation of ADF/cofilin at serine-3 for inactivation. This peptide is a fragment of the S3 peptide containing the serine-3 sequence of ADF/cofilin that has been widely used […]

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S961 Inquiry  | >97%

Creative Peptides

S961 is an high-affinity and selective insulin receptor (IR) antagonist with IC50s of 0.048, 0.027, and 630 nM for HIR-A, HIR-B, and human insulin-like growth factor I receptor (HIGF-IR) in SPA-assay, respectively.

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Safracin B Inquiry  | >95%

Creative Peptides

Safracin B, a tetrahydroisoquinoline (THIQ) alkaloid, is a naturally occurring antibiotic from Pseudomonas fluorescens. Safracin B exhibits broad spectrum antimicrobial and strong antitumor activities.

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SAH-SOS1A Inquiry  | >95%

Creative Peptides

SAH-SOS1A is a KRas/son of sevenless 1 (SOS1) interaction inhibitor. SAH-SOS1A binds within nucleotide binding pocket of KRas (Kd values ranges from 106 – 176 nM for wild type KRas and KRas mutants). SAH-SOS1A inhibits nucleotide binding to KRas in a concentration dependent manner.

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Salcaprozate sodium Inquiry  | >95%

Creative Peptides

Salcaprozate sodium (SNAC), an oral absorption promoter, and has the potential as a delivery agent for oral forms of heparin and insulin. Salcaprozate sodium could increase passive transcellular permeation across small intestinal epithelia based on increased lipophilicity arising from non-covalent macromolecule complexation.

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SAP Inquiry  | >95%

Creative Peptides

The sweet arrow peptide (SAP) is derived from the proline-rich N-terminal repetitive domain of gamma-zein, a storage protein of maize which has been shown to interact with membranes.

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