Emfilermin

Emfilermin represents an incredible advancement in the realm of dermatology. With its profound efficacy, this marvel product triumphs over the multifarious challenges posed by psoriasis and eczema. Propelling the healing process through its remarkable growth factor attributes, Emfilermin showcases its unrivaled potential.

Designed for biological research and industrial applications, not intended for individual clinical or medical purposes.

CAT No: R1988

CAS No:159075-60-2

Custom Peptide Synthesis
cGMP Peptide
  • Registration of APIs
  • CMC information required for an IND
  • IND and NDA support
  • Drug master files (DMF) filing
M.F/Formula
C884H815N245O251S7
M.W/Mr.
19110.84

Emfilermin is a synthetic peptide compound designed to mimic and modulate specific biological activities associated with endogenous growth factors. As a chemically defined peptide, it is structurally optimized for stability and functional interaction with cellular targets, making it a valuable tool in the study of peptide-mediated signaling pathways. Its unique sequence and bioactive properties have positioned it as a relevant agent in peptide research, particularly in contexts where controlled stimulation or inhibition of cell proliferation and differentiation is required. The compound's precise mechanism of action and well-characterized structure offer researchers a consistent and reproducible platform for exploring peptide-driven cellular responses.

Peptide-based signaling research: Emfilermin serves as an important reagent for dissecting the molecular mechanisms underlying peptide-mediated signal transduction. Its ability to engage with specific cell surface receptors enables researchers to investigate downstream effects on pathways such as MAPK, PI3K/Akt, and other cascades central to cell growth and survival. Utilizing this peptide in in vitro systems allows for the controlled study of receptor activation, phosphorylation events, and transcriptional responses, providing insights into the regulatory networks that govern cellular behavior.

Cell proliferation and differentiation studies: The compound is frequently employed in experimental models to assess its impact on cell cycle progression and lineage commitment. By incorporating emfilermin into cell culture assays, scientists can evaluate changes in proliferation rates, differentiation markers, and cellular morphology. Such studies are essential for elucidating the role of peptide growth factors in tissue development, regeneration, and maintenance, as well as for optimizing culture conditions in basic and applied research settings.

Peptide synthesis and structure-activity relationship (SAR) analysis: As a synthetic peptide, emfilermin is a valuable standard in the optimization of solid-phase peptide synthesis protocols and analytical techniques such as HPLC and mass spectrometry. Its defined sequence and bioactivity make it suitable for SAR studies, where systematic modifications are introduced to probe the relationship between structural features and biological function. These investigations contribute to the rational design of novel peptide analogs with enhanced stability, receptor selectivity, or therapeutic potential for research applications.

Biomaterials and tissue engineering research: The incorporation of emfilermin into biomaterial scaffolds or hydrogels is an area of active investigation, particularly in the context of promoting cell attachment, proliferation, and matrix deposition. Its bioactive properties can be harnessed to modulate the local microenvironment in engineered tissues, providing cues that guide cell behavior and tissue organization. Such strategies are instrumental in advancing the development of functional biomaterials for regenerative medicine research and in vitro tissue modeling.

High-throughput screening and assay development: In the context of drug discovery and functional genomics, emfilermin can be utilized as a positive control or reference compound in high-throughput screening platforms. Its reproducible activity profile supports the validation of assay performance and facilitates the identification of novel modulators of peptide signaling pathways. The use of well-characterized peptides in assay development enhances data reliability and accelerates the translation of screening hits into actionable research leads.

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