PEPTIDE NOVA
TIRZ 15MG
$289.99 Original price was: $289.99.$139.99Current price is: $139.99.
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Description
Product Overview
Tirzepatide is a synthetic peptide compound frequently referenced in scientific literature and studied in peptide research examining endocrine signaling systems and metabolic regulatory pathways. Within controlled laboratory and preclinical research environments, this peptide is investigated for its interaction with receptor-mediated signaling mechanisms, intracellular signaling pathways, and molecular communication networks associated with peptide signaling.
As a laboratory peptide compound, tirzepatide is utilized in experimental research to study receptor binding interactions, peptide stability, and molecular regulatory processes. Researchers focus on its peptide molecular structure and receptor interaction characteristics to understand complex peptide signaling networks in experimental research models.
WHAT IS TIRZEPATIDE
Tirzepatide is a synthetic peptide analog developed for scientific investigation of peptide-mediated endocrine signaling pathways. It is classified as a dual receptor signaling peptide analog, designed to interact with specific receptor systems involved in metabolic and hormonal regulation.
In laboratory research contexts, tirzepatide is studied due to its interaction with receptors associated with glucose-dependent insulinotropic polypeptide (GIP) and glucagon-like peptide-1 (GLP-1) signaling pathways. These endocrine signaling pathways are examined in experimental models to analyze molecular mechanisms of metabolic and hormonal communication.
Key Research Areas
Scientific literature references tirzepatide in several laboratory peptide research areas, including:
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peptide signaling pathways
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endocrine signaling peptide activity
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receptor binding interactions
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metabolic pathway research
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cell signaling research
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molecular signaling mechanisms
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peptide-receptor interaction studies
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intracellular signaling pathway analysis
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peptide stability and structural activity
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laboratory peptide characterization
These research areas are explored in preclinical and controlled laboratory research models.
Molecular Structure & Scientific Profile
Compound Name: Tirzepatide
Peptide Classification: Synthetic dual receptor signaling peptide analog
Molecular Formula: C225H348N48O68
Molecular Weight: ~4813 g/mol
Amino Acid Sequence: Synthetic multi-amino-acid peptide sequence engineered for receptor interaction studies
CAS Number: 2023788-19-2 (referenced in scientific literature)
Tirzepatide is a synthetic peptide composed of a multi-amino-acid sequence designed to interact with endocrine receptor signaling systems. Its peptide molecular structure includes engineered modifications to enhance receptor-binding stability and structural integrity for laboratory research.
Scientific Research Context
Scientific literature has explored tirzepatide in experimental and preclinical research investigating endocrine signaling pathways and metabolic regulatory systems. Studies focus on receptor-mediated signaling mechanisms and molecular communication networks associated with peptide-mediated regulation.
In experimental research models, tirzepatide has been examined in studies related to metabolic signaling pathways, endocrine regulatory systems, and GLP-1/GIP receptor-mediated signaling research models. These investigations are conducted in controlled laboratory and preclinical environments to examine peptide signaling interactions and molecular regulatory mechanisms.
Product Specifications
Compound Name: Tirzepatide
Peptide Classification: Synthetic dual receptor signaling peptide analog
Format: Lyophilized Powder
Quantity: 15MG
Research Category: Peptide research / endocrine signaling research / metabolic pathway research
Storage Recommendations: Store under refrigerated laboratory conditions in a cool, dry environment protected from light and moisture. Long-term storage under controlled laboratory conditions is recommended.
Research Disclaimer
Research Use Only. Not for human or veterinary use. Not approved by the FDA and not intended to diagnose, treat, cure, or prevent any disease.
Links To Research Studies
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