TIRZ 40MG

TIRZ 40MG

$225.00

Out of Stock

FOR LAB RESEARCH USE ONLY. NOT FOR HUMAN OR ANIMAL CONSUMPTION

Out of stock

SKU: PP-TRZ40 Category:

FOR LABORATORY RESEARCH

PP-2TIRZ is a high-purity research compound intended for controlled laboratory use. Researchers work with this material in in-vitro setting where consistency, documentation, and stable handling are essential. Each batch is produced and verified to support structured research workflows. Researchers study this compound to examine receptor-related signaling behavior at the molecular level in non-clinical research models.  Scientists work with this material to observer signaling activity and molecular interactions under defined experimental conditions. As a result, laboratories rely on this research compound in studies where repeatability, documentation, and data comparison are important.

Compounding Formulation and Laboratory Handling

This research compound is supplied as a stable, freeze-dried powder intended for laboratory preparation. Researchers choose this format because it supports compound stability and flexible handling within research protocols. In addition, lyophilized material helps reduce variability during storage and transport.

Before experimental use, laboratories reconstitute the powder according to internal procedures and standard laboratory practice. Careful preparation helps maintain material integrity and supports reliable results across repeated studies.

For storage, laboratories should keep the dry material in a cool, dry place away from direct sunlight. Using proper storage conditions help to preserve stability of SP-2TIRZ during and throughout the research period.

Quality Standards for Research Compounds

Every batch of PP-2TIRZ meets rigorous pharmaceutical-grade standards to support consistency and reliability in research. Independent testing and batch documentation allow researchers to review material specifications prior to each use. Every shipment includes a Certificate of Analysis (COA) upon request, that support documented laboratory research and batch verification.

Key Benefits of Peptides in Research

  • Supports precise investigation of cellular signaling pathways
  • Enables targeted structure-functioning research at a molecular level
  • They offer high specificity for controlled experimental design
  • Adapt easily across a wide range of research applications
  • Aid in studying protein interactions and biological responses
  • Allow repeatable and consistent laboratory testing
  • Integrates well within moderna analytical and research methods
  • Serves as foundational tools in biochemical and molecular reserach

What is PP-2TIRZ? 

It is a synthetic dual agonist peptide analog designed to interact with two metabolic receptor pathways, the glucagon-like peptide 1(PP-1) receptor and glucose-dependent insulinotropic polypeptide (GIP) receptor. It is supplied as lyophilize research peptide for controlled laboratory studies.

How does GLP-2TZ function at a signaling level?

It engages both SP-1 and GIP receptor pathways, allowing researchers to investigate how dual receptor activation influences intracellular signaling networks such as cAMP-dependent pathways and incretin-related metabolic signaling.

How is GLP-2TIRZ structurally different from native GLP-2?

It is a modified peptide analog of the naturally occurring glucagon-like peptide-2(GLP-2). It’s sequence and structural modifications are designed to enhance receptor engagement and signaling duration compared with the parent 33-amino acid GLP-2 molecule produced by enteroendocrine cells.

It is generally used for in-vitro studies and preclinical models focused on biochemical receptor signaling, structure-function relationships and pathways where dual activation of SP-1 and GIP receptors may reveal mechanistic insights into peptide-mediated metabolic regulation.

Researchers are interested in GLP-2TIRZ because it’s a dual receptor agonist profile enables the study of coordinated incretin receptor signaling, intracellular second messenger systems (cAMP) and peptide structure function relationships in metabolic and endocrine signaling pathway.s

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