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Human Prostanoid Receptor

Updated: 2026-07-22

Overview

Prostanoid receptors are a family of G protein-coupled receptors (GPCRs) that respond to prostaglandins and thromboxanes. These lipid-derived compounds are involved in a wide range of physiological and pathological processes, including inflammation, fever, pain, and blood clotting. Prostanoid receptors are classified into several subtypes, such as DP, EP, FP, IP, and TP, each with distinct signaling pathways and functions. The study of prostanoid receptors is crucial in pharmacology and medicine, as they are targets for drugs like NSAIDs (non-steroidal anti-inflammatory drugs) and other therapeutics aimed at modulating inflammatory responses and pain. Understanding their mechanisms helps in developing treatments for conditions such as arthritis, cardiovascular diseases, and asthma.

Physical and Chemical Properties

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Prostanoid receptors are integral membrane proteins with seven transmembrane domains, characteristic of GPCRs. They are typically expressed on the surface of various cell types, including immune cells, vascular cells, and neurons. The receptors bind to prostaglandins and thromboxanes with high specificity, triggering intracellular signaling cascades. While the receptors themselves are proteins, their ligands (prostaglandins and thromboxanes) are lipid molecules derived from arachidonic acid. These ligands are chemically unstable and have short half-lives, which influences their biological activity and the design of synthetic analogs for therapeutic use.

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Main Applications

Prostanoid receptors are widely studied in the context of drug development and medical research. For example, EP receptors are targeted by NSAIDs to reduce inflammation and pain, while IP receptor agonists are used to treat pulmonary hypertension. TP receptor antagonists are investigated for their potential in preventing thrombosis. In addition to pharmaceuticals, prostanoid receptors are used in research to understand cellular signaling pathways and disease mechanisms. They are also explored in biotechnology for developing assays and diagnostic tools related to inflammatory and cardiovascular conditions.

Safety and Storage

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When working with prostanoid receptors in a laboratory setting, standard biosafety protocols should be followed. Recombinant receptors or cell lines expressing these receptors should be handled under appropriate containment conditions to prevent contamination or unintended exposure. Storage conditions depend on the specific form of the receptor (e.g., purified protein, cell lines, or tissue samples). Generally, proteins should be stored at -80°C in stabilizing buffers, while cell lines may require cryopreservation in liquid nitrogen. Always refer to manufacturer guidelines or research protocols for optimal storage practices.

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B2B Procurement Guide

For businesses procuring prostanoid receptors or related reagents, it is essential to verify the supplier's credibility and product specifications. Reputable suppliers should provide certificates of analysis, purity data, and detailed storage instructions. Bulk purchases for research or pharmaceutical development may require custom formulations or licensing agreements. Consider the intended application (e.g., drug screening, basic research) when selecting receptor subtypes or assay kits. Pricing varies significantly based on purity, source (human, mouse, etc.), and whether the product is labeled or modified for specific detection methods. Request samples or small batches for validation before large-scale procurement.

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