1-Octadecyl Lysophosphatidic Acid (1-Octadecyl LPA)
98%
Reagent
Code: #106882
CAS Number
52977-29-4
blur_circular Chemical Specifications
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Molecular Information
Weight
424.6 g/mol
Formula
C₂₁H₄₅O₆P
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Storage & Handling
Storage
-20°C, airtight, dry
description Product Description
1-Octadecyl Lysophosphatidic Acid (1-Octadecyl LPA) is primarily used in biomedical research to study cellular signaling pathways. It acts as a potent agonist for lysophosphatidic acid receptors, which are involved in processes like cell proliferation, differentiation, and survival. Researchers utilize it to investigate its role in cancer biology, as LPA receptors are often implicated in tumor growth and metastasis. Additionally, it is employed in studies related to wound healing and tissue regeneration due to its ability to stimulate cell migration and angiogenesis. In drug discovery, 1-Octadecyl LPA serves as a tool compound to screen and develop therapeutic agents targeting LPA receptor-associated diseases. Its applications also extend to studying inflammatory responses and fibrosis, where LPA signaling plays a critical role.
format_list_bulleted Product Specification
Test Parameter | Specification |
---|---|
Appearance | Solid |
Purity (%) | 97.5-100% |
Infrared Spectrum | Conforms To Structure |
NMR | Conforms To Structure |
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1-Octadecyl Lysophosphatidic Acid (1-Octadecyl LPA)
1-Octadecyl Lysophosphatidic Acid (1-Octadecyl LPA) is primarily used in biomedical research to study cellular signaling pathways. It acts as a potent agonist for lysophosphatidic acid receptors, which are involved in processes like cell proliferation, differentiation, and survival. Researchers utilize it to investigate its role in cancer biology, as LPA receptors are often implicated in tumor growth and metastasis. Additionally, it is employed in studies related to wound healing and tissue regeneration due to its ability to stimulate cell migration and angiogenesis. In drug discovery, 1-Octadecyl LPA serves as a tool compound to screen and develop therapeutic agents targeting LPA receptor-associated diseases. Its applications also extend to studying inflammatory responses and fibrosis, where LPA signaling plays a critical role.
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