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Lipidomics

Lipidomics collage

Lipidomics is the study of the structure and function of the complete set of lipids (the lipidome) produced in a given cell or organism as well as their interactions with other lipids, proteins, and metabolites. Lipids are hydrophobic or amphipathic molecules. The number of distinct lipid species is estimated to be between 104–105. A multitude of nutritionally and metabolically regulated processes maintain lipid homeostasis in healthy conditions. Defects or alterations in the enzymatic metabolism of lipids may contribute to the pathogenesis of common diseases like Alzheimer’s, atherosclerosis, insulin-resistant diabetes, or cancer.

The main biological functions of lipids include:

  • Energy storage and structural components of cellular membranes
  • Cell signaling (e.g., phospholipase C and phospholipase A2 in modulating immunological responses)
  • Endocrine actions (e.g., steroid hormones)
  • Essential role in signal transduction, membrane trafficking, and morphogenesis
  • Cofactors in modulating protein activity
Lipidomics is the study of the structure and function of the complete set of lipids (the lipidome) produced in a given cell or organism as well as their interactions with other lipids,... read more »
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Lipidomics
Lipidomics collage

Lipidomics is the study of the structure and function of the complete set of lipids (the lipidome) produced in a given cell or organism as well as their interactions with other lipids, proteins, and metabolites. Lipids are hydrophobic or amphipathic molecules. The number of distinct lipid species is estimated to be between 104–105. A multitude of nutritionally and metabolically regulated processes maintain lipid homeostasis in healthy conditions. Defects or alterations in the enzymatic metabolism of lipids may contribute to the pathogenesis of common diseases like Alzheimer’s, atherosclerosis, insulin-resistant diabetes, or cancer.

The main biological functions of lipids include:

  • Energy storage and structural components of cellular membranes
  • Cell signaling (e.g., phospholipase C and phospholipase A2 in modulating immunological responses)
  • Endocrine actions (e.g., steroid hormones)
  • Essential role in signal transduction, membrane trafficking, and morphogenesis
  • Cofactors in modulating protein activity
 
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Sodium Hyaluronate – 1500 kDa (Echelon Product Code: H-1500 1G)
Unit: 1G
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Sodium Hyaluronate – 1500 kDa (Echelon Product Code: H-1500 5G)
Unit: 5G
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Sodium Hyaluronate – 2000 kDa (Echelon Product Code: H-2000 250MG)
Unit: 250 mg
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Sodium Hyaluronate – 2000 kDa (Echelon Product Code: H-2000 1G)
Unit: 1G
Price on request
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Sodium Hyaluronate – 2000 kDa (Echelon Product Code: H-2000 5G)
Unit: 5G
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Sodium Hyaluronate – 3000 kDa (Echelon Product Code: H-3000 1G)
Unit: 1G
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Sodium Hyaluronate – 3000 kDa (Echelon Product Code: H-3000 250MG)
Unit: 250 mg
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Sodium Hyaluronate – 3000 kDa (Echelon Product Code: H-3000 5G)
Unit: 5G
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cKK-E12 (Echelon Product Code: N-1012 10MG)
Unit: 10 mg
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cKK-E12 (Echelon Product Code: N-1012 50MG)
Unit: 50 mg
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GRI977143 (LPA2 Agonist) (Echelon Product Code: B-0070 10MG)
Unit: 10 mg
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GRI977143 (LPA2 Agonist) (Echelon Product Code: B-0070 50MG)
Unit: 50 mg
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