1. Protein Tyrosine Kinase/RTK Apoptosis
  2. FGFR Apoptosis Bcl-2 Family Caspase
  3. Siphonaxanthin

Siphonaxanthin is a keto-carotenoid found in green algae. Siphonaxanthin targets death receptor 5 (DR5) and induces apoptosis in cancer cells. Siphonaxanthin upregulates the expression of DR5, decreases the expression of Bcl-2, and activates caspase-3 in human leukemia HL-60 cells. Siphonaxanthin is an inhibitor of fibroblast growth factor receptor-1 (FGFR-1) signaling transduction in vascular endothelial cells. Siphonaxanthin inhibits the proliferation, migration, and tube formation of human umbilical vein endothelial cells (HUVECs), as well as the outgrowth of microvessels in the rat aortic ring. Siphonaxanthin can also inhibit the translocation of the high-affinity IgE receptor (FcεRI) to lipid rafts in mast cells, acting as an anti-inflammatory agent. Siphonaxanthin is promising for research of diseases such as cancer, diabetic retinopathy, and rheumatoid arthritis.

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Siphonaxanthin Chemical Structure

Siphonaxanthin Chemical Structure

CAS No. : 28526-44-5

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Description

Siphonaxanthin is a keto-carotenoid found in green algae. Siphonaxanthin targets death receptor 5 (DR5) and induces apoptosis in cancer cells. Siphonaxanthin upregulates the expression of DR5, decreases the expression of Bcl-2, and activates caspase-3 in human leukemia HL-60 cells. Siphonaxanthin is an inhibitor of fibroblast growth factor receptor-1 (FGFR-1) signaling transduction in vascular endothelial cells. Siphonaxanthin inhibits the proliferation, migration, and tube formation of human umbilical vein endothelial cells (HUVECs), as well as the outgrowth of microvessels in the rat aortic ring. Siphonaxanthin can also inhibit the translocation of the high-affinity IgE receptor (FcεRI) to lipid rafts in mast cells, acting as an anti-inflammatory agent. Siphonaxanthin is promising for research of diseases such as cancer, diabetic retinopathy, and rheumatoid arthritis[1].

Molecular Weight

600.87

Formula

C40H56O4

CAS No.
SMILES

CC(C)(C[C@H](C=C1C)O)[C@H]1/C=C/C(C)=C/C=C/C(C)=C/C=C/C=C(C)/C=C/C=C(CO)/C(CC2=C(C)C[C@@H](O)CC2(C)C)=O

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    Species cross-reactivity must be investigated individually for each product. Many human cytokines will produce a nice response in mouse cell lines, and many mouse proteins will show activity on human cells. Other proteins may have a lower specific activity when used in the opposite species.

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