(e,z)-farnesol

(e,z)-farnesol is a lipid of Prenol Lipids (PR) class.

Cross Reference

There are no associated biomedical information in the current reference collection.

Current reference collection contains 3613 references associated with (e,z)-farnesol in LipidPedia. Due to lack of full text of references or no associated biomedical terms are recognized in our current text-mining method, we cannot extract any biomedical terms related to diseases, pathways, locations, functions, genes, lipids, and animal models from the associated reference collection.

Users can download the reference list at the bottom of this page and read the reference manually to find out biomedical information.


Here are additional resources we collected from PubChem and MeSH for (e,z)-farnesol

Possible diseases from mapped MeSH terms on references

We collected disease MeSH terms mapped to the references associated with (e,z)-farnesol

MeSH term MeSH ID Detail
Neurilemmoma D009442 10 associated lipids
Hypergammaglobulinemia D006942 9 associated lipids
Nerve Sheath Neoplasms D018317 4 associated lipids
Per page 10 20 50 | Total 23

PubChem Biomolecular Interactions and Pathways

All references with (e,z)-farnesol

Download all related citations
Per page 10 20 50 100 | Total 813
Authors Title Published Journal PubMed Link
Cordeiro RA et al. Minimum inhibitory concentrations of amphotericin B, azoles and caspofungin against Candida species are reduced by farnesol. 2013 Med. Mycol. pmid:22712455
Farag MA and Al-Mahdy DA Comparative study of the chemical composition and biological activities of Magnolia grandiflora and Magnolia virginiana flower essential oils. 2013 Nat. Prod. Res. pmid:22690913
Zhang X et al. PEG-farnesylthiosalicylate conjugate as a nanomicellar carrier for delivery of paclitaxel. 2013 Bioconjug. Chem. pmid:23425093
Brilhante RS et al. Effect of farnesol on growth, ergosterol biosynthesis, and cell permeability in Coccidioides posadasii. 2013 Antimicrob. Agents Chemother. pmid:23459491
Charette N et al. Salirasib sensitizes hepatocarcinoma cells to TRAIL-induced apoptosis through DR5 and survivin-dependent mechanisms. 2013 Cell Death Dis pmid:23348585
Schmukler E et al. Ras inhibition enhances autophagy, which partially protects cells from death. 2013 Oncotarget pmid:23370967
Barkan B et al. Ras inhibition boosts galectin-7 at the expense of galectin-1 to sensitize cells to apoptosis. 2013 Oncotarget pmid:23530091
Faigenbaum R et al. Growth of poorly differentiated endometrial carcinoma is inhibited by combined action of medroxyprogesterone acetate and the Ras inhibitor Salirasib. 2013 Oncotarget pmid:23530112
Makovski V et al. Farnesylthiosalicylic acid (salirasib) inhibits Rheb in TSC2-null ELT3 cells: a potential treatment for lymphangioleiomyomatosis. 2012 Int. J. Cancer pmid:21500191
Agassandian M et al. Calcium-calmodulin kinase I cooperatively regulates nucleocytoplasmic shuttling of CCTα by accessing a nuclear export signal. 2012 Mol. Biol. Cell pmid:22621903
Tashiro M et al. Pravastatin inhibits farnesol production in Candida albicans and improves survival in a mouse model of systemic candidiasis. 2012 Med. Mycol. pmid:21954955
Jaggi AS and Singh N Analgesic potential of intrathecal farnesyl thiosalicylic acid and GW 5074 in vincristine-induced neuropathic pain in rats. 2012 Food Chem. Toxicol. pmid:22326968
Qamar W et al. Benzo(a)pyrene-induced pulmonary inflammation, edema, surfactant dysfunction, and injuries in rats: alleviation by farnesol. 2012 Exp. Lung Res. pmid:22168545
Mashiach-Farkash E et al. Computer-based identification of a novel LIMK1/2 inhibitor that synergizes with salirasib to destabilize the actin cytoskeleton. 2012 Oncotarget pmid:22776759
Nasr N et al. HIV-1 infection of human macrophages directly induces viperin which inhibits viral production. 2012 Blood pmid:22677126
Han TL et al. The metabolic response of Candida albicans to farnesol under hyphae-inducing conditions. 2012 FEMS Yeast Res. pmid:22846172
Chang W et al. Retigeric acid B attenuates the virulence of Candida albicans via inhibiting adenylyl cyclase activity targeted by enhanced farnesol production. 2012 PLoS ONE pmid:22848547
Lindsay AK et al. Farnesol and cyclic AMP signaling effects on the hypha-to-yeast transition in Candida albicans. 2012 Eukaryotic Cell pmid:22886999
Fu MS et al. Functional characterization of the small heat shock protein Hsp12p from Candida albicans. 2012 PLoS ONE pmid:22880130
Shin KO et al. Terpene alcohols inhibit de novo sphingolipid biosynthesis. 2012 Planta Med. pmid:22274813

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