Alciléia NunesA.N.YamadaAlciléia NunesA.N., RenataR.GrespanRenataR., Áureo TatsumiÁ.T.YamadaÁureo TatsumiÁ.T., Expedito LeiteE.L.SilvaExpedito LeiteE.L., Saulo EuclidesS.E.Silva-FilhoSaulo EuclidesS.E., Anti-inflammatory activity of Ocimum americanum L. essential oil in experimental model of zymosan-induced arthritis, „The American Journal of Chinese Medicine”, 41 (4), 2013, s. 913–926, DOI: 10.1142/S0192415X13500614, PMID: 23895160(ang.).
DjamelD.DjenaneDjamelD., MohammedM.AïderMohammedM., JavierJ.YangüelaJavierJ., LamiaL.IdirLamiaL., DiegoD.GómezDiegoD., Antioxidant and antibacterial effects of Lavandula and Mentha essential oils in minced beef inoculated with E. coli O157:H7 and S. aureus during storage at abuse refrigeration temperature, „Meat Science”, 92 (4), 2012, s. 667–674, DOI: 10.1016/j.meatsci.2012.06.019, PMID: 22789458(ang.).
Lucindo J.L.J.Quintans-JúniorLucindo J.L.J., Rosana S.S.R.S.S.BarretoRosana S.S.R.S.S., Paula P.P.P.MenezesPaula P.P.P., Jackson R.G.S.J.R.G.S.AlmeidaJackson R.G.S.J.R.G.S., Ana Flávia S.C.A.F.S.C.VianaAna Flávia S.C.A.F.S.C., β-Cyclodextrin-complexed (−)-linalool produces antinociceptive effect superior to that of (−)-linalool in experimental pain protocols, „Basic & Clinical Pharmacology & Toxicology”, 113 (3), 2013, s. 167–172, DOI: 10.1111/bcpt.12087, PMID: 23692366(ang.).
Carol A.C.A.PhillipsCarol A.C.A., KonstantinosK.GkatzionisKonstantinosK., KatieK.LairdKatieK., JodieJ.ScoreJodieJ., AvinashA.KantAvinashA., Identification and quantification of the antimicrobial components of a citrus essential oil vapor, „Natural Product Communications”, 7 (1), 2012, s. 103–107, DOI: 10.1177/1934578X1200700135, PMID: 22428260(ang.).
Jarmo K.J.K.HolopainenJarmo K.J.K., JuhaJ.HeijariJuhaJ., ElinaE.OksanenElinaE., Giorgio A.G.A.AlessioGiorgio A.G.A., Leaf Volatile Emissions of Betula pendula during Autumn Coloration and Leaf Fall, „Journal of Chemical Ecology”, 36 (10), 2010, s. 1068–1075, DOI: 10.1007/s10886-010-9857-4, PMID: 20838885(ang.).
M.M.GovindarajanM.M., R.R.SivakumarR.R., M.M.RajeswaryM.M., K.K.YogalakshmiK.K., Chemical composition and larvicidal activity of essential oil from Ocimum basilicum (L.) against Culex tritaeniorhynchus, Aedes albopictus and Anopheles subpictus (Diptera: Culicidae), „Experimental Parasitology”, 134 (1), 2013, s. 7–11, DOI: 10.1016/j.exppara.2013.01.018, PMID: 23391742(ang.).
YingY.GuYingY., ZhangZ.TingZhangZ., XiX.QiuXiX., XuzhaoX.ZhangXuzhaoX., XiaoxianX.GanXiaoxianX., Linalool preferentially induces robust apoptosis of a variety of leukemia cells via upregulating p53 and cyclin-dependent kinase inhibitors, „Toxicology”, 268 (1–2), 2010, s. 19–24, DOI: 10.1016/j.tox.2009.11.013, PMID: 19922762(ang.).
Mei-YinM.Y.ChangMei-YinM.Y., Den-EnD.E.ShiehDen-EnD.E., Chung-ChiCh.Ch.ChenChung-ChiCh.Ch., Ching-ShengCh.S.YehChing-ShengCh.S., Huei-PingH.P.DongHuei-PingH.P., Linalool Induces Cell Cycle Arrest and Apoptosis in Leukemia Cells and Cervical Cancer Cells through CDKIs, „International Journal of Molecular Sciences”, 16 (12), 2015, s. 28169–28179, DOI: 10.3390/ijms161226089, PMID: 26703569, PMCID: PMC4691036(ang.).
KenichiK.IwasakiKenichiK., Yun-WenY.W.ZhengYun-WenY.W., SoichiroS.MurataSoichiroS., HiromuH.ItoHiromuH., KenK.NakayamaKenK., Anticancer effect of linalool via cancer-specific hydroxyl radical generation in human colon cancer, „World Journal of Gastroenterology”, 22 (44), 2016, s. 9765, DOI: 10.3748/wjg.v22.i44.9765, PMID: 27956800, PMCID: PMC5124981(ang.).
C.Y.C.Y.UngC.Y.C.Y., J.M.L.J.M.L.WhiteJ.M.L.J.M.L., I.R.I.R.WhiteI.R.I.R., P.P.BanerjeeP.P., J.P.J.P.McFaddenJ.P.J.P., Patch testing with the European baseline series fragrance markers: a 2016 update, „British Journal of Dermatology”, 178 (3), 2018, s. 776–780, DOI: 10.1111/bjd.15949, PMID: 28960261(ang.).
Alciléia NunesA.N.YamadaAlciléia NunesA.N., RenataR.GrespanRenataR., Áureo TatsumiÁ.T.YamadaÁureo TatsumiÁ.T., Expedito LeiteE.L.SilvaExpedito LeiteE.L., Saulo EuclidesS.E.Silva-FilhoSaulo EuclidesS.E., Anti-inflammatory activity of Ocimum americanum L. essential oil in experimental model of zymosan-induced arthritis, „The American Journal of Chinese Medicine”, 41 (4), 2013, s. 913–926, DOI: 10.1142/S0192415X13500614, PMID: 23895160(ang.).
DjamelD.DjenaneDjamelD., MohammedM.AïderMohammedM., JavierJ.YangüelaJavierJ., LamiaL.IdirLamiaL., DiegoD.GómezDiegoD., Antioxidant and antibacterial effects of Lavandula and Mentha essential oils in minced beef inoculated with E. coli O157:H7 and S. aureus during storage at abuse refrigeration temperature, „Meat Science”, 92 (4), 2012, s. 667–674, DOI: 10.1016/j.meatsci.2012.06.019, PMID: 22789458(ang.).
Lucindo J.L.J.Quintans-JúniorLucindo J.L.J., Rosana S.S.R.S.S.BarretoRosana S.S.R.S.S., Paula P.P.P.MenezesPaula P.P.P., Jackson R.G.S.J.R.G.S.AlmeidaJackson R.G.S.J.R.G.S., Ana Flávia S.C.A.F.S.C.VianaAna Flávia S.C.A.F.S.C., β-Cyclodextrin-complexed (−)-linalool produces antinociceptive effect superior to that of (−)-linalool in experimental pain protocols, „Basic & Clinical Pharmacology & Toxicology”, 113 (3), 2013, s. 167–172, DOI: 10.1111/bcpt.12087, PMID: 23692366(ang.).
Carol A.C.A.PhillipsCarol A.C.A., KonstantinosK.GkatzionisKonstantinosK., KatieK.LairdKatieK., JodieJ.ScoreJodieJ., AvinashA.KantAvinashA., Identification and quantification of the antimicrobial components of a citrus essential oil vapor, „Natural Product Communications”, 7 (1), 2012, s. 103–107, DOI: 10.1177/1934578X1200700135, PMID: 22428260(ang.).
Jarmo K.J.K.HolopainenJarmo K.J.K., JuhaJ.HeijariJuhaJ., ElinaE.OksanenElinaE., Giorgio A.G.A.AlessioGiorgio A.G.A., Leaf Volatile Emissions of Betula pendula during Autumn Coloration and Leaf Fall, „Journal of Chemical Ecology”, 36 (10), 2010, s. 1068–1075, DOI: 10.1007/s10886-010-9857-4, PMID: 20838885(ang.).
M.M.GovindarajanM.M., R.R.SivakumarR.R., M.M.RajeswaryM.M., K.K.YogalakshmiK.K., Chemical composition and larvicidal activity of essential oil from Ocimum basilicum (L.) against Culex tritaeniorhynchus, Aedes albopictus and Anopheles subpictus (Diptera: Culicidae), „Experimental Parasitology”, 134 (1), 2013, s. 7–11, DOI: 10.1016/j.exppara.2013.01.018, PMID: 23391742(ang.).
YingY.GuYingY., ZhangZ.TingZhangZ., XiX.QiuXiX., XuzhaoX.ZhangXuzhaoX., XiaoxianX.GanXiaoxianX., Linalool preferentially induces robust apoptosis of a variety of leukemia cells via upregulating p53 and cyclin-dependent kinase inhibitors, „Toxicology”, 268 (1–2), 2010, s. 19–24, DOI: 10.1016/j.tox.2009.11.013, PMID: 19922762(ang.).
Mei-YinM.Y.ChangMei-YinM.Y., Den-EnD.E.ShiehDen-EnD.E., Chung-ChiCh.Ch.ChenChung-ChiCh.Ch., Ching-ShengCh.S.YehChing-ShengCh.S., Huei-PingH.P.DongHuei-PingH.P., Linalool Induces Cell Cycle Arrest and Apoptosis in Leukemia Cells and Cervical Cancer Cells through CDKIs, „International Journal of Molecular Sciences”, 16 (12), 2015, s. 28169–28179, DOI: 10.3390/ijms161226089, PMID: 26703569, PMCID: PMC4691036(ang.).
KenichiK.IwasakiKenichiK., Yun-WenY.W.ZhengYun-WenY.W., SoichiroS.MurataSoichiroS., HiromuH.ItoHiromuH., KenK.NakayamaKenK., Anticancer effect of linalool via cancer-specific hydroxyl radical generation in human colon cancer, „World Journal of Gastroenterology”, 22 (44), 2016, s. 9765, DOI: 10.3748/wjg.v22.i44.9765, PMID: 27956800, PMCID: PMC5124981(ang.).
C.Y.C.Y.UngC.Y.C.Y., J.M.L.J.M.L.WhiteJ.M.L.J.M.L., I.R.I.R.WhiteI.R.I.R., P.P.BanerjeeP.P., J.P.J.P.McFaddenJ.P.J.P., Patch testing with the European baseline series fragrance markers: a 2016 update, „British Journal of Dermatology”, 178 (3), 2018, s. 776–780, DOI: 10.1111/bjd.15949, PMID: 28960261(ang.).