terpinen-4-ol induces apoptosis in human nonsmall cell lung cancer in vitro and in vivo

terpinen-4-ol induces apoptosis in human nonsmall cell lung cancer in vitro and in vivo

;Chieh-Shan Wu;Yun-Ju Chen;Jeremy J. W. Chen;Jeng-Jer Shieh;Chia-Hsin Huang;Pei-Shan Lin;Gee-Chen Chang;JingHua-Tsai Chang;Chi-Chen Lin
ACS applied materials & interfaces 2012 Vol. 2012 pp. -
96
wu2012evidence-basedterpinen-4-ol

Abstract

Terpinen-4-ol, a monoterpene component of the essential oils of several aromatic plants, exhibits antitumor effects. In this study, the antitumor effects of terpinen-4-ol and the cellular and molecular mechanisms responsible for it were evaluated and studied, respectively on human nonsmall cell lung cancer (NSCLC) cells. Our results indicated that terpinen-4-ol elicited a dose-dependent cytotoxic effect, as determined by MTT assay. Increased sub-G1 population and annexin-V binding, activation of caspases 9 and 3, cleavage of poly(ADPribose) polymerase (PARP), and a decrease of mitochondrial membrane potential (MMP) indicated involvement of the mitochondrial apoptotic pathway in terpinen-4-ol-treated A549 and CL1-0 cells. Elevation of the Bax/Bcl-2 ratio and a decrease in IAP family proteins XIAP and survivin were also observed following terpinen-4-ol treatment. Notably, terpinen-4-ol was able to increase p53 levels in A549 and CL1-0 cells. Diminution of p53 by RNA interference induced necrosis instead of apoptosis in A549 cells following terpinen-4-ol treatment, indicating that terpinen-4-ol-elicited apoptosis is p53-dependent. Moreover, intratumoral administration of terpinen-4-ol significantly suppressed the growth of s.c. A549 xenografts by inducing apoptosis, as confirmed by TUNEL assay. Collectively, these data provide insight into the molecular mechanisms underlying terpinen-4-ol-induced apoptosis in NSCLC cells, rendering this compound a potential anticancer drug for NSCLC.

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191891
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10.1155/2012/818261
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