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Octyl syringate is preferentially cytotoxic to cancer cells via lysosomal membrane permeabilization and autophagic flux inhibition.
Won, Minho; Choi, Sunkyung; Cheon, Seonghye; Kim, Eun-Mi; Kwon, Taeg Kyu; Kim, Jaewhan; Kim, Yong-Eun; Sohn, Kyung-Cheol; Hur, Gang Min; Kim, Kee K.
Afiliación
  • Won M; Department of Pharmacology, College of Medicine, Chungnam National University, 35015, Daejeon, Republic of Korea.
  • Choi S; Biotechnology Process Engineering Center, Korea Research Institute of Bioscience & Biotechnology (KRIBB), Cheongju, 28116, Republic of Korea.
  • Cheon S; Department of Biochemistry, College of Natural Sciences, Chungnam National University, Daejeon, 34134, Republic of Korea.
  • Kim EM; Department of Biochemistry, College of Natural Sciences, Chungnam National University, Daejeon, 34134, Republic of Korea.
  • Kwon TK; Department of Predictive Toxicology, Korea Institute of Toxicology, Daejeon, 34114, Republic of Korea.
  • Kim J; Department of Immunology, College of Medicine, Keimyung University, Daegu, 42601, Republic of Korea.
  • Kim YE; Department of Biochemistry, College of Natural Sciences, Chungnam National University, Daejeon, 34134, Republic of Korea.
  • Sohn KC; Department of Biochemistry, College of Natural Sciences, Chungnam National University, Daejeon, 34134, Republic of Korea.
  • Hur GM; Department of Pharmacology, College of Medicine, Chungnam National University, 35015, Daejeon, Republic of Korea.
  • Kim KK; Department of Pharmacology, College of Medicine, Chungnam National University, 35015, Daejeon, Republic of Korea. gmhur@cnu.ac.kr.
Cell Biol Toxicol ; 39(1): 183-199, 2023 02.
Article en En | MEDLINE | ID: mdl-34523043
ABSTRACT
The autophagy-mediated lysosomal pathway plays an important role in conferring stress tolerance to tumor cells during cellular stress such as increased metabolic demands. Thus, targeted disruption of this function and inducing lysosomal cell death have been proved to be a useful cancer therapeutic approach. In this study, we reported that octyl syringate (OS), a novel phenolic derivate, was preferentially cytotoxic to various cancer cells but was significantly less cytotoxic to non-transformed cells. Treatment with OS resulted in non-apoptotic cell death in a caspase-independent manner. Notably, OS not only enhanced accumulation of autophagic substrates, including lapidated LC3 and sequestosome-1, but also inhibited their degradation via an autophagic flux. In addition, OS destabilized the lysosomal function, followed by the intracellular accumulation of the non-digestive autophagic substrates such as bovine serum albumin and stress granules. Furthermore, OS triggered the release of lysosomal enzymes into the cytoplasm that contributed to OS-induced non-apoptotic cell death. Finally, we demonstrated that OS was well tolerated and reduced tumor growth in mouse xenograft models. Taken together, our study identifies OS as a novel anticancer agent that induces lysosomal destabilization and subsequently inhibits autophagic flux and further supports development of OS as a lysosome-targeting compound in cancer therapy. • Octyl syringate, a phenolic derivate, is preferentially cytotoxic to various cancer cells. • Octyl syringate destabilizes the lysosomal function. • Octyl syringate blocks the autophagic flux. • Octyl syringate is a potential candidate compound for cancer therapy.
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Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Neoplasias / Antineoplásicos Límite: Animals / Humans Idioma: En Revista: Cell Biol Toxicol Asunto de la revista: TOXICOLOGIA Año: 2023 Tipo del documento: Article

Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Neoplasias / Antineoplásicos Límite: Animals / Humans Idioma: En Revista: Cell Biol Toxicol Asunto de la revista: TOXICOLOGIA Año: 2023 Tipo del documento: Article