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Physachenolide C induces complete regression of established murine melanoma tumors via apoptosis and cell cycle arrest.
Adams, Anngela C; Macy, Anne M; Kang, Paul; Castro-Ochoa, Karla F; Wijeratne, E M Kithsiri; Xu, Ya-Ming; Liu, Manping X; Charos, Alexandra; Bosenberg, Marcus W; Gunatilaka, A A Leslie; Sertil, Aparna R; Hastings, K Taraszka.
Afiliação
  • Adams AC; University of Arizona College of Medicine Phoenix, 425 N. 5th St., Phoenix, AZ 85004, United States. Electronic address: anngelaa@arizona.edu.
  • Macy AM; University of Arizona College of Medicine Phoenix, 425 N. 5th St., Phoenix, AZ 85004, United States. Electronic address: amacy@arizona.edu.
  • Kang P; Mel and Enid Zuckerman College of Public Health, 714 E. Van Buren St., Phoenix, AZ 85006, United States. Electronic address: paulk@arizona.edu.
  • Castro-Ochoa KF; University of Arizona College of Medicine Phoenix, 425 N. 5th St., Phoenix, AZ 85004, United States. Electronic address: karlafabiola@asu.edu.
  • Wijeratne EMK; Southwest Center for Natural Products Research, School of Natural Resources and the Environment, College of Agriculture and Life Sciences, University of Arizona, 250 E. Valencia Rd., Tucson, AZ 85706, United States. Electronic address: Kithsiri@cals.arizona.edu.
  • Xu YM; Southwest Center for Natural Products Research, School of Natural Resources and the Environment, College of Agriculture and Life Sciences, University of Arizona, 250 E. Valencia Rd., Tucson, AZ 85706, United States. Electronic address: yamingx@arizona.edu.
  • Liu MX; Southwest Center for Natural Products Research, School of Natural Resources and the Environment, College of Agriculture and Life Sciences, University of Arizona, 250 E. Valencia Rd., Tucson, AZ 85706, United States. Electronic address: Mliu@email.arizona.edu.
  • Charos A; Department of Dermatology, Yale University, 333 Cedar St., New Haven, CT 06520, United States. Electronic address: alexandra.charos@uvmhealth.org.
  • Bosenberg MW; Department of Dermatology, Yale University, 333 Cedar St., New Haven, CT 06520, United States. Electronic address: marcus.bosenberg@yale.edu.
  • Gunatilaka AAL; Southwest Center for Natural Products Research, School of Natural Resources and the Environment, College of Agriculture and Life Sciences, University of Arizona, 250 E. Valencia Rd., Tucson, AZ 85706, United States; University of Arizona Cancer Center, University of Arizona, 1515 N. Campbell Ave., T
  • Sertil AR; University of Arizona College of Medicine Phoenix, 425 N. 5th St., Phoenix, AZ 85004, United States. Electronic address: arsertil@arizona.edu.
  • Hastings KT; University of Arizona College of Medicine Phoenix, 425 N. 5th St., Phoenix, AZ 85004, United States; University of Arizona Cancer Center, University of Arizona, 1515 N. Campbell Ave., Tucson, AZ 85724, United States. Electronic address: khasting@arizona.edu.
Transl Oncol ; 15(1): 101259, 2022 Jan.
Article em En | MEDLINE | ID: mdl-34735896
ABSTRACT
Melanoma is an aggressive skin cancer that metastasizes to other organs. While immune checkpoint blockade with anti-PD-1 has transformed the treatment of advanced melanoma, many melanoma patients fail to respond to anti-PD-1 therapy or develop acquired resistance. Thus, effective treatment of melanoma still represents an unmet clinical need. Our prior studies support the anti-cancer activity of the 17ß-hydroxywithanolide class of natural products, including physachenolide C (PCC). As single agents, PCC and its semi-synthetic analog demonstrated direct cytotoxicity in a panel of murine melanoma cell lines, which share common driver mutations with human melanoma; the IC50 values ranged from 0.19-1.8 µM. PCC treatment induced apoptosis of tumor cells both in vitro and in vivo. In vivo treatment with PCC alone caused the complete regression of established melanoma tumors in all mice, with a durable response in 33% of mice after discontinuation of treatment. T cell-mediated immunity did not contribute to the therapeutic efficacy of PCC or prevent tumor recurrence in YUMM2.1 melanoma model. In addition to apoptosis, PCC treatment induced G0-G1 cell cycle arrest of melanoma cells, which upon removal of PCC, re-entered the cell cycle. PCC-induced cycle cell arrest likely contributed to the in vivo tumor recurrence in a portion of mice after discontinuation of treatment. Thus, 17ß-hydroxywithanolides have the potential to improve the therapeutic outcome for patients with advanced melanoma.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Transl Oncol Ano de publicação: 2022 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Transl Oncol Ano de publicação: 2022 Tipo de documento: Article