Literature DB >> 28292827

The Glycoside Oleandrin Reduces Glioma Growth with Direct and Indirect Effects on Tumor Cells.

Stefano Garofalo1,2, Alfonso Grimaldi1,3, Giuseppina Chece1, Alessandra Porzia2,4, Stefania Morrone5, Fabrizio Mainiero5, Giuseppina D'Alessandro1,2, Vincenzo Esposito2,6, Barbara Cortese7, Silvia Di Angelantonio1,3, Flavia Trettel8, Cristina Limatola9,8.   

Abstract

Oleandrin is a glycoside that inhibits the ubiquitous enzyme Na+/K+-ATPase. In addition to its known effects on cardiac muscle, recent in vitro and in vivo evidence highlighted its potential for anticancer properties. Here, we evaluated for the first time the effect of oleandrin on brain tumors. To this aim, mice were transplanted with human or murine glioma and analyzed for tumor progression upon oleandrin treatment. In both systems, oleandrin impaired glioma development, reduced tumor size, and inhibited cell proliferation. We demonstrated that oleandrin does the following: (1) enhances the brain-derived neurotrophic factor (BDNF) level in the brain; (2) reduces both microglia/macrophage infiltration and CD68 immunoreactivity in the tumor mass; (3) decreases astrogliosis in peritumoral area; and (4) reduces glioma cell infiltration in healthy parenchyma. In BDNF-deficient mice (bdnftm1Jae/J) and in glioma cells silenced for TrkB receptor expression, oleandrin was not effective, indicating a crucial role for BDNF in oleandrin's protective and antitumor functions. In addition, we found that oleandrin increases survival of temozolomide-treated mice. These results encourage the development of oleandrin as possible coadjuvant agent in clinical trials of glioma treatment.SIGNIFICANCE STATEMENT In this work, we paved the road for a new therapeutic approach for the treatment of brain tumors, demonstrating the potential of using the cardioactive glycoside oleandrin as a coadjuvant drug to standard chemotherapeutics such as temozolomide. In murine models of glioma, we demonstrated that oleandrin significantly increased mouse survival and reduced tumor growth both directly on tumor cells and indirectly by promoting an antitumor brain microenvironment with a key protective role played by the neurotrophin brain-derived neurotrophic factor.
Copyright © 2017 the authors 0270-6474/17/373926-14$15.00/0.

Entities:  

Keywords:  BDNF; apoptosis; glioma; in vivo; invasion; oleandrin

Mesh:

Substances:

Year:  2017        PMID: 28292827      PMCID: PMC6596714          DOI: 10.1523/JNEUROSCI.2296-16.2017

Source DB:  PubMed          Journal:  J Neurosci        ISSN: 0270-6474            Impact factor:   6.167


  47 in total

1.  Novel role for Na,K-ATPase in phosphatidylinositol 3-kinase signaling and suppression of cell motility.

Authors:  Sonali P Barwe; Gopalakrishnapillai Anilkumar; Sun Y Moon; Yi Zheng; Julian P Whitelegge; Sigrid A Rajasekaran; Ayyappan K Rajasekaran
Journal:  Mol Biol Cell       Date:  2004-12-22       Impact factor: 4.138

2.  Murine pharmacokinetics and metabolism of oleandrin, a cytotoxic component of Nerium oleander.

Authors:  Dan Ni; Timothy L Madden; Mary Johansen; Edward Felix; Dah H Ho; Robert A Newman
Journal:  J Exp Ther Oncol       Date:  2002 Sep-Oct

3.  Expression of sodium pump isoforms and other sodium or calcium ion transporters in the heart of hypertensive patients.

Authors:  H Jäger; G Wozniak; I H Akintürk; F W Hehrlein; G Scheiner-Bobis
Journal:  Biochim Biophys Acta       Date:  2001-08-06

4.  Cardiac glycosides stimulate Ca2+ increases and apoptosis in androgen-independent, metastatic human prostate adenocarcinoma cells.

Authors:  D J McConkey; Y Lin; L K Nutt; H Z Ozel; R A Newman
Journal:  Cancer Res       Date:  2000-07-15       Impact factor: 12.701

5.  Oleandrin suppresses activation of nuclear transcription factor-kappaB, activator protein-1, and c-Jun NH2-terminal kinase.

Authors:  S K Manna; N K Sah; R A Newman; A Cisneros; B B Aggarwal
Journal:  Cancer Res       Date:  2000-07-15       Impact factor: 12.701

6.  Glioma cells release excitotoxic concentrations of glutamate.

Authors:  Z C Ye; H Sontheimer
Journal:  Cancer Res       Date:  1999-09-01       Impact factor: 12.701

7.  p53 effects both the duration of G2/M arrest and the fate of temozolomide-treated human glioblastoma cells.

Authors:  Y Hirose; M S Berger; R O Pieper
Journal:  Cancer Res       Date:  2001-03-01       Impact factor: 12.701

8.  Enhancement of radiotherapy by oleandrin is a caspase-3 dependent process.

Authors:  Sachiko Nasu; Luka Milas; Shinichiro Kawabe; Uma Raju; Robert Newman
Journal:  Cancer Lett       Date:  2002-11-28       Impact factor: 8.679

Review 9.  Cost of migration: invasion of malignant gliomas and implications for treatment.

Authors:  A Giese; R Bjerkvig; M E Berens; M Westphal
Journal:  J Clin Oncol       Date:  2003-04-15       Impact factor: 44.544

10.  Role of autophagy in temozolomide-induced cytotoxicity for malignant glioma cells.

Authors:  T Kanzawa; I M Germano; T Komata; H Ito; Y Kondo; S Kondo
Journal:  Cell Death Differ       Date:  2004-04       Impact factor: 15.828

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  8 in total

1.  Potential Anticancer Agents Characterized from Selected Tropical Plants.

Authors:  Yulin Ren; Esperanza J Carcache de Blanco; James R Fuchs; Djaja D Soejarto; Joanna E Burdette; Steven M Swanson; A Douglas Kinghorn
Journal:  J Nat Prod       Date:  2019-03-04       Impact factor: 4.050

2.  TET1 regulates DNA repair in human glial cells.

Authors:  Katherine J Kuhns; Hernando Lopez-Bertoni; Jonathan B Coulter; Joseph P Bressler
Journal:  Toxicol Appl Pharmacol       Date:  2019-07-03       Impact factor: 4.219

Review 3.  Better Bioactivity, Cerebral Metabolism and Pharmacokinetics of Natural Medicine and Its Advanced Version.

Authors:  Jiaxi Xie; Cailing Zhong; Tingting Wang; Dan He; Luyang Lu; Jie Yang; Ziyi Yuan; Jingqing Zhang
Journal:  Front Pharmacol       Date:  2022-06-27       Impact factor: 5.988

Review 4.  Dialogue among Lymphocytes and Microglia in Glioblastoma Microenvironment.

Authors:  Alessandro Mormino; Stefano Garofalo
Journal:  Cancers (Basel)       Date:  2022-05-26       Impact factor: 6.575

5.  Oleandrin synergizes with cisplatin in human osteosarcoma cells by enhancing cell apoptosis through activation of the p38 MAPK signaling pathway.

Authors:  Lei Yong; Yunlong Ma; Bin Zhu; Xiao Liu; Peng Wang; Chen Liang; Guanping He; Zhigang Zhao; Zhongjun Liu; Xiaoguang Liu
Journal:  Cancer Chemother Pharmacol       Date:  2018-09-28       Impact factor: 3.333

Review 6.  Antiviral Effects of Oleandrin.

Authors:  Robert A Newman; K Jagannadha Sastry; Ravit Arav-Boger; Hongyi Cai; Rick Matos; Robert Harrod
Journal:  J Exp Pharmacol       Date:  2020-11-16

7.  Oleandrin, a cardiac glycoside, induces immunogenic cell death via the PERK/elF2α/ATF4/CHOP pathway in breast cancer.

Authors:  Xiaoxi Li; Jian Zheng; Shi Chen; Fan-Dong Meng; Jing Ning; Shu-Lan Sun
Journal:  Cell Death Dis       Date:  2021-03-24       Impact factor: 8.469

8.  Natural killer cells modulate motor neuron-immune cell cross talk in models of Amyotrophic Lateral Sclerosis.

Authors:  Stefano Garofalo; Germana Cocozza; Alessandra Porzia; Maurizio Inghilleri; Marcello Raspa; Ferdinando Scavizzi; Eleonora Aronica; Giovanni Bernardini; Ling Peng; Richard M Ransohoff; Angela Santoni; Cristina Limatola
Journal:  Nat Commun       Date:  2020-04-14       Impact factor: 14.919

  8 in total

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