1. Academic Validation
  2. In vitro and in vivo selective antitumor activity of a novel orally bioavailable proteasome inhibitor MLN9708 against multiple myeloma cells

In vitro and in vivo selective antitumor activity of a novel orally bioavailable proteasome inhibitor MLN9708 against multiple myeloma cells

  • Clin Cancer Res. 2011 Aug 15;17(16):5311-21. doi: 10.1158/1078-0432.CCR-11-0476.
Dharminder Chauhan 1 Ze Tian Bin Zhou Deborah Kuhn Robert Orlowski Noopur Raje Paul Richardson Kenneth C Anderson
Affiliations

Affiliation

  • 1 The LeBow Institute for Myeloma Therapeutics and Jerome Lipper Myeloma Center, Department of Medical Oncology, Dana Farber Cancer Institute, Harvard Medical School, Boston, Massachusetts 02115, USA. [email protected]
Abstract

Purpose: The success of bortezomib therapy for treatment of multiple myeloma (MM) led to the development of structurally and pharmacologically distinct novel Proteasome inhibitors. In the present study, we evaluated the efficacy of one such novel orally bioactive Proteasome Inhibitor MLN9708/MLN2238 in MM using well-established in vitro and in vivo models.

Experimental design: MM cell lines, primary patient cells, and the human MM xenograft animal model were used to study the antitumor activity of MN2238.

Results: Treatment of MM cells with MLN2238 predominantly inhibits chymotrypsin-like activity of the Proteasome and induces accumulation of ubiquitinated proteins. MLN2238 inhibits growth and induces Apoptosis in MM cells resistant to conventional and bortezomib therapies without affecting the viability of normal cells. In animal tumor model studies, MLN2238 is well tolerated and inhibits tumor growth with significantly reduced tumor recurrence. A head-to-head analysis of MLN2238 versus bortezomib showed a significantly longer survival time in mice treated with MLN2238 than mice receiving bortezomib. Immununostaining of MM tumors from MLN2238-treated mice showed growth inhibition, Apoptosis, and a decrease in associated angiogenesis. Mechanistic studies showed that MLN2238-triggered Apoptosis is associated with activation of Caspase-3, Caspase-8, and caspase-9; increase in p53, p21, NOXA, PUMA, and E2F; induction of endoplasmic reticulum (ER) stress response proteins Bip, phospho-eIF2-α, and CHOP; and inhibition of nuclear factor kappa B. Finally, combining MLN2238 with lenalidomide, histone deacetylase inhibitor suberoylanilide hydroxamic acid, or dexamethasone triggers synergistic anti-MM activity.

Conclusion: Our preclinical study supports clinical evaluation of MLN9708, alone or in combination, as a potential MM therapy.

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