1. Academic Validation
  2. Design, synthesis of novel peptidomimetic derivatives of 4-HPR for rhabdoid tumors

Design, synthesis of novel peptidomimetic derivatives of 4-HPR for rhabdoid tumors

  • Bioorg Med Chem Lett. 2008 Jul 15;18(14):4177-80. doi: 10.1016/j.bmcl.2008.05.097.
Bhaskar C Das 1 Melissa E Smith Ganjam V Kalpana
Affiliations

Affiliation

  • 1 Department of Nuclear Medicine, Albert Einstein College of Medicine, Bronx, NY 10461, USA. bdas@aecom.yu.edu
Abstract

Rhabdoid tumors (RTs) are an extremely aggressive pediatric malignancy that results from loss of the INI1/hSNF5 tumor suppressor gene. Loss of INI1 results in aberrant expression of Cyclin D1, which supports rhabdoid tumorigenesis and survival. 4-HPR, a synthetic retinoid that down-modulates Cyclin D1, has shown promise in treating various tumors including RTs. In this study, we have generated a chemical library of peptidomimetic derivatives of 4-HPR in an attempt to create a more biologically active compound for use as a therapeutic agent against RTs and Other tumors. We have synthesized novel peptidomimetic compound by substituting alkene backbone with a ring structure that retains the biological activity in Cell Culture models of rhabdoid tumors. We further identified derivative of peptidomimetic compound (11d, IC(50) approximately 3 microM) with approximately five times higher potency than 4-HPR (1, IC(50) approximately 15 microM) based on a survival assay against rhabdoid tumor cells. These studies indicate that peptidomimetic derivatives that retain the cytotoxic activity are promising novel chemotherapeutic agents against RTs and Other tumors.

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