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Published on: February 12, 2017
Clinical and molecular responses in lung cancer patients receiving Romidepsin
David S Schrump1, Maria R Fischette, Dao M Nguyen
1Thoracic Oncology Section Surgery Branch, Center for Cancer Research and Cancer Therapy Evaluation Program, National Cancer Institute, NIH, Bethesda, MD 20892, USA. david.schrump@nih.gov
Purpose:
Our preclinical experiments indicated that Romidepsin (Depsipeptide FK228; DP) mediates growth arrest and apoptosis in cultured lung cancer cells. A phase II trial was done to examine clinical and molecular responses mediated by this histone deacetylase inhibitor in lung cancer patients.
Experimental Design:
Nineteen patients with neoplasms refractory to standard therapy received 4-h DP infusions (17.8 mg/m(2)) on days 1 and 7 of a 21-day cycle. Each full course of therapy consisted of two identical 21-day cycles. Plasma DP levels were evaluated by liquid chromatography-mass spectrometry techniques. A variety of molecular end points were assessed in tumor biopsies via immunohistochemistry techniques. Long oligo arrays were used to examine gene expression profiles in laser-captured tumor cells before and after DP exposure, relative to lung cancer cells and adjacent normal bronchial epithelia from patients undergoing pulmonary resections.
Results:
Nineteen patients were evaluable for toxicity assessment; 18 were evaluable for treatment response. Myelosuppression was dose limiting in one individual. No significant cardiac toxicities were observed. Maximum steady-state plasma DP concentrations ranged from 384 to 1,114 ng/mL. No objective responses were observed. Transient stabilization of disease was noted in nine patients. DP enhanced acetylation of histone H4, increased p21 expression in lung cancer cells, and seemed to shift global gene expression profiles in these cells toward those detected in normal bronchial epithelia.
Conclusion:
Although exhibiting minimal clinical efficacy at this dose and schedule, DP mediates biological effects that may warrant further evaluation of this histone deacetylase inhibitor in combination with novel-targeted agents in lung cancer patients.
Insights
Romidepsin (DP), a histone deacetylase inhibitor, showed minimal clinical efficacy in lung cancer patients but induced biological effects. Further evaluation with novel agents is warranted for this lung cancer treatment.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Preclinical studies showed Romidepsin (DP) induced growth arrest and apoptosis in lung cancer cells.
- Histone deacetylase inhibitors represent a promising class of anti-cancer agents.
Purpose of the Study:
- To evaluate the clinical and molecular responses to Romidepsin (DP) in lung cancer patients.
- To assess the safety and tolerability of DP in this patient population.
Main Methods:
- A Phase II trial involving 19 patients with refractory neoplasms.
- DP administered as 4-h infusions at 17.8 mg/m(2) on days 1 and 7 of a 21-day cycle.
- Assessed plasma DP levels, molecular endpoints via immunohistochemistry, and gene expression profiles.
Main Results:
- No objective clinical responses were observed in 18 evaluable patients.
- Transient disease stabilization occurred in nine patients.
- DP enhanced histone H4 acetylation, increased p21 expression, and altered gene expression profiles in tumor cells.
Conclusions:
- DP demonstrated biological activity in lung cancer patients, despite limited clinical efficacy at the tested dose and schedule.
- Further investigation of Romidepsin (DP) in combination with novel targeted agents is recommended for lung cancer treatment.
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