Concentration-dependent Early Antivascular and Antitumor Effects of Itraconazole in Non-Small Cell Lung Cancer.

Vaidehi Chembukar, James Kim, Ralph J DeBerardinis, Brandon Faubert, Lorraine Pelosof, Scott I Reznik, Yin Xi, Quyen N Do, Qing Yuan, Indhumathy Subramaniyan, Raja Reddy Kallem, Sahba Kasiri, Jessica M Saltarski, Chyndhri Padmanabhan, Chul Ahn, Richard D Leff, Robert E Lenkinski, Rachael Skelton, Ivan Pedrosa, Rolf A Brekken, Kemp H Kernstine, Farjana J Fattah, William C Putnam, David E Gerber

Journal: Clinical cancer research : an official journal of the American Association for Cancer Research 2021;26(22):6017-6027

PMID: 32847935

Abstract

PURPOSE

Itraconazole has been repurposed as an anticancer therapeutic agent for multiple malignancies. In preclinical models, itraconazole has antiangiogenic properties and inhibits Hedgehog pathway activity. We performed a window-of-opportunity trial to determine the biologic effects of itraconazole in human patients.

EXPERIMENTAL DESIGN

Patients with non-small cell lung cancer (NSCLC) who had planned for surgical resection were administered with itraconazole 300 mg orally twice daily for 10-14 days. Patients underwent dynamic contrast-enhanced MRI and plasma collection for pharmacokinetic and pharmacodynamic analyses. Tissues from pretreatment biopsy, surgical resection, and skin biopsies were analyzed for itraconazole and hydroxyitraconazole concentration, and vascular and Hedgehog pathway biomarkers.

RESULTS

Thirteen patients were enrolled in this study. Itraconazole was well-tolerated. Steady-state plasma concentrations of itraconazole and hydroxyitraconazole demonstrated a 6-fold difference across patients. Tumor itraconazole concentrations trended with and exceeded those of plasma. Greater itraconazole levels were significantly and meaningfully associated with reduction in tumor volume (Spearman correlation, -0.71; = 0.05) and tumor perfusion (K; Spearman correlation, -0.71; = 0.01), decrease in the proangiogenic cytokines IL1b (Spearman correlation, -0.73; = 0.01) and GM-CSF (Spearman correlation, -1.00; < 0.001), and reduction in tumor microvessel density (Spearman correlation, -0.69; = 0.03). Itraconazole-treated tumors also demonstrated distinct metabolic profiles. Itraconazole treatment did not alter transcription of and mRNA. Patient size, renal function, and hepatic function did not predict itraconazole concentrations.

CONCLUSIONS

Itraconazole demonstrates concentration-dependent early antivascular, metabolic, and antitumor effects in patients with NSCLC. As the number of fixed dose cancer therapies increases, attention to interpatient pharmacokinetics and pharmacodynamics differences may be warranted.

©2020 American Association for Cancer Research.

Address: Harold C. Simmons Comprehensive Cancer Center, University of Texas Southwestern Medical Center, Dallas, Texas. [email protected].; Division of Hematology-Oncology, Department of Internal Medicine, University of Texas Southwestern Medical Center, Dallas, Texas.; Department of Population and Data Sciences, University of Texas Southwestern Medical Center, Dallas, Texas.; Department of Pharmacy Practice, Jerry H. Hodge School of Pharmacy, Texas Tech University Health Sciences Center, Dallas, Texas.; Harold C. Simmons Comprehensive Cancer Center, University of Texas Southwestern Medical Center, Dallas, Texas.; Department of Cardiovascular and Thoracic Surgery, University of Texas Southwestern Medical Center, Dallas, Texas.; Department of Surgery, University of Texas Southwestern Medical Center, Dallas, Texas.; Hamon Center for Therapeutic Oncology Research, University of Texas Southwestern Medical Center, Dallas, Texas.; Department of Radiology, University of Texas Southwestern Medical Center, Dallas, Texas.; Children's Research Institute, University of Texas Southwestern Medical Center, Dallas, Texas.; Howard Hughes Medical Institute, University of Texas Southwestern Medical Center, Dallas, Texas.
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