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PMID: 27917453 Published · ppublish English Clinical Trial, Phase I Journal Article Multicenter Study

Phase I study of MRX34, a liposomal miR-34a mimic, administered twice weekly in patients with advanced solid tumors.

Investigational new drugs ·Vol. 35 ·No. 2 ·2017-00-00 ·Pages 180-188

Beg MS, Brenner AJ, Sachdev J, Borad M, Kang YK, Stoudemire J, Smith S, Bader AG, Kim S, Hong DS

Abstract

Purpose Naturally occurring tumor suppressor microRNA-34a (miR-34a) downregulates the expression of >30 oncogenes across multiple oncogenic pathways, as well as genes involved in tumor immune evasion, but is lost or under-expressed in many malignancies. This first-in-human, phase I study assessed the maximum tolerated dose (MTD), safety, pharmacokinetics, and clinical activity of MRX34, a liposomal miR-34a mimic, in patients with advanced solid tumors. Patients and Methods Adult patients with solid tumors refractory to standard treatment were enrolled in a standard 3 + 3 dose escalation trial. MRX34 was given intravenously twice weekly (BIW) for three weeks in 4-week cycles. Results Forty-seven patients with various solid tumors, including hepatocellular carcinoma (HCC; n = 14), were enrolled. Median age was 60 years, median prior therapies was 4 (range, 1-12), and most were Caucasian (68%) and male (57%). Most common adverse events (AEs) included fever (all grade %/G3%: 64/2), fatigue (57/13), back pain (57/11), nausea (49/2), diarrhea (40/11), anorexia (36/4), and vomiting (34/4). Laboratory abnormalities included lymphopenia (G3%/G4%: 23/9), neutropenia (13/11), thrombocytopenia (17/0), increased AST (19/4), hyperglycemia (13/2), and hyponatremia (19/2). Dexamethasone premedication was required to manage infusion-related AEs. The MTD for non-HCC patients was 110 mg/m2, with two patients experiencing dose-limiting toxicities of G3 hypoxia and enteritis at 124 mg/m2. The half-life was >24 h, and Cmax and AUC increased with increasing dose. One patient with HCC achieved a prolonged confirmed PR lasting 48 weeks, and four patients experienced SD lasting ≥4 cycles. Conclusion MRX34 treatment with dexamethasone premedication was associated with acceptable safety and showed evidence of antitumor activity in a subset of patients with refractory advanced solid tumors. The MTD for the BIW schedule was 110 mg/m2 for non-HCC and 93 mg/m2 for HCC patients. Additional dose schedules of MRX34 have been explored to improve tolerability.

Keywords
Advanced solid tumors Experimental therapeutics Phase I trial miR-34a microRNA
MeSH Terms
Adult Aged Aged, 80 and over Antineoplastic Agents/administration & dosage,adverse effects,pharmacokinetics,therapeutic use Drug Administration Schedule Female Humans Liposomes Male Maximum Tolerated Dose MicroRNAs/administration & dosage,adverse effects,pharmacokinetics,therapeutic use Middle Aged Nanoparticles/administration & dosage,adverse effects Neoplasms/drug therapy,metabolism Treatment Outcome
Chemicals
Antineoplastic Agents Liposomes MIRN34 microRNA, human MicroRNAs
Authors & Affiliations
10 authors, click to expand affiliations / ORCID
Beg Muhammad S
Division of Hematology/Oncology, University of Texas (UT) Southwestern Medical Center, 5323 Harry Hines Boulevard, Dallas, TX, 75390-8852, USA. Muhammad.Beg@UTSouthwestern.edu.
Brenner Andrew J
UT Health Science Center, San Antonio, TX, USA.
Sachdev Jasgit
Scottsdale Healthcare Research Institute, Scottsdale, AZ, USA.
Borad Mitesh
Mayo Clinic Cancer Center, Scottsdale, AZ, USA.
Kang Yoon-Koo
Asan Medical Center, Seoul, South Korea.
Stoudemire Jay
Mirna Therapeutics, Inc, Austin, TX, USA.
Smith Susan
Mirna Therapeutics, Inc, Austin, TX, USA.
Bader Andreas G
Mirna Therapeutics, Inc, Austin, TX, USA.
Kim Sinil
Mirna Therapeutics, Inc, Austin, TX, USA.
Hong David S
UT MD Anderson Cancer Center, Houston, TX, USA.
References (41)
41 references, click to expand
  1. Activation of complement by therapeutic liposomes and other lipid excipient-based therapeutic products: prediction and prevention.
    Adv Drug Deliv Rev. 2011 Sep 16;63(12):1020-30 PMID: 21787819
  2. In-depth analysis shows synergy between erlotinib and miR-34a.
    PLoS One. 2014 Feb 14;9(2):e89105 PMID: 24551227
  3. Systemic microRNA-34a delivery induces apoptosis and abrogates growth of diffuse large B-cell lymphoma in vivo.
    Leukemia. 2012 Nov;26(11):2421-4 PMID: 22522790
  4. Systemic delivery of a miR34a mimic as a potential therapeutic for liver cancer.
    Mol Cancer Ther. 2014 Oct;13(10):2352-60 PMID: 25053820
  5. Inhibiting DNA Methylation Causes an Interferon Response in Cancer via dsRNA Including Endogenous Retroviruses.
    Cell. 2015 Aug 27;162(5):974-86 PMID: 26317466
  6. Development of a lung cancer therapeutic based on the tumor suppressor microRNA-34.
    Cancer Res. 2010 Jul 15;70(14):5923-30 PMID: 20570894
  7. Tumor suppressor miR-34a targets PD-L1 and functions as a potential immunotherapeutic target in acute myeloid leukemia.
    Cell Signal. 2015 Mar;27(3):443-52 PMID: 25499621
  8. The predictive effect of overexpressed miR-34a on good survival of cancer patients: a systematic review and meta-analysis.
    Onco Targets Ther. 2015 Sep 25;8:2709-19 PMID: 26445554
  9. The microRNA miR-34a inhibits prostate cancer stem cells and metastasis by directly repressing CD44.
    Nat Med. 2011 Feb;17(2):211-5 PMID: 21240262
  10. Analysis of 13 cell types reveals evidence for the expression of numerous novel primate- and tissue-specific microRNAs.
    Proc Natl Acad Sci U S A. 2015 Mar 10;112(10):E1106-15 PMID: 25713380
  11. MicroRNA and cancer.
    Mol Oncol. 2012 Dec;6(6):590-610 PMID: 23102669
  12. PDL1 Regulation by p53 via miR-34.
    J Natl Cancer Inst. 2015 Nov 17;108(1):null PMID: 26577528
  13. TP53-independent function of miR-34a via HDAC1 and p21(CIP1/WAF1.).
    Mol Ther. 2013 Sep;21(9):1678-86 PMID: 23836017
  14. A qRT-PCR Method for Determining the Biodistribution Profile of a miR-34a Mimic.
    Methods Mol Biol. 2015;1317:125-33 PMID: 26072405
  15. The promise of microRNA replacement therapy.
    Cancer Res. 2010 Sep 15;70(18):7027-30 PMID: 20807816
  16. MicroRNA profiling of BRCA1/2 mutation-carrying and non-mutation-carrying high-grade serous carcinomas of ovary.
    PLoS One. 2009 Oct 02;4(10):e7314 PMID: 19798417
  17. MicroRNA molecular profiles associated with diagnosis, clinicopathologic criteria, and overall survival in patients with resectable pancreatic ductal adenocarcinoma.
    Clin Cancer Res. 2012 Jan 15;18(2):534-45 PMID: 22114136
  18. miR-34 - a microRNA replacement therapy is headed to the clinic.
    Front Genet. 2012 Jul 02;3:120 PMID: 22783274
  19. miR-34c is downregulated in prostate cancer and exerts tumor suppressive functions.
    Int J Cancer. 2010 Dec 15;127(12):2768-76 PMID: 21351256
  20. Increased microRNA-34b and -34c predominantly expressed in stromal tissues is associated with poor prognosis in human colon cancer.
    PLoS One. 2015 Apr 20;10(4):e0124899 PMID: 25894979
  21. In Vivo Delivery of miR-34a Sensitizes Lung Tumors to Radiation Through RAD51 Regulation.
    Mol Ther Nucleic Acids. 2015 Dec 15;4:e270 PMID: 26670277
  22. miR-34a inhibits migration and invasion by down-regulation of c-Met expression in human hepatocellular carcinoma cells.
    Cancer Lett. 2009 Mar 8;275(1):44-53 PMID: 19006648
  23. A microRNA component of the p53 tumour suppressor network.
    Nature. 2007 Jun 28;447(7148):1130-4 PMID: 17554337
  24. Oncomirs - microRNAs with a role in cancer.
    Nat Rev Cancer. 2006 Apr;6(4):259-69 PMID: 16557279
  25. The miR-34 family in cancer and apoptosis.
    Cell Death Differ. 2010 Feb;17(2):193-9 PMID: 19461653
  26. Epigenetics and genetics. MicroRNAs en route to the clinic: progress in validating and targeting microRNAs for cancer therapy.
    Nat Rev Cancer. 2011 Nov 24;11(12):849-64 PMID: 22113163
  27. Developing therapeutic microRNAs for cancer.
    Gene Ther. 2011 Dec;18(12):1121-6 PMID: 21633392
  28. MicroRNAs: genomics, biogenesis, mechanism, and function.
    Cell. 2004 Jan 23;116(2):281-97 PMID: 14744438
  29. dsRNA-activation of TLR3 and RLR signaling: gene induction-dependent and independent effects.
    J Interferon Cytokine Res. 2014 Jun;34(6):427-36 PMID: 24905199
  30. MicroRNA miR-34 inhibits human pancreatic cancer tumor-initiating cells.
    PLoS One. 2009 Aug 28;4(8):e6816 PMID: 19714243
  31. A phase 1 study of the BCL2-targeted deoxyribonucleic acid inhibitor (DNAi) PNT2258 in patients with advanced solid tumors.
    Cancer Chemother Pharmacol. 2014 Feb;73(2):363-71 PMID: 24297683
  32. MicroRNA signatures in human cancers.
    Nat Rev Cancer. 2006 Nov;6(11):857-66 PMID: 17060945
  33. Systemic delivery of tumor suppressor microRNA mimics using a neutral lipid emulsion inhibits lung tumors in mice.
    Mol Ther. 2011 Jun;19(6):1116-22 PMID: 21427705
  34. miR-34a predicts survival of Ewing's sarcoma patients and directly influences cell chemo-sensitivity and malignancy.
    J Pathol. 2012 Apr;226(5):796-805 PMID: 21960059
  35. Quantification of therapeutic miRNA mimics in whole blood from nonhuman primates.
    Anal Chem. 2014 Feb 4;86(3):1534-42 PMID: 24397447
  36. MicroRNAs: target recognition and regulatory functions.
    Cell. 2009 Jan 23;136(2):215-33 PMID: 19167326
  37. Epigenetic Modulators and the New Immunotherapies.
    N Engl J Med. 2016 Feb 18;374(7):684-6 PMID: 26886527
  38. Immune Checkpoint Blockade in Cancer Therapy.
    J Clin Oncol. 2015 Jun 10;33(17 ):1974-82 PMID: 25605845
  39. MicroRNA-34a enhances T cell activation by targeting diacylglycerol kinase ζ.
    PLoS One. 2013 Oct 17;8(10):e77983 PMID: 24147106
  40. Synthetic miR-34a mimics as a novel therapeutic agent for multiple myeloma: in vitro and in vivo evidence.
    Clin Cancer Res. 2012 Nov 15;18(22):6260-70 PMID: 23035210
  41. Misinterpreting the therapeutic effects of small interfering RNA caused by immune stimulation.
    Hum Gene Ther. 2008 Oct;19(10):991-9 PMID: 18713023
Article Info
Journal
Investigational new drugs
Abbr.
Invest New Drugs
ISSN
1573-0646
Published
2017-00-00
Epub
2016-00-05
Pages
180-188
Language
English
Region
United States
NLM ID
8309330
PMCID
PMC5893501
Subset
IM
Grants
NCI NIH HHS · P30 CA016672 · United States
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