Home LiteratureArticle Details
PMID: 27151652 Published · ppublish English Clinical Trial, Phase I Journal Article

Hyperglycemia and Phosphatidylinositol 3-Kinase/Protein Kinase B/Mammalian Target of Rapamycin (PI3K/AKT/mTOR) Inhibitors in Phase I Trials: Incidence, Predictive Factors, and Management.

The oncologist ·Vol. 21 ·No. 7 ·2016-00-00 ·Pages 855-60

Khan KH, Wong M, Rihawi K, Bodla S, Morganstein D, Banerji U, Molife LR

Abstract

Dysregulation of the phosphatidylinositol 3-kinase/protein kinase B/mammalian target of rapamycin (PI3K/AKT/mTOR) pathway is implicated in human cancer growth and progression. Agents targeting this pathway are associated with hyperglycemia due to interaction with the insulin-glucose regulatory axis. Identifying the predictive factors for hyperglycemia in patients treated with these agents may help direct future management. Clinical characteristics and outcomes of patients treated consecutively with PI3K, AKT, or mTOR inhibitors in the Drug Development Unit, The Royal Marsden (RM) National Health Service (NHS) Foundation Trust, between 2007 and 2012 were recorded. Baseline variables and their association with grade 3 hyperglycemia (Common Terminology Criteria for Adverse Events, version 3.0) were analyzed by using the chi-square test and Fisher exact test for categorical variables and binary logistic regression for continuous variables. A total of 341 patients were treated in 12 phase I trials of PI3K/AKT/mTOR inhibitors, and 298 patients (87.4%) developed hyperglycemia. Hyperglycemia was grade 1 in 217 (72.8%) and grade 2 in 61 (20.5%) patients, respectively. Grade ≥3 hyperglycemia was seen in 6.7% of patients (n = 20). According to the chi-square test, age <65 years (p = .03), history of diabetes (p = .003), and treatment with AKT and dual PI3K/mTOR inhibitors (p < .0005) predicted the occurrence of grade 3 hyperglycemia. Of 24 patients requiring intervention, 20 received metformin, 2 dietary advice, 1 insulin, and 1 both metformin and insulin. One patient required dose reduction. There were no permanent drug discontinuations, and no hyperglycemia-related dose-limiting toxicities were observed; thus, the recommended phase II dose was not affected by the hyperglycemia observed in our cohort. Hyperglycemia is common in patients treated with PI3K/AKT/mTOR inhibitors; however, it is manageable with conventional treatment. Predictive factors of age, history of diabetes, and administration of AKT and dual PI3K/mTOR inhibitors warrant prospective validation. This study reviewed the clinical data of 341 patients treated in 12 phase I trials of agents targeting phosphatidylinositol3-kinase (PI3), protein kinase B (AKT), and mammalian target of rapamycin (mTOR), as well as dual inhibitors. Hyperglycemia was evident in 87.4% of patients but was ≥grade 3 in just 6.7%. Age <65 years, history of diabetes, and treatment with AKT and dual PI3K/mTOR inhibitors were each associated with grade 3 hyperglycemia. Management of patients was uncomplicated, and no permanent drug discontinuations were necessary. Despite the small study size, these findings support continued caution about enrolling patients with a history of diabetes into such trials. However, clinicians may be reassured, pending prospective validation of these results, that significant hyperglycemia is not frequent and, when it occurs, is manageable.

Keywords
AKT inhibitors Hyperglycemia PI3K inhibitors PI3K/AKT/mTOR Phase I trials
MeSH Terms
Adult Aged Female Humans Hyperglycemia/chemically induced Male Middle Aged Neoplasms/drug therapy Phosphoinositide-3 Kinase Inhibitors Protein Kinase Inhibitors/adverse effects Proto-Oncogene Proteins c-akt/antagonists & inhibitors Retrospective Studies TOR Serine-Threonine Kinases/antagonists & inhibitors
Chemicals
Phosphoinositide-3 Kinase Inhibitors Protein Kinase Inhibitors MTOR protein, human Proto-Oncogene Proteins c-akt TOR Serine-Threonine Kinases
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Khan Khurum H
Drug Development Unit, Royal Marsden National Health Service Trust, London, United Kingdom.
Wong Mabel
Drug Development Unit, Royal Marsden National Health Service Trust, London, United Kingdom.
Rihawi Karim
Drug Development Unit, Royal Marsden National Health Service Trust, London, United Kingdom.
Bodla Shankar
Department of Statistics, Royal Marsden National Health Service Trust, London, United Kingdom.
Morganstein Daniel
Department of Endocrinology, The Royal Marsden (RM) National Health Service (NHS) Foundation Trust, London, United Kingdom.
Banerji Udai
Drug Development Unit, Royal Marsden National Health Service Trust, London, United Kingdom.
Molife Lulama R
Drug Development Unit, Royal Marsden National Health Service Trust, London, United Kingdom [email protected].
References (28)
28 references, click to expand
  1. Everolimus in postmenopausal hormone-receptor-positive advanced breast cancer.
    N Engl J Med. 2012 Feb 9;366(6):520-9 PMID: 22149876
  2. The phosphatidylinositol-3-kinase inhibitor PX-866 overcomes resistance to the epidermal growth factor receptor inhibitor gefitinib in A-549 human non-small cell lung cancer xenografts.
    Mol Cancer Ther. 2005 Sep;4(9):1349-57 PMID: 16170026
  3. Specific roles of the p110alpha isoform of phosphatidylinsositol 3-kinase in hepatic insulin signaling and metabolic regulation.
    Cell Metab. 2010 Mar 3;11(3):220-30 PMID: 20197055
  4. Obesity-initiated metabolic syndrome and the kidney: a recipe for chronic kidney disease?
    J Am Soc Nephrol. 2004 Nov;15(11):2775-91 PMID: 15504931
  5. Insulin resistance and a diabetes mellitus-like syndrome in mice lacking the protein kinase Akt2 (PKB beta).
    Science. 2001 Jun 1;292(5522):1728-31 PMID: 11387480
  6. The phosphatidylinositol 3-Kinase AKT pathway in human cancer.
    Nat Rev Cancer. 2002 Jul;2(7):489-501 PMID: 12094235
  7. A family with severe insulin resistance and diabetes due to a mutation in AKT2.
    Science. 2004 May 28;304(5675):1325-8 PMID: 15166380
  8. Role of Akt/protein kinase B in metabolism.
    Trends Endocrinol Metab. 2002 Dec;13(10):444-51 PMID: 12431841
  9. Targeting PI3K signalling in cancer: opportunities, challenges and limitations.
    Nat Rev Cancer. 2009 Aug;9(8):550-62 PMID: 19629070
  10. Role of phosphatidylinositol 3-kinase activation on insulin action and its alteration in diabetic conditions.
    Biol Pharm Bull. 2007 Sep;30(9):1610-6 PMID: 17827708
  11. Essential roles of PI(3)K-p110beta in cell growth, metabolism and tumorigenesis.
    Nature. 2008 Aug 7;454(7205):776-9 PMID: 18594509
  12. Temsirolimus, interferon alfa, or both for advanced renal-cell carcinoma.
    N Engl J Med. 2007 May 31;356(22):2271-81 PMID: 17538086
  13. Markers of systemic inflammation in psoriasis: a systematic review and meta-analysis.
    Br J Dermatol. 2013 Aug;169(2):266-82 PMID: 23550658
  14. Increased risk of colorectal cancer in type 2 diabetes is independent of diet quality.
    PLoS One. 2013 Sep 12;8(9):e74616 PMID: 24069323
  15. Liver enzymes but not free fatty acid levels predict markers of insulin sensitivity in overweight and obese, nondiabetic adults.
    Nutr Res. 2013 Oct;33(10):781-8 PMID: 24074735
  16. Higher Risk of Infections with PI3K-AKT-mTOR Pathway Inhibitors in Patients with Advanced Solid Tumors on Phase I Clinical Trials.
    Clin Cancer Res. 2015 Apr 15;21(8):1869-76 PMID: 25649020
  17. The relation of type 2 diabetes and cancer.
    Diabetes Technol Ther. 2001 Summer;3(2):263-74 PMID: 11478333
  18. Targeting the PI3K/Akt/mTOR pathway--beyond rapalogs.
    Oncotarget. 2010 Nov;1(7):530-43 PMID: 21317449
  19. Everolimus for advanced pancreatic neuroendocrine tumors.
    N Engl J Med. 2011 Feb 10;364(6):514-23 PMID: 21306238
  20. Nutrient overload, insulin resistance, and ribosomal protein S6 kinase 1, S6K1.
    Cell Metab. 2006 Jun;3(6):393-402 PMID: 16753575
  21. Efficacy of everolimus in advanced renal cell carcinoma: a double-blind, randomised, placebo-controlled phase III trial.
    Lancet. 2008 Aug 9;372(9637):449-56 PMID: 18653228
  22. From mice to men: insights into the insulin resistance syndromes.
    Annu Rev Physiol. 2006;68:123-58 PMID: 16460269
  23. A Ral GAP complex links PI 3-kinase/Akt signaling to RalA activation in insulin action.
    Mol Biol Cell. 2011 Jan 1;22(1):141-52 PMID: 21148297
  24. Management of metabolic effects associated with anticancer agents targeting the PI3K-Akt-mTOR pathway.
    J Clin Oncol. 2012 Aug 10;30(23):2919-28 PMID: 22778315
  25. First-in-man clinical trial of the oral pan-AKT inhibitor MK-2206 in patients with advanced solid tumors.
    J Clin Oncol. 2011 Dec 10;29(35):4688-95 PMID: 22025163
  26. Dose- and schedule-dependent inhibition of the mammalian target of rapamycin pathway with everolimus: a phase I tumor pharmacodynamic study in patients with advanced solid tumors.
    J Clin Oncol. 2008 Apr 1;26(10):1603-10 PMID: 18332469
  27. Type 2 diabetes mellitus, glycemic control, and cancer risk.
    Eur J Cancer Prev. 2014 Mar;23(2):134-40 PMID: 23962874
  28. Targeting the PI3K-AKT-mTOR signaling network in cancer.
    Chin J Cancer. 2013 May;32(5):253-65 PMID: 23642907
Article Info
Journal
The oncologist
Abbr.
Oncologist
ISSN
1549-490X
Published
2016-00-00
Epub
2016-00-05
Pages
855-60
Language
English
Region
United States
NLM ID
9607837
PMCID
PMC4943382
Subset
IM
Grants
Cancer Research UK · C347/A15403 · United Kingdom
Cancer Research UK · C309/A11566 · United Kingdom
Cancer Research UK · C12540/A15573 · United Kingdom
Department of Health · United Kingdom
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: [email protected]