A systematic review of non-standard dosing of oral anticancer therapies

Faouzi Djebbari1, Nicola Stoner2, Verna Teresa Lavender3

  • 1Oxford Cancer and Haematology Centre & NIHR Oxford Biomedical Research Centre, Churchill Hospital, Oxford University Hospitals NHS Foundation Trust, Old Road, Headington, Oxford, OX3 7LE, UK. faouzi.djebbari@ouh.nhs.uk.

BMC Cancer
|November 24, 2018
PubMed
Abstract

Insights

Non-standard dosing of oral anticancer therapies may reduce toxicity without compromising outcomes, but evidence is limited. Dose interruption of sunitinib shows promise and warrants further clinical trials for improved cancer treatment.

Area of Science:

  • Oncology
  • Pharmacology
  • Clinical Pharmacy

Background:

  • Oral systemic anticancer therapies (SACT) have improved cancer survival.
  • Oral targeted SACT can cause toxicities, impacting quality of life and adherence.
  • Non-standard dosing is increasingly used to mitigate SACT toxicity, but lacks clear guidance.

Purpose of the Study:

  • To systematically review evidence on non-standard dosing of oral SACT.
  • To evaluate outcomes associated with non-standard dosing strategies in oncology and malignant hematology.

Main Methods:

  • Conducted a systematic review of 78 oral SACT across multiple databases.
  • Included studies were critically appraised and data synthesized into themes: dose interruption, dose reduction, and other strategies.
  • Searched MEDLINE®, EMBASE®, Cochrane Library©, and CINAHL©.

Main Results:

  • Thirty-four studies met inclusion criteria, reporting on eleven oral SACT.
  • Dose interruptions were most common (14 studies), followed by dose reductions (9 studies).
  • Dose interruption of sunitinib in renal cell carcinoma showed similar/improved outcomes and reduced toxicity compared to standard dosing.

Conclusions:

  • Limited evidence supports current non-standard dosing of oral SACT.
  • Dose interruption of sunitinib warrants further investigation in prospective trials.
  • More research is needed to establish optimal non-standard dosing regimens.

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