A new mathematical approach to methadone conversion
- 1*,
- 2,
- 3
- 1Department of Hospice and Palliative Medicine, Wellmont Health System, Kingsport, USA.
- 2Department of Internal Medicine, ETSU Quillen College of Medicine, Johnson City, USA.
- 3Department of Family Medicine, ETSU Quillen College of Medicine, Kingsport, TN, USA.
Published in Journal of Pharmacology and Pharmacotherapeutics
Correspondence: Steven J. Baumrucker
Department of Hospice and Palliative Medicine, Wellmont Health System, Kingsport, USA.
Email: hospicedoc@charter.net
Copyright: © 2016 The Author(s). This is an open access article.
Published: Jan 1, 2016, Received: Dec 16, 2015, Accepted: May 30, 2016
Abstract
For the past 20 years, methadone has been experiencing resurgence in the palliative care community as a second-line opioid for the treatment of cancer pain. Methadone is useful for refractory pain in cancer patients or in those who could not tolerate the side effects of other opioids; its positives are well cited in recent literature including dual elimination without active metabolites, N-methyl-D-aspartate antagonism, mu and delta receptor activity, multiple routes of administration, rapid onset of action, long half-life, low cost, and fewer adverse effects. Despite the abundance of recent case reports and literature reviews demonstrating the effective use of methadone in cancer patients, there is a lack of consensus for an appropriate method for converting morphine (and by extension, other opioids) to methadone.
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