4.7 Article

Dezocine, An Opioid Analgesic, Exerts Antitumor Effects in Triple-Negative Breast Cancer by Targeting Nicotinamide Phosphoribosyltransferase

Journal

FRONTIERS IN PHARMACOLOGY
Volume 12, Issue -, Pages -

Publisher

FRONTIERS MEDIA SA
DOI: 10.3389/fphar.2021.600296

Keywords

triple-negative breast cancer; dezocine; opioid; NAMPT; proliferation; metastasis

Funding

  1. Shenzhen Municipal Government of China [JCYJ20180507182427559, GJHZ20180418190559891]
  2. Natural Science Foundation of Guangdong Province [2019A1515010210]
  3. Guangdong Provincial Science and Technology Program [2019B030301009]
  4. Shenzhen Key Medical Discipline Construction Fund [SZXK060]
  5. Shenzhen Longgang Science and Technology Innovation Bureau [20170405115846716]

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Dezocine has been shown to inhibit proliferation, migration, and invasion of triple-negative breast cancer (TNBC) cells, as well as induce apoptosis. The drug targets NAMPT, inhibiting its enzyme activity and leading to cellular NAD depletion, ultimately inhibiting cell proliferation. These findings suggest that Dezocine and NAMPT may serve as novel therapeutic targets for TNBC.
Opioids are a potential adjuvant treatment for certain cancers; while they are primarily used to relieve chronic pain, these drugs may also affect cancer progression and recurrence. Dezocine is one opioid commonly used in China, but its effects on cancer cells are unknown. Here, we demonstrated the inhibitory effect of dezocine on triple-negative breast cancer (TNBC) cells, and determined the underlying molecular mechanism. We found that dezocine suppressed cell proliferation, migration and invasion, and induced apoptosis in TNBC cells. Xenograft models demonstrated the inhibitory effects of dezocine treatment on TNBC tumor growth in vivo. The anticancer effects of dezocine were independent of opioid receptors, which are not highly expressed by normal breast or breast cancer tissues. A pull-down assay and LC-MS/MS analysis indicated that dezocine directly targets NAMPT: computer modeling verified that the free energy of dezocine kinetically bound into the pocket of NAMPT was -17.4 kcal/mol. Consequently, dezocine treatment inhibited NAMPT enzyme activity, resulting in cellular NAD abolishment. We confirmed the dezocine-induced inhibition of cell proliferation by both NAMPT knockdown and upon treatment with the inhibitor FK866. Our results suggest that both dezocine and NAMPT might represent novel therapeutic targets for TNBC.

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