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Published on: August 25, 2021
Neurotrophin Trk Receptors: New Targets for Cancer Therapy
1Department of Neuroscience, Scientific Institute San Raffaele, Vita-Salute San Raffaele University, Milan, Italy. meldolesi.jacopo@hsr.it.
Abstract:
In the last few years, exciting reports have emerged regarding the role of the two types of neurotrophin receptors, p75NTR and Trks, not only in neurons, where they were discovered, but also in non-neural cells and, especially, in numerous cancers, including breast, lung, colon-rectum, pancreas, prostate, glioblastoma, neuroblastoma, myeloma, and lymphoid tumors. Traditionally, p75NTR, activated by all neurotrophins and their precursors, is an inhibitor. In various cancers, however, activated p75NTR induces variable effects, from inhibition to stimulation of cell proliferation, dependent on their direct or coordinate/indirect mechanism(s) of action. TrkA, TrkB, and TrkC, activated by distinct neurotrophins, are high affinity stimulatory receptors. In cancers, activation of Trks, especially of TrkB, are stimulators of cell proliferation, aggressiveness, and metastases. In rare cancers, these processes are due not to receptor activation but to fusion or mutation of the encoding genes. A considerable panel of anti-Trk drugs, developed recently, has been investigated both in vitro and in living mice for their effects on cancer cells. Many such drugs protect from cancers by preventing cell proliferation and inducing apoptosis. At present, these drugs are under control by trials, to promote introduction in human therapy. Moreover, anti-Trk drugs have been employed also in combination with classical chemotherapeutic drugs. So far, studies in mice have been positive. The chemotherapeutic/anti-receptor combinations exhibited in fact increased potency and down-regulation of resistance, with no increase of side effects.
Insights
Neurotrophin receptors p75NTR and Trks play roles in various cancers. Anti-Trk drugs show promise in preventing cancer cell proliferation and enhancing chemotherapy efficacy in preclinical studies.
Area of Science:
- Oncology
- Molecular Biology
- Neuroscience
Background:
- Neurotrophin receptors p75NTR and Trks are implicated in numerous cancers beyond their neuronal roles.
- p75NTR traditionally inhibits but can stimulate cancer cell proliferation, while Trks (especially TrkB) promote proliferation, aggressiveness, and metastasis.
- Cancer-related receptor activity can stem from gene fusions or mutations, not solely receptor activation.
Purpose of the Study:
- To investigate the role of neurotrophin receptors in various cancers.
- To evaluate the therapeutic potential of anti-Trk drugs in cancer treatment.
- To assess the efficacy of combining anti-Trk drugs with conventional chemotherapy.
Main Methods:
- In vitro and in vivo (mice) studies of cancer cells.
- Analysis of neurotrophin receptor function in diverse tumor types.
- Preclinical evaluation of novel anti-Trk agents and combination therapies.
Main Results:
- Anti-Trk drugs demonstrated cancer cell proliferation inhibition and apoptosis induction in preclinical models.
- Combination therapy with anti-Trk drugs and chemotherapy showed enhanced potency and reduced resistance.
- No significant increase in side effects was observed with combination therapies in mouse studies.
Conclusions:
- Neurotrophin receptors are significant targets in oncology.
- Anti-Trk drugs represent a promising therapeutic strategy for various cancers.
- Combination therapies involving anti-Trk drugs warrant further clinical investigation for improved cancer treatment outcomes.
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