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A Rapid Filter Insert-based 3D Culture System for Primary Prostate Cell Differentiation
Published on: February 13, 2017
A selective retinoid with high activity against an androgen-resistant prostate cancer cell type
Abstract:
Retinoic acid (RA) and its natural and synthetic analogs, the retinoids, regulate many biological processes, including development, differentiation, cell growth, morphogenesis, metabolism and homeostasis. Retinoid effects are mediated by specific nuclear receptors, the RARs and RXRs. Because of their ability to control cell growth and induce differentiation, retinoids are being examined for the prevention and treatment of several cancers. The majority of retinoids so far analyzed and available inhibit primarily cell proliferation and tumor progression but cannot eliminate cancer cells. In addition, the beneficial effects of the natural retinoids are undermined by undesirable side effects, possibly due to indiscriminate activation of all retinoid receptor subtypes and response pathways. Here, we show that a synthetic retinoid, CD-271, that activates selectively the RAR gamma subtype in a given context, shows increased anti-proliferative activity against certain carcinoma cells over all-trans-retinoic acid (tRA). CD-271 exhibits enhanced activity against DU-145 prostate adenocarcinoma cells through apoptosis-inducing activity, while tRA does not. The selective anti-cancer cell action appears to be receptor-mediated as an RAR antagonist reverses the inhibition. This profile was not seen with other selective retinoids, such as RAR alpha-selective agonists, anti-AP-1 compounds and a non-apoptosis inducing RAR gamma agonist. Our data point to a specific role for RAR gamma in controlling the growth of the prostate, consistent with previous RAR gamma gene knockout data. The identified retinoid represents a new class of compounds with potential for the treatment of prostate cancer.
Insights
A new synthetic retinoid, CD-271, selectively targets RAR gamma, showing enhanced anti-cancer activity against prostate cancer cells by inducing apoptosis. This offers a promising new therapeutic approach for prostate cancer treatment.
Area of Science:
- Molecular biology
- Cancer research
- Pharmacology
Background:
- Retinoids, including retinoic acid (RA), regulate crucial biological processes via nuclear receptors (RARs and RXRs).
- Retinoids are investigated for cancer treatment due to their antiproliferative and differentiation-inducing properties.
- Current retinoids often cause side effects and may not eliminate cancer cells effectively.
Purpose of the Study:
- To investigate the efficacy of a novel synthetic retinoid, CD-271, with selective RAR gamma activation.
- To compare CD-271's anti-cancer activity against prostate adenocarcinoma cells with all-trans-retinoic acid (tRA).
- To elucidate the mechanism of action and receptor mediation of CD-271's effects.
Main Methods:
- Treatment of DU-145 prostate adenocarcinoma cells with CD-271 and tRA.
- Assessment of cell proliferation and apoptosis induction.
- Evaluation of RAR antagonist effects to confirm receptor mediation.
Main Results:
- CD-271 demonstrated superior anti-proliferative activity against carcinoma cells compared to tRA.
- CD-271 selectively induced apoptosis in DU-145 prostate cancer cells, unlike tRA.
- The anti-cancer effects of CD-271 were confirmed to be RAR-mediated.
Conclusions:
- Selective RAR gamma activation by CD-271 offers enhanced anti-cancer efficacy.
- CD-271 represents a new class of retinoids with potential for targeted prostate cancer therapy.
- RAR gamma plays a specific role in prostate cancer growth control.
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