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Testing Novel Pyrimidinyl Rexinoids: A New Paradigm for Evaluating Rexinoids for Cancer Prevention
Di Zhang1, Ana S Leal1, Sarah Carapellucci1
1Department of Pharmacology and Toxicology, Michigan State University, East Lansing, Michigan.
Abstract:
Rexinoids, selective ligands for retinoid X receptors (RXR), have shown promise in preventing many types of cancer. However, the limited efficacy and undesirable lipidemic side-effects of the only clinically approved rexinoid, bexarotene, drive the search for new and better rexinoids. Here we report the evaluation of novel pyrimidinyl (Py) analogues of two known chemopreventive rexinoids, bexarotene (Bex) and LG100268 (LG268) in a new paradigm. We show that these novel derivatives were more effective agents than bexarotene for preventing lung carcinogenesis induced by a carcinogen. In addition, these new analogues have an improved safety profile. PyBex caused less elevation of plasma triglyceride levels than bexarotene, while PyLG268 reduced plasma cholesterol levels and hepatomegaly compared with LG100268. Notably, this new paradigm mechanistically emphasizes the immunomodulatory and anti-inflammatory activities of rexinoids. We reveal new immunomodulatory actions of the above rexinoids, especially their ability to diminish the percentage of macrophages and myeloid-derived suppressor cells in the lung and to redirect activation of M2 macrophages. The rexinoids also potently inhibit critical inflammatory mediators including IL6, IL1β, CCL9, and nitric oxide synthase (iNOS) induced by lipopolysaccharide. Moreover, in vitro iNOS and SREBP (sterol regulatory element-binding protein) induction assays correlate with in vivo efficacy and toxicity, respectively. Our results not only report novel pyrimidine derivatives of existing rexinoids, but also describe a series of biological screening assays that will guide the synthesis of additional rexinoids. Further progress in rexinoid synthesis, potency, and safety should eventually lead to a clinically acceptable and useful new drug for patients with cancer.
Insights
New pyrimidinyl rexinoid analogues show improved efficacy and safety for cancer prevention. These novel compounds demonstrate enhanced anti-cancer effects and reduced side effects compared to existing treatments.
Area of Science:
- Oncology
- Pharmacology
- Immunology
Background:
- Rexinoids are selective ligands for retinoid X receptors (RXRs) with demonstrated chemopreventive potential.
- The clinical use of bexarotene is limited by efficacy and adverse lipidemic effects, necessitating the development of improved rexinoids.
Purpose of the Study:
- To evaluate novel pyrimidinyl (Py) analogues of bexarotene (Bex) and LG100268 (LG268) for cancer chemoprevention.
- To investigate the immunomodulatory and anti-inflammatory mechanisms underlying rexinoid activity.
- To establish in vitro assays correlating with in vivo efficacy and toxicity.
Main Methods:
- Synthesis and evaluation of novel pyrimidinyl analogues of bexarotene and LG100268.
- Assessment of lung carcinogenesis prevention in a carcinogen-induced model.
- Analysis of plasma lipid profiles, liver parameters, and immune cell populations in the lung.
- Measurement of inflammatory mediators (IL6, IL1β, CCL9, iNOS) and in vitro iNOS and SREBP induction assays.
Main Results:
- Pyrimidinyl analogues demonstrated superior efficacy in preventing lung carcinogenesis compared to bexarotene.
- Novel analogues exhibited improved safety profiles, including reduced plasma triglyceride elevation (PyBex) and decreased cholesterol and hepatomegaly (PyLG268).
- Rexinoids modulated immune responses by reducing lung macrophages and myeloid-derived suppressor cells, and inhibiting inflammatory mediators like IL6 and iNOS.
Conclusions:
- Novel pyrimidinyl rexinoid derivatives offer enhanced chemopreventive efficacy and safety.
- Rexinoids exert anti-cancer effects through immunomodulatory and anti-inflammatory mechanisms.
- Developed in vitro assays can guide the future synthesis of potent and safe rexinoids for cancer therapy.
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