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MR Molecular Imaging of Prostate Cancer with a Small Molecular CLT1 Peptide Targeted Contrast Agent
Published on: September 3, 2013
Molecular Iodine Induces Anti- and Pro-Neoplastic Effects in Prostate Cancer Models
Carlos Montes de Oca1, Lourdes Álvarez1, Carmen Aceves1
1Departamento de Neurobiología Celular y Molecular, Instituto de Neurobiología, Universidad Nacional Autónoma de México, Campus Juriquilla, Querétaro 76230, Mexico.
Abstract:
Advanced prostate cancer frequently develops resistance to antiandrogen therapy and acquires an aggressive neuroendocrine phenotype. Antiandrogens stimulate peroxisome proliferator-activated receptor gamma (PPARG) signaling and cancer progression. Molecular iodine (I2) induces cytotoxic effects in prostate cancer cell lines and antineoplastic effects in neuroblastoma and breast cancer through the indirect activation of PPARG. We investigated the adjuvant effects of I2 and androgen deprivation in prostate cancer, as well as the role of PPARG in these projections. We used androgen-dependent and androgen-independent cell lines and TRAMP mice (transgenic adenocarcinoma of the mouse prostate) as biological models, as well as bicalutamide (Bic), enzalutamide (Enz), and charcoal-stripped fetal bovine serum (CS-FBS) as androgen deprivation models. I2 promoted cytotoxic effects, whereas in surviving cells, it stimulated the outgrowth of neurite-like projections, regulated lipid content, and reduced invasive capacity. Androgen deprivation plus I2 magnified these effects, while GW9662 (PPARG antagonist) did not block them. In vivo, I2 increased the degree of prostatic desmoplasia in the sham mice but did not amplify the stromal response or reduce the epithelial lesion score induced by castration in TRAMP. In conclusion, I2 showed anti-cancer (cytotoxic, anti-invasive) and pro-cancer (pro-neurite, lipid accumulation, desmoplasia) effects through a PPARG-independent mechanism.
Insights
Molecular iodine (I2) exhibits dual effects in advanced prostate cancer, showing cytotoxic and anti-invasive properties. However, it also promotes neuroendocrine-like features and lipid accumulation via a mechanism independent of PPARG signaling.
Area of Science:
- Oncology
- Molecular Biology
- Endocrinology
Background:
- Advanced prostate cancer often develops resistance to antiandrogen therapy.
- This resistance is associated with an aggressive neuroendocrine phenotype.
- Antiandrogens can stimulate peroxisome proliferator-activated receptor gamma (PPARG) signaling, promoting cancer progression.
Purpose of the Study:
- To investigate the adjuvant effects of molecular iodine (I2) combined with androgen deprivation in prostate cancer.
- To elucidate the role of PPARG in the observed effects of I2 and androgen deprivation.
Main Methods:
- Utilized androgen-dependent and -independent prostate cancer cell lines.
- Employed TRAMP mice (transgenic adenocarcinoma of the mouse prostate) as an in vivo model.
- Simulated androgen deprivation using bicalutamide, enzalutamide, and charcoal-stripped fetal bovine serum, with and without I2 treatment.
Main Results:
- I2 induced cytotoxicity and, in surviving cells, stimulated neurite-like projections, altered lipid content, and reduced invasiveness.
- Combined androgen deprivation and I2 treatment amplified these effects.
- The PPARG antagonist GW9662 did not block the effects of I2, indicating a PPARG-independent mechanism.
- In vivo, I2 increased prostatic desmoplasia in sham mice but did not alter castration-induced effects in TRAMP mice.
Conclusions:
- Molecular iodine (I2) demonstrates both anti-cancer (cytotoxic, anti-invasive) and pro-cancer (neurite outgrowth, lipid accumulation, desmoplasia) effects.
- These dual actions occur through a mechanism that is independent of PPARG signaling.
- I2 presents a complex profile warranting further investigation in prostate cancer treatment strategies.
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