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Molecular mechanisms in hormone-resistant prostate cancer
Silvia Lăcrămioara Roznovanu1, Cornelia Amălinci, Doiniţa Rădulescu
1CI Parhon Universitary Hospital Iaşi, Laboratory of Pathology, University of Medicine and Pharmacy Gr.T. Popa Iaşi, School of Medicine.
Abstract:
Prostate cancer is the most common malignancy in males. Despite the efforts for an early diagnosis, approximately one third of the cases are diagnosed in advanced clinical stages. Prostatic cancer, as the function of normal prostate is dependent upon androgens. So, androgenic deprivation represents an effective treatment especially in advanced cases. Although, the majority of patients will initially respond to androgen blockade, consequently the hormone-resistance will develop and the tumor will progress. The mechanism that determines tumoral progression during the endocrine treatment is driven by genomic instability, characterized by activating mutations of androgen receptor gene (AR), progression of some cellular clones possible of neuroendocrine origin that become adapted to low concentrations of residual adrenal androgens, suppression of apoptosis, by bcl-2 oncogene overexpression and p53 mutations, and growth factors (IGF-1--Insulin-like growth factor, KGF--keratinocyte growth factor, EGF--Epidermal growth factor, TGF a, b- Transforming growth factor a and b, bFGF--Fibroblastic growth factor type b) regulatory effect through either a paracrine or an autocrine mechanism. The identification of molecular alterations that appear during prostate carcinogenesis, may lead to the identification of new molecular targets to prevent hormone-resistance and to improve the prognosis in prostate cancers.
Insights
Prostate cancer treatment resistance is driven by genomic instability and molecular changes. Identifying these alterations can reveal new targets to improve outcomes for advanced prostate cancer.
Area of Science:
- Oncology
- Molecular Biology
- Urology
Background:
- Prostate cancer is a leading male malignancy, often diagnosed at advanced stages.
- Androgen deprivation therapy is a primary treatment for advanced prostate cancer.
- Hormone resistance frequently develops, leading to tumor progression.
Purpose of the Study:
- To elucidate the molecular mechanisms underlying tumor progression during androgen deprivation therapy for prostate cancer.
- To identify potential molecular targets for overcoming hormone resistance.
Main Methods:
- Review of molecular alterations associated with prostate cancer progression.
- Analysis of genomic instability, gene mutations, and growth factor signaling pathways.
Main Results:
- Genomic instability, including androgen receptor (AR) gene mutations, drives resistance.
- Neuroendocrine differentiation and apoptosis suppression (e.g., bcl-2, p53 mutations) contribute to progression.
- Growth factors (IGF-1, KGF, EGF, TGF-α/β, bFGF) play a role via paracrine and autocrine mechanisms.
Conclusions:
- Understanding molecular alterations is crucial for preventing hormone resistance in prostate cancer.
- Targeting these identified molecular pathways may improve treatment efficacy and patient prognosis.
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