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MR Molecular Imaging of Prostate Cancer with a Small Molecular CLT1 Peptide Targeted Contrast Agent
Published on: September 3, 2013
Targeted nanomedicine modalities for prostate cancer treatment
Lital Cohen1, Yoav D Livney1, Yehuda G Assaraf2
1The Laboratory of Biopolymers for Food and Health, Department of Biotechnology and Food Engineering, Technion - Israel Institute of Technology, Haifa, 3200003, Israel.
Abstract:
Prostate cancer (PC) is the second most common cause of death amongst men in the USA. Therapy of PC has been transformed in the past decade by introducing novel therapeutics, advanced functional imaging and diagnostic approaches, next generation sequencing, as well as improved application of existing therapies in localized PC. Treatment of PC at the different stages of the disease may include surgery, androgen deprivation therapy (ADT), chemotherapy and radiation therapy. However, although ADT has proven efficacious in PC treatment, its effectiveness may be temporary, as these tumors frequently develop molecular mechanisms of therapy resistance, which allow them to survive and proliferate even under conditions of testosterone deprivation, inhibition of androgen receptor signaling, or cytotoxic drug treatment. Importantly, ADT was found to induce key alterations which frequently result in the formation of metastatic tumors displaying a therapy refractory phenotype. Hence, to overcome these serious therapeutic impediments, novel PC cell-targeted therapeutic strategies are being developed. These include diverse platforms enabling specific enhanced antitumor drug uptake and increased intracellular accumulation. Studies have shown that these novel treatment modalities lead to enhanced antitumor activity and diminished systemic toxicity due to the use of selective targeting and decreased drug doses. The underlying mechanism of targeting and internalization is based upon the interaction between a selective ligand, conjugated to a drug-loaded nanoparticle or directly to an anti-cancer drug, and a specific plasma membrane biomarker, uniquely overexpressed on the surface of PC cells. Another targeted therapeutic approach is the delivery of unique anti-oncogenic signaling pathway-based therapeutic drugs, which are selectively cytotoxic to PC cells. The current paper reviews PC targeted modalities reported in the past 6 years, and discusses both the advantages and limitations of the various targeted treatment strategies.
Insights
Novel targeted therapies show promise for overcoming prostate cancer (PC) resistance to androgen deprivation therapy (ADT). These strategies enhance drug delivery to PC cells, improving efficacy and reducing side effects.
Area of Science:
- Oncology
- Pharmacology
- Biotechnology
Background:
- Prostate cancer (PC) is a leading cause of cancer death in men.
- Androgen deprivation therapy (ADT) is a common PC treatment, but resistance often develops.
- ADT-induced resistance can lead to metastatic and therapy-refractory tumors.
Purpose of the Study:
- To review novel targeted therapeutic strategies for prostate cancer developed in the last six years.
- To discuss the advantages and limitations of these emerging PC treatment modalities.
Main Methods:
- Review of recent scientific literature (past 6 years) on targeted PC therapies.
- Analysis of strategies involving targeted drug delivery via nanoparticles or direct conjugation.
- Examination of therapies targeting specific anti-oncogenic signaling pathways in PC cells.
Main Results:
- Targeted therapies demonstrate enhanced antitumor drug uptake and intracellular accumulation.
- These approaches lead to improved antitumor activity and reduced systemic toxicity.
- Mechanisms involve ligand-biomarker interactions for selective cell targeting and internalization.
Conclusions:
- Novel targeted therapeutic strategies offer a promising avenue to overcome ADT resistance in prostate cancer.
- Targeted drug delivery and pathway-specific agents show potential for improved efficacy and safety.
- Further research is needed to fully elucidate the advantages and limitations of these advanced PC treatments.

