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Updated: May 29, 2026

Polymalic Acid-based Nano Biopolymers for Targeting of Multiple Tumor Markers: An Opportunity for Personalized Medicine?
Published on: June 13, 2014
The ligand nanoparticle conjugation approach for targeted cancer therapy
1Institute for Drug Research, The School of Pharmacy, The Hebrew University of Jerusalem, Jerusalem, Israel.
Abstract:
Cancer therapy often requires frequent and high drug dosing. Yet, despite the significant progress in cancer research and the wide versatility of potent available drugs, treatment efficacy is still hurdled and often failed by the lack of pharmaco-selectivity to diseased cells, indiscriminate drug toxicities and poor patient compliance. Thus, innovative pharmaceutical solutions are needed to effectively deliver the cytotoxic drugs specifically to the tumor site while minimizing systemic exposure to frequent and high drug doses. Polymeric nanocarriers, particularly nanoparticles, have been extensively studied for improved oncological use. Such nanocarriers hold great potential in cancer treatment as they can be biocompatible, adapted to specific needs, tolerated and deliver high drug payloads while targeting tumors. Active targeting, as opposed to passive targeting, should add value to selective and site specific treatment. Active targeting of nanosized drug delivery systems is firmly rooted in the Magic Bullet Concept as was envisioned by Paul Ehrlich over 100 years ago. This targeting strategy is based on the molecular recognition of tumor biomarkers which are over-expressed on cancer cells, via specific vector molecules conjugated to the surface of the drug carrier. These vector molecules dictate the carrier's biodistribution and its biological affinity to the desired site of action. Many recent publications have shown encouraging results suggesting that targeting nanocarriers represent a highly-promising strategy for improved cancer treatment. This chapter will focus mainly on polymeric nanoparticles as the main drug carriers to be conjugated to various ligands able to deliver the drug to the specific desired pathological tissue.
Insights
Targeted polymeric nanoparticles offer a promising solution for cancer therapy by delivering drugs directly to tumor cells. This approach enhances treatment efficacy and reduces systemic toxicity, improving patient outcomes.
Area of Science:
- Nanomedicine
- Oncology
- Polymer Chemistry
Background:
- Cancer therapy faces challenges with drug selectivity, toxicity, and patient compliance.
- Current treatments often require high, frequent drug doses, leading to systemic side effects.
- Innovative drug delivery systems are needed to target cancer cells specifically.
Purpose of the Study:
- To explore polymeric nanoparticles as advanced drug carriers for cancer treatment.
- To investigate the potential of active targeting strategies for site-specific drug delivery.
- To highlight the role of ligand-conjugated nanoparticles in improving cancer therapy.
Main Methods:
- Utilizing polymeric nanoparticles as biocompatible drug delivery vehicles.
- Conjugating specific vector molecules (ligands) to nanoparticle surfaces for active targeting.
- Focusing on the molecular recognition of tumor biomarkers for targeted delivery.
Main Results:
- Polymeric nanocarriers demonstrate potential for high drug payloads and tumor targeting.
- Active targeting via molecular recognition enhances site-specific drug delivery.
- Targeted nanocarriers show promise in improving cancer treatment efficacy.
Conclusions:
- Targeted polymeric nanoparticles represent a highly promising strategy for improved cancer therapy.
- This approach aims to minimize systemic drug exposure and reduce toxicity.
- Future research focuses on ligand-conjugated nanoparticles for precise pathological tissue targeting.
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