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Published on: December 15, 2010
Targeted Delivery to Tumors: Multidirectional Strategies to Improve Treatment Efficiency
Olga M Kutova1, Evgenii L Guryev2, Evgeniya A Sokolova3
1The Institute of Biology and Biomedicine, Lobachevsky State University of Nizhny Novgorod, 23 Gagarin ave., Nizhny Novgorod 603950, Russia. kutovaom@gmail.com.
Abstract:
Malignant tumors are characterized by structural and molecular peculiarities providing a possibility to directionally deliver antitumor drugs with minimal impact on healthy tissues and reduced side effects. Newly formed blood vessels in malignant lesions exhibit chaotic growth, disordered structure, irregular shape and diameter, protrusions, and blind ends, resulting in immature vasculature; the newly formed lymphatic vessels also have aberrant structure. Structural features of the tumor vasculature determine relatively easy penetration of large molecules as well as nanometer-sized particles through a blood⁻tissue barrier and their accumulation in a tumor tissue. Also, malignant cells have altered molecular profile due to significant changes in tumor cell metabolism at every level from the genome to metabolome. Recently, the tumor interaction with cells of immune system becomes the focus of particular attention, that among others findings resulted in extensive study of cells with preferential tropism to tumor. In this review we summarize the information on the diversity of currently existing approaches to targeted drug delivery to tumor, including (i) passive targeting based on the specific features of tumor vasculature, (ii) active targeting which implies a specific binding of the antitumor agent with its molecular target, and (iii) cell-mediated tumor targeting.
Insights
Targeted drug delivery leverages unique tumor characteristics like abnormal vasculature and molecular profiles to enhance treatment efficacy. This review explores passive, active, and cell-mediated strategies for precise antitumor drug delivery, minimizing side effects.
Area of Science:
- Oncology
- Nanotechnology
- Pharmacology
Background:
- Malignant tumors possess unique structural and molecular features, including immature vasculature and altered cell metabolism.
- Tumor neovasculature exhibits chaotic growth and structural abnormalities, facilitating drug molecule penetration.
- Tumor cells display altered molecular profiles and interact uniquely with immune cells, offering therapeutic targets.
Purpose of the Study:
- To review diverse approaches for targeted drug delivery to tumors.
- To highlight strategies exploiting tumor-specific characteristics for enhanced drug efficacy and reduced side effects.
Main Methods:
- Review of existing literature on targeted antitumor drug delivery.
- Categorization of targeting strategies into passive, active, and cell-mediated approaches.
Main Results:
- Passive targeting utilizes the enhanced permeability and retention (EPR) effect due to abnormal tumor vasculature.
- Active targeting involves specific binding of drugs to molecular targets on tumor cells.
- Cell-mediated targeting employs cells with inherent tropism for tumor sites.
Conclusions:
- Targeted drug delivery offers a promising strategy to improve cancer treatment outcomes.
- Combining different targeting strategies may further enhance therapeutic precision and minimize toxicity.
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