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Challenges in design and characterization of ligand-targeted drug delivery systems
1Fischell Department of Bioengineering, School of Engineering, University of Maryland College Park, College Park, MD 20742, USA. muro@umd.edu
Abstract:
Targeting of therapeutic agents to molecular markers expressed on the surface of cells requiring clinical intervention holds promise to improve specificity of delivery, enhancing therapeutic effects while decreasing potential damage to healthy tissues. Drug targeting to cellular receptors involved in endocytic transport facilitates intracellular delivery, a requirement for a number of therapeutic goals. However, after several decades of experimental design, there is still considerable controversy on the practical outcome of drug targeting strategies. The plethora of factors contributing to the relative efficacy of targeting makes the success of these approaches hardly predictable. Lack of fully specific targets, along with selection of targets with spatial and temporal expression well aligned to interventional requirements, pose difficulties to this process. Selection of adequate sub-molecular target epitopes determines accessibility for anchoring of drug conjugates and bulkier drug carriers, as well as proper signaling for uptake within the cell. Targeting design must adapt to physiological variables of blood flow, disease status, and tissue architecture by accommodating physicochemical parameters such as carrier composition, functionalization, geometry, and avidity. In many cases, opposite features need to meet a balance, e.g., sustained circulation versus efficient targeting, penetration through tissues versus uptake within cells, internalization within endocytic compartment to avoid efflux pumps versus accessibility to molecular targets within the cytosol, etc. Detailed characterization of these complex physiological factors and design parameters, along with a deep understanding of the mechanisms governing the interaction of targeted drugs and carriers with the biological environment, are necessary steps toward achieving efficient drug targeting systems.
Insights
Drug targeting aims to improve treatment specificity by delivering therapeutic agents to specific cell surface markers. However, predicting the success of drug targeting strategies remains challenging due to numerous complex biological and design factors.
Area of Science:
- Biomedical Engineering
- Pharmacology
- Molecular Biology
Background:
- Targeting therapeutic agents to cell surface markers enhances delivery specificity, improving efficacy and reducing off-target toxicity.
- Intracellular delivery via endocytic pathways is crucial for many therapeutic applications.
- Despite decades of research, the practical success of drug targeting strategies remains controversial and difficult to predict.
Purpose of the Study:
- To review the complexities and challenges in designing effective drug targeting systems.
- To highlight the critical factors influencing the success of targeted drug delivery.
- To emphasize the need for a comprehensive understanding of biological interactions for efficient drug targeting.
Main Methods:
- Literature review and analysis of existing drug targeting strategies.
- Examination of factors influencing target selection and epitope accessibility.
- Discussion of physiological variables and physicochemical design parameters.
Main Results:
- Predicting the success of drug targeting is challenging due to numerous interacting factors.
- Target specificity, expression patterns, and epitope accessibility are critical for effective delivery.
- Balancing competing requirements, such as circulation time vs. targeting efficiency, is essential.
Conclusions:
- Achieving efficient drug targeting requires a deep understanding of physiological variables and carrier-biological environment interactions.
- Careful consideration of target selection, epitope accessibility, and carrier design is necessary.
- Further research into the complex interplay of factors is needed to optimize drug targeting systems.
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