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Nanocarriers as a Delivery Platform for Anticancer Treatment: Biological Limits and Perspectives in B-Cell
Sara Bozzer1, Michele Dal Bo2, Maria Cristina Grimaldi1
1Department of Life Sciences, University of Trieste, 34127 Trieste, Italy.
Abstract:
Nanoparticle-based therapies have been proposed in oncology research using various delivery methods to increase selectivity toward tumor tissues. Enhanced drug delivery through nanoparticle-based therapies could improve anti-tumor efficacy and also prevent drug resistance. However, there are still problems to overcome, such as the main biological interactions of nanocarriers. Among the various nanostructures for drug delivery, drug delivery based on polymeric nanoparticles has numerous advantages for controlling the release of biological factors, such as the ability to add a selective targeting mechanism, controlled release, protection of administered drugs, and prolonging the circulation time in the body. In addition, the functionalization of nanoparticles helps to achieve the best possible outcome. One of the most promising applications for nanoparticle-based drug delivery is in the field of onco-hematology, where there are many already approved targeted therapies, such as immunotherapies with monoclonal antibodies targeting specific tumor-associated antigens; however, several patients have experienced relapsed or refractory disease. This review describes the major nanocarriers proposed as new treatments for hematologic cancer, describing the main biological interactions of these nanocarriers and the related limitations of their use as drug delivery strategies.
Insights
Polymeric nanoparticles offer enhanced anti-cancer drug delivery for hematologic cancers, improving efficacy and overcoming resistance. Further research into nanocarrier interactions is needed for optimal therapeutic outcomes.
Area of Science:
- Oncology
- Nanomedicine
- Hematology
Background:
- Nanoparticle-based therapies are investigated for targeted cancer treatment.
- Challenges remain in nanocarrier biological interactions and drug resistance.
- Polymeric nanoparticles offer advantages in drug delivery, including targeting and controlled release.
Purpose of the Study:
- To review nanocarriers for hematologic cancer treatment.
- To describe nanocarrier biological interactions and limitations.
Main Methods:
- Literature review of nanocarrier applications in onco-hematology.
- Analysis of polymeric nanoparticle drug delivery strategies.
- Discussion of nanocarrier biological interactions and limitations.
Main Results:
- Polymeric nanoparticles show promise for targeted drug delivery in hematologic cancers.
- Functionalization of nanoparticles can improve therapeutic outcomes.
- Existing targeted therapies face challenges with relapsed or refractory disease.
Conclusions:
- Nanoparticle-based drug delivery presents a promising avenue for hematologic cancer therapy.
- Understanding nanocarrier interactions is crucial for clinical translation.
- Further development is needed to overcome limitations in nanocarrier drug delivery strategies.
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