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Cancer immunotherapy: nanodelivery approaches for immune cell targeting and tracking
João Conniot1, Joana M Silva1, Joana G Fernandes1
1Faculdade de Farmácia, Instituto de Investigação do Medicamento (iMed.ULisboa), Universidade de Lisboa Lisboa, Portugal.
Abstract:
Cancer is one of the most common diseases afflicting people globally. New therapeutic approaches are needed due to the complexity of cancer as a disease. Many current treatments are very toxic and have modest efficacy at best. Increased understanding of tumor biology and immunology has allowed the development of specific immunotherapies with minimal toxicity. It is important to highlight the performance of monoclonal antibodies, immune adjuvants, vaccines and cell-based treatments. Although these approaches have shown varying degrees of clinical efficacy, they illustrate the potential to develop new strategies. Targeted immunotherapy is being explored to overcome the heterogeneity of malignant cells and the immune suppression induced by both the tumor and its microenvironment. Nanodelivery strategies seek to minimize systemic exposure to target therapy to malignant tissue and cells. Intracellular penetration has been examined through the use of functionalized particulates. These nano-particulate associated medicines are being developed for use in imaging, diagnostics and cancer targeting. Although nano-particulates are inherently complex medicines, the ability to confer, at least in principle, different types of functionality allows for the plausible consideration these nanodelivery strategies can be exploited for use as combination medicines. The development of targeted nanodelivery systems in which therapeutic and imaging agents are merged into a single platform is an attractive strategy. Currently, several nanoplatform-based formulations, such as polymeric nanoparticles, micelles, liposomes and dendrimers are in preclinical and clinical stages of development. Herein, nanodelivery strategies presently investigated for cancer immunotherapy, cancer targeting mechanisms and nanocarrier functionalization methods will be described. We also intend to discuss the emerging nano-based approaches suitable to be used as imaging techniques and as cancer treatment options.
Insights
New nanodelivery strategies offer targeted cancer immunotherapy and imaging. These advanced nano-particulate systems aim to improve treatment efficacy and minimize side effects for better cancer care.
Area of Science:
- Oncology
- Nanotechnology
- Immunotherapy
Background:
- Cancer remains a global health challenge requiring novel, less toxic therapies.
- Current treatments often have limited efficacy and significant side effects.
- Advances in tumor biology and immunology enable the development of targeted immunotherapies.
Purpose of the Study:
- To review nanodelivery strategies for cancer immunotherapy and targeting.
- To discuss nanocarrier functionalization and combination medicine approaches.
- To explore emerging nano-based imaging and treatment options.
Main Methods:
- Review of current literature on nanodelivery systems in cancer research.
- Analysis of targeted immunotherapy mechanisms and nanocarrier functionalization.
- Discussion of preclinical and clinical nanoplatform formulations (e.g., nanoparticles, liposomes).
Main Results:
- Nanodelivery systems can enhance targeted therapy and minimize systemic exposure.
- Functionalized nanoparticles facilitate intracellular penetration for drug delivery.
- Combination of therapeutic and imaging agents on a single nano-platform is a promising strategy.
Conclusions:
- Nanodelivery strategies are crucial for overcoming tumor heterogeneity and immune suppression.
- Nano-based approaches hold significant potential for advanced cancer imaging and treatment.
- Targeted nanodelivery systems represent a key area for future cancer therapy development.
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