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Towards tailored management of malignant brain tumors with nanotheranostics
Juan Aparicio-Blanco1, Ana-Isabel Torres-Suárez2
1Department of Pharmaceutical Technology and Food Engineering, Complutense University, 28040 Madrid, Spain.
Abstract:
Malignant brain tumors still represent an unmet medical need given their rapid progression and often fatal outcome within months of diagnosis. Given their extremely heterogeneous nature, the assumption that a single therapy could be beneficial for all patients is no longer plausible. Hence, early feedback on drug accumulation at the tumor site and on tumor response to treatment would help tailor therapies to each patient's individual needs for personalized medicine. In this context, at the intersection between imaging and therapy, theranostic nanomedicine is a promising new technique for individualized management of malignant brain tumors. Although brain nanotheranostics has yet to be translated into clinical practice, this field is now a research hotspot due to the growing demand for personalized therapies. In this review, the barriers to the clinical implementation of theranostic nanomedicine for tracking tumor responses to treatment and for guiding stimulus-activated therapies and surgical resection of malignant brain tumors are discussed. Likewise, the criteria that nanotheranostic systems need to fulfil to become clinically relevant formulations are analyzed in depth, focusing on theranostic agents already tested in vivo. Currently, magnetic nanoparticles exploiting brain targeting strategies represent the first generation of preclinical theranostic nanomedicines for the management of malignant brain tumors.
Statement Of Significance:
The development of nanocarriers that can be used both in imaging studies and the treatment of brain tumors could help identify which patients are most and least likely to respond to a given treatment. This will enable clinicians to adapt the therapy to the needs of the patient and avoid overdosing non-responders. Given the many different approaches to non-invasive techniques for imaging and treating brain tumors, it is important to focus on the strategies most likely to be implemented and to design the most feasible theranostic biomaterials that will bring nanotheranostics one step closer to clinical practice.
Insights
Theranostic nanomedicine offers personalized treatment for malignant brain tumors by combining imaging and therapy. This approach aims to track drug delivery and tumor response, guiding tailored treatments for better patient outcomes.
Area of Science:
- Nanomedicine
- Oncology
- Medical Imaging
Background:
- Malignant brain tumors are a significant unmet medical need due to rapid progression and heterogeneity.
- Current treatments lack personalization, leading to suboptimal outcomes.
- Theranostic nanomedicine integrates imaging and therapy for individualized brain tumor management.
Purpose of the Study:
- To review the barriers and criteria for clinical implementation of theranostic nanomedicine for brain tumors.
- To analyze theranostic agents tested in vivo for malignant brain tumor management.
- To highlight the potential of nanotheranostics in personalized medicine for brain tumors.
Main Methods:
- Review of current literature on theranostic nanomedicine for brain tumors.
- Analysis of criteria for clinically relevant nanotheranostic systems.
- Focus on in vivo tested theranostic agents, particularly magnetic nanoparticles.
Main Results:
- Theranostic nanomedicine is a research hotspot for personalized brain tumor therapies.
- Barriers to clinical translation include tracking drug accumulation and tumor response.
- Magnetic nanoparticles are the current leading preclinical theranostic agents for brain tumors.
Conclusions:
- Theranostic nanomedicine holds promise for personalized management of malignant brain tumors.
- Overcoming clinical implementation barriers is crucial for translation.
- Developing feasible theranostic biomaterials will advance nanotheranostics towards clinical practice.
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