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Published on: February 24, 2023
Hydrogel-Nanoparticle Bioactive Platforms for Post-Surgical Prevention of Tumor Recurrence
Bogdan Mircea Măciuceanu Zărnescu1, Denisa Nicoleta Mușat2, Adelina-Gabriela Niculescu2,3
1University of Medicine and Pharmacy "Carol Davila", 8, Eroii Sanitari, 050474 Bucharest, Romania.
Abstract:
One of the main issues in oncology is tumor recurrence following resection, which is responsible for a large number of patient deaths and treatment failures in a variety of malignancies. Despite advancements in adjuvant chemotherapy and radiation, residual disease that remains inside or close to the resection cavity and is difficult for systemic therapies to eradicate is the cause of further local recurrence. Hydrogel-nanoparticle (HNP) composites are a new class of therapeutic platforms that emerged from the recent convergence of biomaterial science and nanomedicine. Their specific goals are to fill the surgical gap, provide long-term localized drug release, and energetically remodel the post-surgical tumor microenvironment (TME). This paper includes the biological foundations of localized post-surgical therapy, important physicochemical considerations of the hydrogel matrix and nanoparticle carrier design, and a compilation of mechanistic and preclinical evidence for HNP hybrid platforms. Immunomodulatory strategies, stimuli-responsive release mechanism engineering, and novel techniques, including combination immunotherapy and 3D-printed customized scaffolds, are all given special attention. Examples of translational challenges are also addressed, such as manufacturing repeatability, biocompatibility, and regulatory classification. When considered collectively, the data demonstrate that HNP platforms are a convincing, practically feasible approach to reducing post-surgical recurrence rates and enhancing patient outcomes.
Insights
Hydrogel-nanoparticle composites offer a novel solution to prevent tumor recurrence after surgery. These advanced materials fill resection gaps, release drugs locally, and remodel the tumor microenvironment to improve patient outcomes.
Area of Science:
- Biomaterial Science
- Nanomedicine
- Oncology
Background:
- Tumor recurrence post-resection is a major cause of cancer mortality.
- Residual disease in the resection cavity resists conventional therapies.
- Hydrogel-nanoparticle (HNP) composites offer localized therapeutic strategies.
Purpose of the Study:
- To review the biological basis and design principles of localized post-surgical therapy.
- To compile evidence for the efficacy of HNP platforms in reducing tumor recurrence.
- To discuss advanced HNP strategies and translational challenges.
Main Methods:
- Review of biological foundations for localized post-surgical therapy.
- Analysis of physicochemical properties of hydrogel and nanoparticle components.
- Compilation of mechanistic and preclinical data on HNP platforms.
Main Results:
- HNPs are designed to fill surgical gaps and provide sustained local drug delivery.
- HNPs can energetically remodel the post-surgical tumor microenvironment.
- Evidence supports HNP platforms in reducing local recurrence and improving outcomes.
Conclusions:
- HNP platforms represent a promising approach to combat post-surgical tumor recurrence.
- Advanced strategies include immunomodulation, stimuli-responsive release, and combination therapies.
- Addressing manufacturing, biocompatibility, and regulatory aspects is crucial for clinical translation.

