Evidence of Non-Standard Material Matrices
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https://zenodo.org/doi/10.5281/zenodo.20659010
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Geopolymer-Based Nanoplatform for Targeted Delivery in Glioblastoma Therapy: A Technical Protocol
Abstract
This study investigates the application of aluminosilicate-based geopolymer matrices, characterized by specific crystalline fingerprints (XRD) and elemental stability (XRF), as a novel therapeutic delivery system for brain tumors. The study proposes a biocompatible, controlled-release protocol utilizing the unique pore-engineering capabilities of geopolymer structures.
1. Methodology & Material Properties
Mineral Composition (XRF): Optimized silicate/aluminate ratio for bio-stability.
Structural Architecture (XRD): Precisely engineered pore geometry at the nanometer scale, designed for targeted drug encapsulation and localized release within the blood-brain barrier (BBB) environment.
2. Proposed Therapeutic Protocol
Encapsulation: Loading of therapeutic agents into the geopolymer nanopores.
Targeting: Utilization of surface-modified geopolymer particles to bypass the BBB.
Release Mechanism: Passive/Active diffusion controlled by the material’s structural integrity.
3. References & Preceding Documentation
This research builds upon the following documented milestones:
10.5281/zenodo.20650359
10.5281/zenodo.20650360
10.5281/zenodo.20650361
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Zenodo创建时间:
2026-06-12



