Related Experiment Video
Updated: Jul 14, 2026

Solid Lipid Nanoparticles (SLNs) for Intracellular Targeting Applications
Published on: November 17, 2015
Solid lipid nanoparticles: could they help to improve the efficacy of pharmacologic treatments for brain tumors?
Andrea Brioschi1, Francesco Zenga, Gian Paolo Zara
1Department of Neurology and Neurorehabilitation, IRCCS Istituto Auxologico Italiano, Piancavallo (VB), Italy. a.brioschi@auxologico.it
Objectives:
Brain malignant neoplasms are still characterized by poor prognosis due to their peculiar hallmarks that severely limit aggressive multimodal therapeutic approaches. The optimization of the intratumoral drug delivery, directed to achieve effective concentrations and to reduce systemic undesired toxicity, is one of the primary goals of the brain tumors therapeutic strategies. Different passive and active delivery carriers allowing to a better control of drug distribution, metabolism, and elimination after parenteral administration have been developed. In the present review we will describe general characteristics and evaluate the efficacy of Solid Lipid Nanoparticles (SLN) as carriers of different drugs in experimental brain malignant tumor therapy.
Methods:
SLN vehiculating different illustrative types of antineoplastic agents (conventional cytotoxic drugs such as doxorubicin and paclitaxel, the prodrug Cholesteryl butyrate, and anti VEGF antisense oligonucleotides) have been tested in experimental animal models of cerebral gliomas.
Results:
SLN proved to successfully vehiculate into the brain different types of cytotoxic and gene therapeutical agents (otherwise unable to pass through the Blood-Brain Barrier) and to induce effective anti-tumoral therapeutical response.
Discussion:
Compared to other vehicules, SLN seem to offer more advantages (such as higher physical stability, greater protection from degradation and better release profile of incorporated drugs, good tolerability and possibility of site-specific targeting) and could be regarded as an effective carrier for chemotherapeutic drugs, gene therapeutical agents, and diagnostic tools in neuro-oncology.
Insights
Solid Lipid Nanoparticles (SLN) effectively deliver chemotherapy and gene therapy agents across the Blood-Brain Barrier for brain tumors. These nanoparticles show promise for improved neuro-oncology treatments with reduced toxicity.
Area of Science:
- Neuro-oncology
- Nanomedicine
- Drug Delivery Systems
Background:
- Brain malignant neoplasms have a poor prognosis due to treatment limitations.
- Optimizing intratumoral drug delivery is crucial for effective brain tumor therapy.
- Developing carriers to overcome the Blood-Brain Barrier is a key challenge.
Purpose of the Study:
- To evaluate Solid Lipid Nanoparticles (SLN) as carriers for brain tumor therapy.
- To assess the efficacy of SLN in delivering various antineoplastic agents.
- To explore SLN potential in experimental brain malignant tumor models.
Main Methods:
- Testing SLN loaded with doxorubicin, paclitaxel, Cholesteryl butyrate, and anti-VEGF antisense oligonucleotides.
- Utilizing experimental animal models of cerebral gliomas.
- Evaluating the ability of SLN to cross the Blood-Brain Barrier.
Main Results:
- SLN successfully delivered cytotoxic and gene therapy agents into the brain.
- SLN facilitated agents that normally cannot cross the Blood-Brain Barrier.
- Effective anti-tumoral therapeutic responses were induced by SLN-delivered agents.
Conclusions:
- SLN offer advantages over other carriers, including stability and controlled release.
- SLN demonstrate good tolerability and potential for site-specific targeting.
- SLN are a promising carrier for neuro-oncology, including chemotherapy, gene therapy, and diagnostics.
Related Concept Videos
Bioavailability Enhancement: Drug Permeability Enhancement
Site-Targeted Drug Delivery Systems: Polymeric Carriers
Modified-Release Drug Delivery Systems: Site-Targeted
Bioavailability Enhancement: Drug Solubility Enhancement

