Related Experiment Video
Updated: Oct 22, 2025

In Vivo Targeting of Xenografted Human Cancer Cells with Functionalized Fluorescent Silica Nanoparticles in Zebrafish
Published on: May 8, 2020
Nanoparticles-Based Oligonucleotides Delivery in Cancer: Role of Zebrafish as Animal Model
Sara Bozzer1, Michele Dal Bo2, Giuseppe Toffoli2
1Department of Life Sciences, University of Trieste, 34127 Trieste, Italy.
Abstract:
Oligonucleotide (ON) therapeutics are molecular target agents composed of chemically synthesized DNA or RNA molecules capable of inhibiting gene expression or protein function. How ON therapeutics can efficiently reach the inside of target cells remains a problem still to be solved in the majority of potential clinical applications. The chemical structure of ON compounds could affect their capability to pass through the plasma membrane. Other key factors are nuclease degradation in the extracellular space, renal clearance, reticulo-endothelial system, and at the target cell level, the endolysosomal system and the possible export via exocytosis. Several delivery platforms have been proposed to overcome these limits including the use of lipidic, polymeric, and inorganic nanoparticles, or hybrids between them. The possibility of evaluating the efficacy of the proposed therapeutic strategies in useful in vivo models is still a pivotal need, and the employment of zebrafish (ZF) models could expand the range of possibilities. In this review, we briefly describe the main ON therapeutics proposed for anticancer treatment, and the different strategies employed for their delivery to cancer cells. The principal features of ZF models and the pros and cons of their employment in the development of ON-based therapeutic strategies are also discussed.
Insights
Oligonucleotide therapeutics offer targeted gene inhibition but face delivery challenges. Zebrafish models show promise for evaluating these novel anticancer strategies and delivery platforms.
Area of Science:
- Biotechnology
- Molecular Biology
- Pharmacology
Background:
- Oligonucleotide (ON) therapeutics, DNA/RNA molecules, inhibit gene expression but struggle with cellular delivery.
- Challenges include plasma membrane passage, nuclease degradation, renal clearance, and endolysosomal escape.
Purpose of the Study:
- To review ON therapeutics for anticancer treatment and their delivery strategies.
- To discuss the utility of zebrafish (ZF) models for evaluating ON-based therapies.
Main Methods:
- Review of existing literature on ON therapeutics and delivery systems.
- Analysis of nanoparticle-based delivery platforms (lipidic, polymeric, inorganic, hybrid).
- Evaluation of zebrafish models for in vivo efficacy studies.
Main Results:
- Various delivery platforms are proposed to enhance ON therapeutic efficacy.
- Zebrafish models offer a valuable in vivo system for assessing ON delivery and therapeutic strategies.
Conclusions:
- Efficient delivery of ON therapeutics remains a critical hurdle for clinical applications.
- Zebrafish models present a promising avenue for advancing ON-based cancer therapies.

