Skip to content
#gene editing Review Open access

Nanocarrier-Mediated Gene Editing for Improved Tumour Therapeutic Efficacy

Sep 2026 · Theoretical and Natural Science · 0 citations
CRISPR and Genetic Engineering

TL;DR

This paper reviews considerable recent preclinical literature to systematically summarize the classification, physicochemical properties, and diverse fabrication techniques of mainstream lipid, polymeric, and inorganic nanocarriers and provides reliable systematic theoretical support for the subsequent clinical translation of nanomaterial-mediated gene editing against various malignancies.

Abstract

Conventional gene editing delivery systems are plagued by poor long-term blood circulation stability, weak active tumour-targeting capability, and severe off-target immunogenicity after systemic intravenous administration, greatly restricting the widespread clinical application of precise minimally invasive malignant tumour therapy. This paper reviews considerable recent preclinical literature to systematically summarize the classification, physicochemical properties, and diverse fabrication techniques of mainstream lipid, polymeric, and inorganic nanocarriers. It further elaborates the core working mechanisms of CRISPR/Cas9 gene editing and several types of nanomaterial-assisted delivery platforms, and comprehensively compares their in vivo antitumour performance along with distinct respective merits and unavoidable inherent biological drawbacks. While nanocarriers substantially enhance the systemic in vivo transport and intracellular endosomal escape delivery efficiency of CRISPR gene-editing components, multiple critical translational bottlenecks still persist, including low cargo loading efficiency and inadequate intratumoural enrichment after intravenous injection. This review sorts out such core technical bottlenecks and highlights prospective research directions, such as multifunctional unified carriers and tumour microenvironment-responsive targeted delivery designs, which provides reliable systematic theoretical support for the subsequent clinical translation of nanomaterial-mediated gene editing against various malignancies.

Read PDF

Similar papers

Review Sep 2026

Engineering extracellular vesicles for targeted siRNA delivery: Advances, therapeutic applications, and clinical translation.

Small interfering RNA (siRNA) therapeutics have emerged as a transformative approach for sequence-specific gene silencing, offering the potential to treat a broad spectrum of diseases by selectively suppressing disease-associated genes. However, the clinical translation of siRNA remains limited by rapid enzymatic degra...

G. S. Amrish Varshan, S. Namasivayam · 0 citations
#gene editing Review Open access Sep 2026

Aptamer-mediated CRISPR-Cas9 delivery for precision oncology: integrating molecular targeting, intracellular trafficking, and nanocarrier engineering

Cancer therapy remains constrained by insufficient molecular specificity, intratumoral heterogeneity, and the emergence of therapeutic resistance that limit durable clinical responses. CRISPR Cas9 genome editing offers an unprecedented opportunity to directly reprogram oncogenic drivers, tumor suppressor pathways, and...

Abolfazl Saffari Natanzi, Elina Ahmadi, Sajjad Shahraki et al. · 0 citations
Open access Aug 2026

Nanoparticles-mediated dual drug administration boosts therapeutic efficacy in drug resistant melanoma.

A dual-drug delivery system co-loading trametinib, MEK inhibitor, and alisertib, Aurora A kinase inhibitor was developed, optimized to maintain a previously established synergistic ratio which effectively overcome acquired resistance to standard-of-care therapies and induce durable tumor regression.

Giulia Lovati, Pietro Milesi, Paolo Fossati et al. · 0 citations
Review Open access Sep 2026

Different functionalized nanocarriers for improvement of gene delivery

Various functionalized nanocarriers for gene delivery including silica-based nanoparticles, gold NPs, magnetic NPs, graphene-based materials, carbon nanotubes, polycationic systems, and lipidic nanostructures are summarized.

Houra Nekounam, Ali KarbalaeiMahdi, Faranak Mohammadi et al. · 0 citations
Review Open access Sep 2026

Peptide-mediated CRISPR delivery: From dish to bloodstream.

CRISPR-based therapeutics have advanced rapidly, but clinical translation remains bottlenecked by delivery. Standard carriers like viral vectors and lipid nanoparticles (LNPs) face challenges regarding cargo capacity, immunogenicity, and restricted tissue tropism. Peptide-mediated delivery platforms offer a highly tuna...

Alzbeta Ressnerova, Ross C. Wilson · 0 citations
#gene editing Review Open access Sep 2026

Overview of Delivery Methods for Gene Editing.

The clinical success of CRISPR-based interventions depends primarily on the efficient delivery of editing components into target cells. While base and prime editing have refined genomic precision, achieving therapeutic efficacy requires specialized vehicles that can navigate systemic circulation, escape endosomes, and...

Bilge Debelec Butuner · 0 citations

Related blog posts

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.