This review summarizes the remarkable potential of Framework Nucleic Acids (FNAs) as an intelligent nanoplatform for tumor diagnosis and therapy and discusses the major challenges for clinical translation.
Abstract
INTRODUCTION
Framework Nucleic Acids (FNAs) are precisely self-assembled two- or three-dimensional nucleic acid architectures renowned for their excellent programmability, monodisperse structures, and near-atomic precision. These distinctive properties enable FNAs to function as versatile nanocarriers for targeted biomarker recognition, efficient co-delivery of therapeutics and imaging agents, and stimuli-responsive release within the tumor microenvironment, driving rapid advances in framework nucleic acid-based nanomaterials for tumor theranostics in recent years.
Methods
We extensively searched bibliographic databases using keywords such as "framework nucleic acids", "FNA", "DNA nanostructures," and "tumor theranostics". Based on the literature retrieved, we summarized the design and functionalization strategies of FNA-based nanomaterials, reviewed their applications in various tumor therapeutic modalities, and discussed the major challenges for clinical translation.
Results
FNAs exhibited excellent application prospects across diverse tumor therapeutic modalities. They markedly enhanced targeted drug delivery and therapeutic efficacy in chemotherapy, enabled efficient gene silencing in gene therapy, strengthened antitumor immune responses in immunotherapy, and significantly improved precision in tumor imaging and phototherapy. Collectively, these advantages position FNAs as a highly promising and versatile platform for precision tumor theranostics.
Discussion
We have further provided a comprehensive discussion of the multifaceted challenges that continue to impede the clinical translation of Framework Nucleic Acid (FNA)-based nanomaterials despite their considerable preclinical promise in tumor theranostics, as well as an in-depth outlook on their future potential in this evolving field.
Conclusion
This review summarizes the remarkable potential of Framework Nucleic Acids (FNAs) as an intelligent nanoplatform for tumor diagnosis and therapy. Nevertheless, several critical challenges persist for clinical translation, including long-term biosafety, scalable manufacturing, and efficient in vivo delivery. Future efforts to address these barriers are expected to accelerate the clinical implementation of FNAs in precision oncology.
The composition of core functions of the component of LNPs, molecular evolution trajectory, targeting optimization and so on, and the latest research progress of LNP in targeted delivery of traditional chemotherapeutic agents, specific gene regulation by nucleic acid therapy and combination cancer therapy etc are summa...
Hao-Ze Zhu· International Journal of Bio...· 0 citations
A translational framework for overcoming key barriers in pharmaceutical intervention design for oncology applications is outlined, integrating drug delivery engineering, molecular biopharmaceutics, and computational optimization.
Manoj Dalabehera, Shubham K. Chaudhari, Jatin Kumar et al.· Journal of Pharmacy and Scie...· 0 citations
This review highlights the recent progress in MOF-based nanomedicine for liver cancer treatment specifically HCC, emphasizing targeting strategies that enhance the selective accumulation of MOF nanocarriers in liver tumors, including passive targeting via the enhanced permeability and retention (EPR) effect and active...
Manar T. El-Morsy, A. Elshekh, M. Ghazy et al.· Cancer nanotechnology· 1 citation
This article provides a comprehensive overview of the evolving landscape of nucleic acid-based therapeutics and aims to inform clinicians, researchers, and pharmaceutical scientists about their current applications and future potential in modern healthcare.
Satyaraj Ombase, Shanmugarathanam Alagarsamy, R. Prasad et al.· Adolescência e Saúde· 0 citations
Genetic medicine has established a transformative paradigm for precision therapy. To date, most advances have relied on viral vectors and non‐viral lipidic and polymeric nanocarriers. Although metal nanomaterials have not achieved clinical approval for gene therapy, recent progress in precise synthesis and versatile...
Kai-Yuan Zheng, K. Leong· Advanced Functional Material...· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.