Skip to content
#gene editing Review Open access

Beyond Precision: A Multidimensional Framework for Selecting Genetic Medicine Platforms

Sep 2026 · Cells · Vol 15 · 0 citations · 98 references
Medicine

TL;DR

A multidimensional framework is proposed in which gene therapy platforms are evaluated according to three intrinsic properties—genetic precision, temporal control, and dosage tunability—while delivery, clinical maturity, and disease context act as major translational constraints.

Abstract

Gene therapy is undergoing continued clinical translation and technological development. This progress has been marked by regulatory approvals and broadened therapeutic indications across genetic, metabolic, and oncologic diseases and disorders. The field has evolved over decades from early viral-mediated gene addition to approaches capable of targeted editing, regulation, or replacement of genetic information. These systems include base and prime editors, epigenetic modulators, CRISPR-Cas, RNA therapeutics and programmable integration platforms. When paired with increasingly sophisticated viral and nonviral delivery strategies, these technologies enable greater control over tissue targeting, duration of activity, and therapeutic exposure. Recent clinical successes, including approved ex vivo CRISPR-based therapies for hemoglobinopathies, in vivo CRISPR editing for transthyretin amyloidosis, and emerging clinical applications of base and prime editing, provide growing clinical evidence for the feasibility of genetic medicines. However, technological advancement has also made platform selection increasingly complex. Therapeutic performance is determined not by editing efficiency alone, but by the interaction among genetic precision, temporal control, dosage tunability, delivery efficiency, durability, and disease-specific safety requirements. A molecularly efficient platform may still have limited therapeutic value if it cannot reach the disease-relevant cell population at sufficient and safe exposure. In this review, we examine recent technological and clinical advances in genetic medicine with particular emphasis on developments during the past approximately five years. We propose a multidimensional framework in which gene therapy platforms are evaluated according to three intrinsic properties—genetic precision, temporal control, and dosage tunability—while delivery, clinical maturity, and disease context act as major translational constraints. This framework highlights that no single platform is universally optimal; rather, successful therapeutic design depends on matching the biological characteristics of the intervention to the requirements of the disease and target tissue. Remaining challenges in extrahepatic delivery, genomic safety, immunogenicity, manufacturing, and long-term monitoring remain important determinants of broader clinical implementation.

Read PDF

Similar papers

Review Dec 2024

Journal of Population Therapeutics & Clinical Pharmacology

This review starts by examining the advantages and limitations of various physical methods for delivering Cas9, and highlights key applications of CRISPR systems in epigenetic modifications, and explores the use of CRISPR-Cas9 technology in genome editing, with a particular focus on base editing and prime editing.

Suhail Ahmad Sheikh, W. Shah, Azka Khan et al. · 0 citations
#gene editing Review Sep 2026

Precision Genome Engineering in Human Disease: Expanding Therapeutic Roles of CRISPR Technologies

The advent of CRISPR-Cas9 technology has revolutionized genome editing, enabling precise modifications to the human genome with unprecedented accuracy and sequence specificity. This review examines current mechanistic insights, translational advances, and clinical developments in gene editing, focusing on applications...

Abraham E. Ubhenin, F. Adamude, D. O. Ochalefu et al. · 0 citations
#gene editing Review Sep 2026

CRISPR–cas systems in pharmacology: functional pharmacogenomics, drug screening, resistance, and therapeutic translation

Overall, CRISPR-Cas9 represents a vital platform for future pharmacological innovation, but its broad clinical use may require further validation of safety, efficacy, durability, and accessibility.

Muhammad Saeed Akhtar, Adnan Amin · 0 citations
Review Aug 2026

Targeting the Hallmarks of Ageing: Pharmacological Challenges and Breakthroughs in CRISPR Delivery Systems and Future Prospects.

CRISPR has emerged as a next-generation gene-editing tool with the potential to target the molecular pathways associated with ageing and related disorders. It functions through RNA-guided Cas nucleases, directing DNA cleavage and utilizing the native DNA repair machinery for genetic manipulations. Advances in CRISPR te...

Sakshi Rathore, Akash Gupta, Kamal Shah et al. · 0 citations
#gene editing Open access Sep 2026

CRISPR-Based Gene Editing in Human and Animal Health: Revolutionizing Disease Resistance and Treatment

This study explores the diverse applications of CRISPR, highlighting its role in treating genetic disorders such as sickle cell anemia and Duchenne muscular dystrophy, advancing cancer immunotherapies, and developing CRISPR-based antiviral therapies for HIV and COVID-19.

B. Aloufi · 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.