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Lipid-Based Colloidal Nanocarriers for Site-Specific Drug Delivery

Kamyar Shameli, Behnam Kalali, Hassan Moeini, Aras Kartouzian

2026Colloids and Interfaces6 citationsDOIOpen Access PDF

Abstract

Lipid nanoparticles (LNPs) are now the go-to method for delivering genetic medicines, backed by real-world use in patients. Things like which fats they are made of, their shape at the molecular level, how ingredients mix, and how they are built, matter a lot. This review attempts to take a close look at how different components, such as ionizable lipids, auxiliary lipids (DSPC, DOPE), cholesterol, and PEG-based lipids, affect the bioavailability of LNPs. It also focuses on key functions of LNPs, including packaging genetic material, escaping cellular traps, spreading in the body, and remaining active in the blood. New data show that lipids with the right handedness and highly sensitive chiroptical quality control can sharpen delivery accuracy and boost transport rates, turning stereochemistry into a practical design knob. Rather than simply listing results, we examine real-world examples that are already used to regulate gene expression, enhance mRNA expression, splenic targeting, and show great potential for gene repair, protein replacement, and DNA base-editing applications. Also, recent advances in AI-based designs for LNPs that take molecular shape into account and help speed up modifications to lipid arrangements and mixture configurations are highlighted. In summary, this paper presents a practical and scientific blueprint to support smarter production of advanced LNPs used in genetic medicine, addressing existing obstacles, balanced with future opportunities.

Topics & Concepts

NanocarriersNanotechnologyBlueprintGene deliveryDrug deliveryChemistryComputational biologyComputer scienceBiochemical engineeringListing (finance)Key (lock)NanoparticleSynthetic biologyTargeted drug deliveryPharmaceutical technologyColloidal particleGeneRNA Interference and Gene DeliveryAdvancements in Transdermal Drug DeliveryLipid Membrane Structure and Behavior
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