Small Molecule Delivery

Small molecule delivery is the controlled transport of low-molecular-weight drugs or signaling compounds to specific cells, tissues, or biological environments, helping improve their stability, distribution, and therapeutic performance. Bioengineered delivery systems can encapsulate or chemically conjugate these molecules within nanoparticles, liposomes, hydrogels, or other carriers, then release them through diffusion, carrier degradation, or responses to conditions such as pH or enzyme activity. These strategies address challenges including poor solubility, rapid clearance, and limited tissue penetration. Applications span targeted drug delivery, disease modeling, tissue engineering, and regenerative medicine, where controlled dosing can improve efficacy while reducing unintended effects.

Small Molecule Delivery - Related Videos

Research

JoVE EoE - Large Animal Models

Tracer Molecule Delivery in the Cisterna Magna: A Method to Deliver Fluorescent Tracer Molecules via Direct Cannulation of the Cisterna Magna in Pig

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2025

This video describes the protocol for tracer molecule delivery via direct cannulation of the cisterna magna in a pig brain. This method helps visualize the distribution of cerebrospinal fluid in the glymphatic system.

A Technique to Generate a Novel Delivery Platform for a Delayed Burst Release of Molecules

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2025

This video demonstrates a method for the generation of a polymer bubble or polybubble-based novel platform that enables delayed burst release. Polyester-based polymers are used to form the polybubbles with core-shell structure, and small molecules and antigens can be used as cargo.

Research

JoVE Journal - Biology
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Direct Infusion Device for Molecule Delivery in Plants

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Cited by 1 •

2023

This manuscript describes a novel direct plant infusion device for screening the effectiveness of molecules against the bacteria (Candidatus Liberibacter asiaticus) or its insect vector (Diaphorina citri, Kuwayama) that, in combination, are associated with Huanglongbing citrus disease.

In Vitro Permeation of FITC-loaded Ferritins Across a Rat Blood-brain Barrier: a Model to Study the Delivery of Nanoformulated Molecules

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Cited by 15 •

2016

A method to establish an in vitro model of blood-brain barrier based on a co-culture of rat brain microvascular endothelial cells and astrocytes is described and validated. This system proved to be a valid tool to study the effect of nanoformulation on the trans-barrier permeation of fluorescent molecules.

Delivery of Proteins, Peptides or Cell-impermeable Small Molecules into Live Cells by Incubation with the Endosomolytic Reagent dfTAT

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Cited by 10 •

2015

We describe how to deliver proteins and cell-impermeable small molecules into cultured mammalian cells by a simple co-incubation protocol with a reagent that causes endocytic organelles to become leaky.

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