Litcius/Paper detail

Droplet Microfluidics for Tumor Drug‐Related Studies and Programmable Artificial Cells

Pantelitsa Dimitriou, Jin Li, Giusy Tornillo, Thomas McCloy, David A. Barrow

2021Global Challenges42 citationsDOIOpen Access PDF

Abstract

Anticancer drug development is a crucial step toward cancer treatment, that requires realistic predictions of malignant tissue development and sophisticated drug delivery. Tumors often acquire drug resistance and drug efficacy, hence cannot be accurately predicted in 2D tumor cell cultures. On the other hand, 3D cultures, including multicellular tumor spheroids (MCTSs), mimic the in vivo cellular arrangement and provide robust platforms for drug testing when grown in hydrogels with characteristics similar to the living body. Microparticles and liposomes are considered smart drug delivery vehicles, are able to target cancerous tissue, and can release entrapped drugs on demand. Microfluidics serve as a high-throughput tool for reproducible, flexible, and automated production of droplet-based microscale constructs, tailored to the desired final application. In this review, it is described how natural hydrogels in combination with droplet microfluidics can generate MCTSs, and the use of microfluidics to produce tumor targeting microparticles and liposomes. One of the highlights of the review documents the use of the bottom-up construction methodologies of synthetic biology for the formation of artificial cellular assemblies, which may additionally incorporate both target cancer cells and prospective drug candidates, as an integrated "droplet incubator" drug assay platform.

Topics & Concepts

MicrofluidicsDrug deliverySelf-healing hydrogelsNanotechnologyMicroscale chemistryDrugLiposomeDrug developmentComputer scienceBiomedical engineeringMaterials scienceBiologyEngineeringPharmacologyMathematicsMathematics educationPolymer chemistryInnovative Microfluidic and Catalytic Techniques Innovation3D Printing in Biomedical ResearchMicrofluidic and Bio-sensing Technologies