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Correction: Quantifying nanotherapeutic penetration using a hydrogel-based microsystem as a new 3D in vitro platform
Saba Goodarzi1, Audrey Prunet1, Fabien Rossetti1
1University of Lyon, Université Claude Bernard Lyon 1, CNRS, Institut Lumière Matière, F-69622, Villeurbanne, France. charlotte.riviere@univ-lyon1.fr.
Lab on a Chip
|December 17, 2021
Summary
This correction clarifies the quantification of nanotherapeutic penetration. The study utilized a novel 3D in vitro hydrogel microsystem platform for enhanced drug delivery research.
Area of Science:
- Biomedical Engineering
- Materials Science
- Drug Delivery
Context:
- Nanotherapeutics offer targeted treatment potential.
- Accurate in vitro models are crucial for drug development.
- Hydrogel-based platforms provide a 3D microenvironment for biological studies.
Purpose:
- To correct and clarify findings on nanotherapeutic penetration.
- To validate the use of a novel hydrogel microsystem as a 3D in vitro platform.
- To improve the quantification methods for nanotherapeutic delivery in complex matrices.
Summary:
- This correction pertains to the article "Quantifying nanotherapeutic penetration using a hydrogel-based microsystem as a new 3D in vitro platform."
- It addresses specific details regarding the methodology and results presented in the original publication.
- The revised information ensures accurate interpretation of nanotherapeutic behavior within the developed 3D in vitro model.
Impact:
- Ensures the reliability of future research using this 3D in vitro platform.
- Facilitates more accurate assessment of nanotherapeutic delivery systems.
- Contributes to the advancement of in vitro models for drug penetration studies.

