Uploaded June 2021 | Updated September 2026, 2 weeks ago
Targeted delivery of drugs to the tumor site has been a challenge that needs to be tackled. The approach described in this video utilizes nanocarriers –DNA origami -- to efficiently deliver the drug and ensure its prolonged stay in cancer cells. The goal is to achieve maximal killing of tumor cells with minimal side effects. In this video, Paraskevi Gaki, based on the work of Jiang et al. and Zhang et al. explains the basics of DNA origami, how it works and what makes it an ideal candidate for the delivery of drugs like doxorubicin. Watch Paraskevi’s video to learn more.
Paraskevi Gaki is a student in the Cell Physics Master at the University of Strasbourg, France. cellphysics-master.com
Related Resources:
Here are the original scientific papers described in this video:
“DNA Origami as a Carrier for Circumvention of Drug Resistance” pubs.acs.org/doi/10.1021/ja304263n
“DNA Origami as an In Vivo Drug Delivery Vehicle for Cancer Therapy” pubs.acs.org/doi/10.1021/nn502058j
Targeted delivery of drugs to the tumor site has been a challenge that needs to be tackled. The approach described in this video utilizes nanocarriers –DNA origami -- to efficiently deliver the drug and ensure its prolonged stay in cancer cells. The goal is to achieve maximal killing of tumor cells with minimal side effects. In this video, Paraskevi Gaki, based on the work of Jiang et al. and Zhang et al. explains the basics of DNA origami, how it works and what makes it an ideal candidate for the delivery of drugs like doxorubicin. Watch Paraskevi’s video to learn more.
Paraskevi Gaki is a student in the Cell Physics Master at the University of Strasbourg, France. cellphysics-master.com
Related Resources:
Here are the original scientific papers described in this video:
“DNA Origami as a Carrier for Circumvention of Drug Resistance” pubs.acs.org/doi/10.1021/ja304263n
“DNA Origami as an In Vivo Drug Delivery Vehicle for Cancer Therapy” pubs.acs.org/doi/10.1021/nn502058j









![Fluorescence: a tool to study molecular dynamics in biology
Fluorescence is used in Biology as a tool to study the internal of cells. In this video, Rémi Berthoz explains the basics of interactions between light and matter to schematically describe how fluorescent molecules can be used to monitor the flow of calcium ions in living cells. Watch Rémis video to learn more.
Rémi Berthoz is a student in the Cell Physics Master at the University of Strasbourg, France.
https://www.cellphysics-master.com
Related Resources :
Roger Y. Tsien et al. Nature Chemical Biology [Nat Chem Biol. 2007 Jul; 3(7): 423–431.].
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2909385/ Fluorescence: a tool to study molecular dynamics in biology](https://i.ytimg.com/vi/KQhAS7OYu94/mqdefault.jpg)
