黑料网

News

DNA nanostructures get camouflaged by proteins

Straightforward and modular coating strategy can bring programmed DNA origami-based drug-delivery vehicles and nanodevices closer to clinical applications.
DNA nanostructures (purple) get camouflaged by serum albumin proteins (green). (Image: Veikko Linko and Mauri Kostiainen)

Researchers from Aalto University and Helsinki University have reported a strategy that significantly increases the stability of DNA nanostructures against DNA digesting enzymes, enhances delivery rates and, most importantly, suppresses DNA-induced immune response.

鈥淭he hypothesis is based on coating the DNA structures by inert proteins, namely serum albumins, with the help of a synthetic DNA-binding domain that is covalently linked to the protein鈥, explains Adjunct Professor Veikko Linko from Aalto University. The strategy was that as the DNA nanostructure 鈥 in this study a brick-like DNA origami 鈥 is negatively charged, the positively charged multivalent binding domain (dendron) can attach to the surface of the DNA object through electrostatic interactions. By adjusting the binding efficiency and the amount of protein-dendron conjugates used for coating, it was possible to form a dense and uniform protein corona around the DNA origami. The study showed that the immune system can be 鈥榖luffed鈥 when the DNA nanostructures are camouflaged by proteins as the protein-coated DNA structures efficiently attenuated the activation of immune response determined from mouse primary spleen cells.

鈥淭he reported coating strategy is straightforward and it is not limited to serum albumin proteins, but is essentially modular, as one can link almost any protein to the designer synthetic DNA-binding domain鈥 adds Professor Mauri Kostiainen, who led the collaborative research. Therefore, the proposed technique enable other researchers to tune the surface properties of DNA nanostructures in biological environment in desired ways. Serum albumin is the most abundant protein in the blood with a long circulation half-life, and thus it has already found clinically approved implementations in drug delivery. Therefore, the authors envision that the presented system will open up new opportunities in tailored DNA-based drug delivery.

This study was reported in Advanced Healthcare Materials, volume 6, issue 18 (September 20, 2017) and highlighted as the cover art and in Advanced Science News.

Links:

Article 鈥Protein Coating of DNA Nanostructures for Enhanced Stability and Immunocompatibility鈥:

Cover art:

Advanced Science News:

More information:

Adjunct Professor Veikko Linko
Biohybrid Materials Group, Aalto University School of Chemical Engineering
tel. 045 673 9997, veikko.linko@aalto.fi

Professor Mauri Kostiainen
Leader of the Biohybrid Materials Group, Aalto University School of Chemical Engineering
tel. 050 362 7070, mauri.kostiainen@aalto.fi

  • Updated:
  • Published:
Share
URL copied!

Read more news

A woman in white stands in a theatrical dressing room with violet walls, a lit vanity mirror, and hanging clothes.
Cooperation, Research & Art Published:

H盲meenlinna Art Museum鈥檚 exhibition brings artworks to life through film

H盲meenlinna Art Museum will open a new exhibition Kehyskertomuksia: 24 fps / Reframing Cinema, produced in collaboration with the Aalto University Department of Film ELO.
Open Access Week 2025 poster with nine images behind the open access symbol and event details.
Research & Art Published:

Publishing Research Data Alongside Research Articles

Data availability statements are increasingly required by scientific journals. They include information on what data are available, where they can be found, and any applicable access terms
Open Access Week 2025 poster with nine images behind the open access symbol and event details.
Research & Art Published:

Who publishes our open access publications?

Researchers at Aalto and Helsinki Universities favor open access journals with author fees published by large publishers. Popular journals without author fees are often published by universities or societies.
Bioinspired film, leek. Photo by Maija Vaara and Mithila Mohan, Aalto University
Research & Art Published:

Learning, growing, and exploring: a path through doctoral studies at Aalto

Hamidreza Daghigh Shirazi reflects on his doctoral journey at Aalto University