By using this site, you agree to the Privacy Policy and Terms of Use.
Accept

Science, Space & Technology

Space Science Digital
Contact
Search
  • Home
  • Environment

    the Great Bear’s grand-design spiral galaxy 

    March 13, 2023

    What’s Earth’s most distant spacecraft?

    April 4, 2023

    Balloon-borne telescope captures Tarantula Nebula in first research images

    April 21, 2023

    A luminous Seyfert galaxy and its active black hole-driven nucleus

    May 10, 2023
  • Space Flight

    Japan’s H3 rocket self-destructs following launch failure

    March 7, 2023

    Dark energy may have been hiding in the cores of black holes all along

    February 15, 2023

    Rocket Lab launches two commercial radar satellites

    March 16, 2023

    JWST captured the most thrilling and inspiring space images of 2022

    December 14, 2022
  • Cosmology

    The Sky This Week from February 17 to 24

    February 17, 2023

    Astronauts Could Clear Lunar Dust Away with Nitrogen Spray

    March 10, 2023

    The State of Suborbital Space Science

    March 15, 2023

    Another Look at the Aftermath of DART’s Impact Into Dimorphos

    March 22, 2023
  • Latest
  • About Us
Reading: Lipid nanoparticle-based ribonucleoprotein delivery for in vivo genome editing
Share
Aa
Space Science DigitalSpace Science Digital
  • Environment
  • Space Flight
  • Cosmology
  • Technology
Search
  • Home
  • Categories
    • Environment
    • Technology
    • Cosmology
    • Space Flight
  • More Foxiz
    • Blog Index
    • Forums
    • Complaint
    • Sitemap
Follow US
© 2023 Space Science Digital. All Rights Reserved.
Space Science Digital > Blog > Technology > Lipid nanoparticle-based ribonucleoprotein delivery for in vivo genome editing
Technology

Lipid nanoparticle-based ribonucleoprotein delivery for in vivo genome editing

By Aimee Daly March 2, 2023 4 Min Read
Share


Credit: elenabsl/Shutterstock

Gene therapy is a potential mode of treatment for a wide variety of diseases caused by genetic mutations. While it has been an area of diverse and intense research, historically, only a very few patients have been treated using gene therapy—and fewer still cured. The advent of the genetic modification technique called CRISPR-Cas9 in 2012 has revolutionized gene therapy—as well as biology as a whole—and it has recently entered clinical trials for the treatment of some diseases in humans.

Haruno Onuma, Yusuke Sato and Hideyoshi Harashima at Hokkaido University have developed a new delivery system for CRISPR-Cas9, based on lipid nanoparticles (LNPs), that could greatly increases the efficiency of in vivo gene therapy. Their findings were published in the Journal of Controlled Release.

“There are broadly two ways of treating diseases with gene therapy,” Sato explained, “ex vivo, where cells are subjected to the desired modifications in the laboratory and then introduced into the patient, and in vivo, where the treatment is administered to the patient to change the cells in their body. Safe and effective in vivo treatment is the ultimate aspiration of gene therapy, as it would be a straightforward process for patients and healthcare providers. LNPs can function as a vehicle for the safe and effective delivery of such therapies.”

Lipid nanoparticles highly effective in gene therapy
The RNP-ssODN is designed to ensure the CRISPR-Cas9 molecule is encapsulated by the LNP. Once inside the cells, the ssODN dissociates and CRISPR-Cas9 can carry out its effect. Credit: Journal of Controlled Release (2023). DOI: 10.1016/j.jconrel.2023.02.008

CRISPR-Cas9 consists of a large molecule composed of the Cas9 protein and guide RNA. The guide RNA binds to a specific, complementary DNA sequence, and the Cas9 protein cuts that sequence, allowing it to be modified. The guide RNA can be altered to target specific DNA sequences to be modified.

“In a previous study, we discovered that additional DNA molecules, called ssODNs, ensure that the CRISPR-Cas9 molecule is loaded into the LNPs (CRISPR-LNPs),” Harashima elucidated. “In this study, we again used ssODNs, but they were carefully designed so that they would not inhibit the function of the guide RNA.”

Using a guide RNA targeting the expression of a protein called transthyretin, they evaluated the effectiveness of the CRISPR-LNPs in mice models. CRISPR-LNPs with ssODNs that dissociated from the guide RNA at room temperature were most effective at reducing serum transthyretin: two consecutive doses, one day apart, reduced it by 80%.

“We have demonstrated the optimal ssODN sequence affinity that ensures the loading and the release of CRISPR-Cas9 at the target location; and that this system can be used to edit cells in vivo,” concluded Onuma. “We will continue to improve the design of ssODNs, as well as to develop optimal lipid formulations to increase the effectiveness of delivery.”

More information:
Haruno Onuma et al, Lipid nanoparticle-based ribonucleoprotein delivery for in vivo genome editing, Journal of Controlled Release (2023). DOI: 10.1016/j.jconrel.2023.02.008

Provided by
Hokkaido University


Citation:
Lipid nanoparticle-based ribonucleoprotein delivery for in vivo genome editing (2023, March 2)
retrieved 8 March 2023
from https://phys.org/news/2023-03-lipid-nanoparticle-based-ribonucleoprotein-delivery-vivo.html

This document is subject to copyright. Apart from any fair dealing for the purpose of private study or research, no
part may be reproduced without the written permission. The content is provided for information purposes only.



TAGGED: delivery, editing, genome, Lipid, nanoparticlebased, ribonucleoprotein, vivo

Sign Up For Daily Newsletter

Be keep up! Get the latest breaking news delivered straight to your inbox.
[mc4wp_form]
By signing up, you agree to our Terms of Use and acknowledge the data practices in our Privacy Policy. You may unsubscribe at any time.
Aimee Daly March 2, 2023
Share this Article
Facebook Twitter Email Copy Link Print
Leave a comment Leave a comment

Leave a Reply Cancel reply

Your email address will not be published. Required fields are marked *

SUBSCRIBE NOW

Subscribe to our newsletter to get our newest articles instantly!

[mc4wp_form]

HOT NEWS

Japan’s H3 rocket self-destructs following launch failure

Space Flight
March 7, 2023

Is that this black gap jet making stars explode?

Again to Article Listing Greater than twice the anticipated quantity of novae have been discovered…

October 27, 2024

NASA Says Spacecraft Crash Test Successfully Changes Asteroid’s Orbit

CAPE CANAVERAL, Fla. (AP) — A spacecraft that plowed into a small, harmless asteroid millions…

October 11, 2022

World-Saving Spacecraft Passes Test

NASA says its DART spacecraft successfully shifted the path of an asteroid. For us earthlings,…

October 11, 2022

YOU MAY ALSO LIKE

Staff develops transistors with sliding ferroelectricity based mostly on polarity-switchable molybdenum disulfide

Credit score: Yang et al. (Nature Electronics, 2023). Over the previous few years, engineers have been making an attempt to…

Technology
December 23, 2023

Unimolecular self-assembled hemicyanine-oleic acid conjugate acts to eradicate most cancers stem cells: Research

Schematic illustration of unimolecular self-assembled CyOA NPs enhanced phototoxicity to CSCs by implementing oxygen-economical PDT. Credit score: Analysis Most cancers…

Technology
December 22, 2023

Nanotechnology approaches for creating biodeterioration-resistant wooden

chematic illustration of methods utilized for growth of biodeterioration-resistant wooden. Credit score: Ayyoob Arpanaei a,*, Qiliang Fu a,b, Tripti Singh…

Technology
December 21, 2023

Scientists create chiral polyoxometalate-based frameworks with enhanced stability and catalytic exercise

The chiral POM-based frameworks have enhanced stability, chiral catalysis, chiral separation, and proton conductivity. Credit score: Polyoxometalates, Tsinghua College Press…

Technology
December 21, 2023
We use our own and third-party cookies to improve our services, personalise your advertising and remember your preferences.
  • Jobs Board
  • About Us
  • Contact Us
  • Privacy Policy
  • Exclusives
  • Learn How
  • Support
  • Solutions
  • Terms And Conditions
  • Editorial Policy
  • Marketing Solutions
  • Industry Intelligence

Follow US: 

Space Science Digital

Welcome to spacescience.digital, A source for the latest news and developments in the exciting field of space science. Our blog covers a wide range of topics, from the latest space missions and discoveries to updates on technology and scientific breakthroughs. We are passionate about sharing the wonders of the universe with our readers and providing them with engaging and informative content. Join us on this fascinating journey as we explore the mysteries of space and the frontiers of human knowledge.

© 2024 Space Science Digital. All Rights Reserved.

Removed from reading list

Undo
Welcome Back!

Sign in to your account

Lost your password?