Apolipoprotein nanodiscs with telodendrimer
Abstract
The present invention provides a nanodisc with a membrane scaffold protein. The nanodisc includes a membrane scaffold protein, a telodendrimer and a lipid. The membrane scaffold protein can be apolipoprotein. The telodendrimer has the general formula PEG-L-D-(R)n, wherein D is a dendritic polymer; L is a bond or a linker linked to the focal point group of the dendritic polymer; each PEG is a poly(ethylene glycol) polymer, each R is and end group of the dendritic polymer, or and end group with a covalently bound hydrophobic group, hydrophilic group, amphiphilic compound, or drug; and subscript n is an integer from 2 to 20. Cell free methods of making the nanodiscs are also provided.
- Inventors:
- Issue Date:
- Research Org.:
- Lawrence Livermore National Laboratory (LLNL), Livermore, CA (United States)
- Sponsoring Org.:
- USDOE; National Institutes of Health (NIH)
- OSTI Identifier:
- 2222026
- Patent Number(s):
- 11713359
- Application Number:
- 17/308,921
- Assignee:
- Lawrence Livermore National Security, LLC (Livermore, CA)
- Patent Classifications (CPCs):
-
C - CHEMISTRY C07 - ORGANIC CHEMISTRY C07K - PEPTIDES
- DOE Contract Number:
- AC52-07NA27344; R01CA115483
- Resource Type:
- Patent
- Resource Relation:
- Patent File Date: 05/05/2021
- Country of Publication:
- United States
- Language:
- English
Citation Formats
Luo, Juntao, He, Wei, Lam, Kit S., Henderson, Paul, and Coleman, Matthew A. Apolipoprotein nanodiscs with telodendrimer. United States: N. p., 2023.
Web.
Luo, Juntao, He, Wei, Lam, Kit S., Henderson, Paul, & Coleman, Matthew A. Apolipoprotein nanodiscs with telodendrimer. United States.
Luo, Juntao, He, Wei, Lam, Kit S., Henderson, Paul, and Coleman, Matthew A. Tue .
"Apolipoprotein nanodiscs with telodendrimer". United States. https://www.osti.gov/servlets/purl/2222026.
@article{osti_2222026,
title = {Apolipoprotein nanodiscs with telodendrimer},
author = {Luo, Juntao and He, Wei and Lam, Kit S. and Henderson, Paul and Coleman, Matthew A.},
abstractNote = {The present invention provides a nanodisc with a membrane scaffold protein. The nanodisc includes a membrane scaffold protein, a telodendrimer and a lipid. The membrane scaffold protein can be apolipoprotein. The telodendrimer has the general formula PEG-L-D-(R)n, wherein D is a dendritic polymer; L is a bond or a linker linked to the focal point group of the dendritic polymer; each PEG is a poly(ethylene glycol) polymer, each R is and end group of the dendritic polymer, or and end group with a covalently bound hydrophobic group, hydrophilic group, amphiphilic compound, or drug; and subscript n is an integer from 2 to 20. Cell free methods of making the nanodiscs are also provided.},
doi = {},
journal = {},
number = ,
volume = ,
place = {United States},
year = {2023},
month = {8}
}
Works referenced in this record:
Rhodopsin in polymerized bilayer membranes
journal, December 1985
- Tyminski, P. N.; Latimer, L. H.; O'Brien, D. F.
- Journal of the American Chemical Society, Vol. 107, Issue 25
Nanodiscs as a New Tool to Examine Lipid–Protein Interactions
book, December 2012
- Schuler, Mary A.; Denisov, Ilia G.; Sligar, Stephen G.
- Methods in Molecular Biology
Nonviral delivery of self-amplifying RNA vaccines
journal, August 2012
- Geall, A. J.; Verma, A.; Otten, G. R.
- Proceedings of the National Academy of Sciences, Vol. 109, Issue 36
mRNA vaccine delivery using lipid nanoparticles
journal, May 2016
- Reichmuth, Andreas M.; Oberli, Matthias A.; Jaklenec, Ana
- Therapeutic Delivery, Vol. 7, Issue 5
Equation of State for Phospholipid Self-Assembly
journal, January 2016
- Marsh, Derek
- Biophysical Journal, Vol. 110, Issue 1
Confinement in Nanodiscs Anisotropically Modifies Lipid Bilayer Elastic Properties
journal, July 2020
- Schachter, Itay; Allolio, Christoph; Khelashvili, George
- The Journal of Physical Chemistry B, Vol. 124, Issue 33
Comparative EPR studies on lipid bilayer properties in nanodiscs and liposomes
journal, January 2015
- Stepien, Piotr; Polit, Agnieszka; Wisniewska-Becker, Anna
- Biochimica et Biophysica Acta (BBA) - Biomembranes, Vol. 1848, Issue 1
Cationic HDL mimetics enhance in vivo delivery of self-replicating mRNA
journal, February 2020
- He, Wei; Evans, Angela C.; Rasley, Amy
- Nanomedicine: Nanotechnology, Biology and Medicine, Vol. 24
Thermotropic Phase Transition in Soluble Nanoscale Lipid Bilayers
journal, August 2005
- Denisov, Ilia G.; McLean, Mark A.; Shaw, Andrew W.
- The Journal of Physical Chemistry B, Vol. 109, Issue 32
Electrochemical flow-cell for hydrogen production and nicotinamide dependent target reduction, and related methods and systems
patent, March 2021
- Hoeprich, Jr., Paul D.; Kim, Sangil
- US Patent Document 10,934,628
Functional consequences of lipid packing stress
journal, July 2000
- Bezrukov, Sergey M.
- Current Opinion in Colloid & Interface Science, Vol. 5, Issue 3-4
Tissue Factor Compositions and Methods
patent-application, April 2006
- Morrissey, Janes H.; Pureza, Vincent S.; Sligar, Stephen G.
- US Patent Application 11/259,950; 2006/0088524 Al
Expression kinetics of nucleoside-modified mRNA delivered in lipid nanoparticles to mice by various routes
journal, November 2015
- Pardi, Norbert; Tuyishime, Steven; Muramatsu, Hiromi
- Journal of Controlled Release, Vol. 217
Reconstitution of rhodopsin and the cGMP cascade in polymerized bilayer membranes
journal, April 1988
- Tyminski, Patricia N.; Latimer, Lee H.; O'Brien, David F.
- Biochemistry, Vol. 27, Issue 8
Lipid-based mRNA vaccine delivery systems
journal, December 2014
- Midoux, Patrick; Pichon, Chantal
- Expert Review of Vaccines, Vol. 14, Issue 2
MOMP telonanoparticles, and related compositions, methods and systems
patent, December 2021
- Coleman, Matthew A.; Fischer, Nicholas O.; Rasley, Amy
- US Patent Document 11,207,422
Structure and aggregation in dilate solution of surface active agents
journal, February 1953
- Klevens, H. B.
- Journal of the American Oil Chemists' Society, Vol. 30, Issue 2
Nanoparticles for delivery of therapeutic agents using ultrasound and associated methods
patent-application, June 2006
- Watkin, Kenneth L.
- US Patent Application 11/271641; 20060127467
Supramolecular Materials via Polymerization of Mesophases of Hydrated Amphiphiles
journal, February 2002
- Mueller, Anja; O'Brien, David F.
- Chemical Reviews, Vol. 102, Issue 3
Materials for non-viral intracellular delivery of messenger RNA therapeutics
journal, October 2016
- Kauffman, Kevin J.; Webber, Matthew J.; Anderson, Daniel G.
- Journal of Controlled Release, Vol. 240
Photoinduced destabilization of liposomes
journal, January 1992
- Lamparski, Henry; Liman, Ulrich; Barry, Judith A.
- Biochemistry, Vol. 31, Issue 3
MOMP Telonanoparticles, and Related Compositions, Methods and Systems
patent-application, July 2022
- Coleman, Matthew A.; Fischer, Nicholas O.; Rasley, Amy
- US Patent Application 17/561625; 20220211866
Structure and function of membrane proteins encapsulated in a polymer-bound lipid bilayer
journal, April 2018
- Pollock, Naomi L.; Lee, Sarah C.; Patel, Jaimin H.
- Biochimica et Biophysica Acta (BBA) - Biomembranes, Vol. 1860, Issue 4
Synthetic apolipoproteins, and related compositions methods and systems for nanolipoprotein particles formation
patent, March 2022
- Hoeprich, Jr., Paul D.; Camarero, Julio A.
- US Patent Document 11,279,749
Photoinduced destabilization of bilayer vesicles
journal, December 1989
- Frankel, David A.; Lamparski, Henry; Liman, Ulrich
- Journal of the American Chemical Society, Vol. 111, Issue 26
Preparation and Characterization of Reconstituted Lipid–Synthetic Polymer Discoidal Particles
journal, November 2015
- Tanaka, Masafumi; Hosotani, Akira; Tachibana, Yuka
- Langmuir, Vol. 31, Issue 46
The Many Pathways of RNA Degradation
journal, February 2009
- Houseley, Jonathan; Tollervey, David
- Cell, Vol. 136, Issue 4
Lipid Internal Dynamics Probed in Nanodiscs
journal, June 2017
- Martinez, Denis; Decossas, Marion; Kowal, Julia
- ChemPhysChem, Vol. 18, Issue 19
Apolipoprotein nanodiscs with telodendrimer
patent, May 2017
- Luo, Juntao; He, Wei; Lam, Kit S.
- US Patent Document 9,644,038
Methods and systems for producing nanolipoprotein particles
patent, April 2022
- Coleman, Matthew A.; Hoeprich, Jr., Paul D.; Segelke, Brent W.
- US Patent Document 11,300,572
Liposome-Based Adjuvants for Subunit Vaccines: Formulation Strategies for Subunit Antigens and Immunostimulators
journal, March 2016
- Tandrup Schmidt, Signe; Foged, Camilla; Smith Korsholm, Karen
- Pharmaceutics, Vol. 8, Issue 1
Apolipoprotein Nanodiscs with Telodendrimer
patent-application, March 2018
- Luo, Junato; He, Wei; Lam, Kit S.
- US Patent Application 15/499855; 20180079829
Cationic polymer and lipoprotein-containing system for gene delivery
patent, October 1997
- Kim, Jin Seok; Maruyama, Atsushi; Akaike, Toshihiro
- US Patent Document 5,679,559
Cell-Free Co-Translational Approaches for Producing Mammalian Receptors: Expanding the Cell-Free Expression Toolbox Using Nanolipoproteins
journal, July 2019
- Shelby, Megan L.; He, Wei; Dang, Amanda T.
- Frontiers in Pharmacology, Vol. 10
Delivery Strategies for mRNA Vaccines
journal, January 2022
- Ramachandran, Sivakumar; Satapathy, Soumya Ranjan; Dutta, Tathagata
- Pharmaceutical Medicine, Vol. 36, Issue 1
mRNA vaccines — a new era in vaccinology
journal, January 2018
- Pardi, Norbert; Hogan, Michael J.; Porter, Frederick W.
- Nature Reviews Drug Discovery, Vol. 17, Issue 4
Methods and Systems for Producing Nanolipoprotein Particles
patent-application, September 2022
- Coleman, Matthew A.; Hoeprich, Paul D.; Segelke, Brent W.
- US Patent Application 17/700145; 20220283171
Apolipoprotein nanodiscs with telodendrimer
patent, July 2021
- Luo, Juntao; He, Wei; Lam, Kit S.
- US Patent Document 11,053,322