The present application provides nerve growth factor (NGF) variants with improved in vivo stability, methods for producing and purifying NGF variants, as well as potential therapeutic applications.
Provided herein are novel methods of treating cerebral ischemia, comprising administering a polymer nanocapsule or a composition thereof. Said nanocapsules comprise a polymer shell and an RNAi (e.g., miRNA) molecule, wherein the polymer shell comprises a) at least one positively charged monomer, b) at least one degradable cross-linker, and c) at least one neutral monomer; and the RNAi molecule provides therapeutic benefits to a subject suffering from cerebral ischemia. Also disclosed herein are compositions of said polymer nanocapsules.
Protein Nanocapsules With Detachable Zwitterionic Coating For Protein Delivery
- Oakland CA, US Jie LI - Los Angeles CA, US Yang LIU - Los Angeles CA, US Jie REN - Los Angeles CA, US Jing WEN - Culver City CA, US
International Classification:
A61K 9/51 A61K 38/38
Abstract:
The invention relates to protein nanocapsules that exhibit material properties that change in different in vivo environments. A zwitterion moiety on the surface of the nanocapsule can protect the protein from opsonization in a first environment, yet uncouples from the protein nanocapsule in a second environment (e.g. at a pH of less than 6.5). In embodiments of the invention, the uncoupled protein nanocarrier is then internalized by mammalian cells (e.g. tumor cells).
Enzyme Responsive Nanocapsules For Protein Delivery
- Oakland CA, US Tatiana Segura - Los Angeles CA, US Suwei Zhu - Los Angeles CA, US Jing Wen - Culver City CA, US
Assignee:
The Regents of the University of California - Oakland CA
International Classification:
A61K 9/51 A61K 47/65 A61K 9/19 A61K 38/18
Abstract:
The invention provides methods of making and using compositions comprising a polymer shell designed to deliver polypeptides to selected environments. In embodiments of the invention, different environmental conditions are harnessed to allow the selective degradation of the polymer shell and the consequential release of one or polypeptides encapsulated therein. In illustrative embodiments, polymer components of the shell are interconnected by peptide-containing crosslinker to moieties, linkages which maintain the integrity of the polymer shell under certain enviromental conditions, but can also be cleaved when combined with a selected protease.
Compositions And Methods For Recombinant Nerve Growth Factor
The present application provides nerve growth factor (NGF) variants with improved in vivo stability, methods for producing and purifying NGF variants, as well as potential therapeutic applications.
The invention relates to methods and materials for extending a circulating half-life of a protein. The method comprises conjugating a protein with a polymerizable acryloyl group and encapsulating the protein with a layer of poly(2-methacryloxyloxyethyl phosphorycholine) (pMPC). The layer of pMPC comprises a plurality of 2-methacryloxyloxyethyl phosphorycholine monomers (MPC) polymerized with a N,N′-methylenebisacrylamide (BIS) crosslinker.
Enzyme Responsive Nanocapsules For Protein Delivery
Yunfeng Lu - Culver City CA, US Tatiana Segura - Los Angeles CA, US Suwei Zhu - Los Angeles CA, US Jing Wen - Culver City CA, US
International Classification:
A61K 9/51 A61K 38/18
Abstract:
The invention provides methods of making and using compositions comprising a polymer shell designed to deliver polypeptides to selected environments. In embodiments of the invention, different environmental conditions are harnessed to allow the selective degradation of the polymer shell and the consequential release of one or polypeptides encapsulated therein. In illustrative embodiments, polymer components of the shell are interconnected by peptide-containing crosslinker moieties, linkages which maintain the integrity of the polymer shell under certain environmental conditions, but can also be cleaved when combined with a selected protease.
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