IONIZABLE LIPIDS, LIPID NANOPARTICLES, AND USES THEREOF
Ionizable lipids and lipid nanoparticles comprising ionizable lipids are provided herein. Also provided are methods for making and using the lipid nanoparticles for delivery to a cell one or more payload agents, including polypeptides, mRNAs such as mRNA encoding Cas9 nuclease, and guide RNAs comprising backbone, sugar or base modifications.
1 . A lipid nanoparticle (LNP) comprising an ionizable lipid of Formula I
wherein, R 1 and R 2 are independently selected from the group consisting of
wherein X 1 and X 2 are hydrolyzable linkers, wherein (a) is 2-9, and wherein (b) is 2-9.
2 . The LNP of claim 1 , wherein the hydrolyzable linker is an ester.
3 . The LNP of claim 1 , wherein the ionizable is a lipid of Formula II
4 . The LNP of claim 1 , further comprising cholesterol, a helper phospholipid and a polyethylene glycol (PEG)-lipid.
5 . The LNP of claim 1 , wherein about 20% to about 80% of the total lipid content of the LNP is the ionizable lipid of Formula I.
6 . The LNP of claim 1 , wherein the LNP comprises:
(a) 20%-80% ionizable lipid of Formula I,
(b) 5%-20% helper lipid,
(c) 10%-60% cholesterol, and
(d) 0.5%-5% PEG.
7 . The LNP of claim 1 , further comprising a polypeptide, a nucleic acid, or a combination thereof.
8 . The LNP of claim 7 , wherein a nucleic acid encoding a heterologous polypeptide is encapsulated in the LNP.
9 . The LNP of claim 8 , wherein the nucleic acid is an mRNA.
10 . The LNP of claim 9 , wherein the mRNA encodes an RNA-guided endonuclease.
11 . The LNP of claim 10 , wherein the RNA-guided endonuclease is a Cas9 nuclease.
12 . The LNP of claim 9 , wherein the LNP further comprises a guide RNA.
13 . The LNP of claim 12 , wherein the guide RNA is a modified guide RNA.
14 . The LNP of claim 13 , wherein the guide RNA comprises one or more modifications selected from the group consisting of a backbone modification, a sugar modification, a base modification, and any combination thereof.
15 . The LNP of claim 14 , wherein the sugar modification is a 2′ OMe or a 2′F modification of the 2′ ribose group.
16 . The LNP of claim 14 , wherein the backbone modification is a thioester modification.
17 . The LNP of claim 13 , wherein the guide RNA comprises a nucleic acid sequence of 100 nucleotides, wherein 69 of the 100 nucleotides are modified.
18 . The LNP of claim 10 , wherein the mRNA encoding the RNA-guided endonuclease and the guide RNA are encapsulated separately and then combined to form one or more LNPs comprising the RNA-guided endonuclease and the guide RNA.
19 . The LNP of claim 18 , wherein the mRNA encoding the RNA-guided endonuclease and the guide RNA are co-encapsulated in the one or more LNPs.
20 . The LNP of claim 19 , wherein the ratio of nitrogen groups in the ionizable lipid to phosphate groups in the mRNA and/or gRNA in the LNP is from about 4 to about 6.
21 . The LNP of claim 10 , wherein the LNP further comprises at least one template sequence.
22 . A pharmaceutical composition comprising the LNP of claim 1 .
23 . A method of delivering a heterologous polypeptide to a cell comprising contacting a cell with the LNP of claim 8 or a pharmaceutical composition comprising the LNP of claim 8 .
24 . A method of editing the genome of a cell comprising contacting a cell with the LNP of claim 10 or a pharmaceutical composition comprising the LNP of claim 10 .
25 . (canceled)
26 . (canceled)
27 . A genetically modified cell made by the method of claim 26 .