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1.
Nat Biomed Eng ; 2023 Sep 07.
Article in English | MEDLINE | ID: mdl-37679571

ABSTRACT

To elicit optimal immune responses, messenger RNA vaccines require intracellular delivery of the mRNA and the careful use of adjuvants. Here we report a multiply adjuvanted mRNA vaccine consisting of lipid nanoparticles encapsulating an mRNA-encoded antigen, optimized for efficient mRNA delivery and for the enhanced activation of innate and adaptive responses. We optimized the vaccine by screening a library of 480 biodegradable ionizable lipids with headgroups adjuvanted with cyclic amines and by adjuvanting the mRNA-encoded antigen by fusing it with a natural adjuvant derived from the C3 complement protein. In mice, intramuscular or intranasal administration of nanoparticles with the lead ionizable lipid and with mRNA encoding for the fusion protein (either the spike protein or the receptor-binding domain of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2)) increased the titres of antibodies against SARS-CoV-2 tenfold with respect to the vaccine encoding for the unadjuvanted antigen. Multiply adjuvanted mRNA vaccines may improve the efficacy, safety and ease of administration of mRNA-based immunization.

2.
Nat Biomed Eng ; 7(7): 901-910, 2023 07.
Article in English | MEDLINE | ID: mdl-37127709

ABSTRACT

Developing safe and effective nanoparticles for the delivery of messenger RNA (mRNA) is slow and expensive, partly due to the lack of predictive power of in vitro screening methods and the low-throughput nature of in vivo screening. While DNA barcoding and batch analysis present methods for increasing in vivo screening throughput, they can also result in incomplete or misleading measures of efficacy. Here, we describe a high-throughput and accurate method for the screening of pooled nanoparticle formulations within the same animal. The method uses liquid chromatography with tandem mass spectrometry to detect peptide barcodes translated from mRNAs in nanoparticle-transfected cells. We show the method's applicability by evaluating a library of over 400 nanoparticle formulations with 384 unique ionizable lipids using only nine mice to optimize the formulation of a biodegradable lipid nanoparticle for mRNA delivery to the liver. Barcoding lipid nanoparticles with peptide-encoding mRNAs may facilitate the rapid development of nanoparticles for mRNA delivery to specific cells and tissues.


Subject(s)
Liposomes , Nanoparticles , Animals , Mice , RNA, Messenger/chemistry , Nanoparticles/chemistry , Peptides
3.
Med ; 3(3): 167-187, 2022 03 11.
Article in English | MEDLINE | ID: mdl-35590191

ABSTRACT

RNA nanomedicines present a promising class of therapeutics, with broad applications in protein replacement therapy, gene editing, immunotherapy, and vaccines, owing to their versatility and precise nature. Although recent years have seen dramatic improvements in the safety and efficacy of RNA-based therapies, their functional delivery to target tissues and cells in vivo remains challenging. Here, we discuss many of these challenges, as well as the methods and materials that have been developed to overcome them, with a focus on polymeric and lipid-based nanoscale delivery systems. In addition, we provide an overview of recent clinical and pre-clinical developments in RNA nanomedicines that have been made possible by advances in delivery.


Subject(s)
Gene Editing , RNA , Genetic Therapy , Immunotherapy , Polymers , RNA/genetics
4.
Biomaterials ; 275: 120966, 2021 08.
Article in English | MEDLINE | ID: mdl-34147715

ABSTRACT

Non-viral vectors offer the potential to deliver nucleic acids including mRNA and DNA into cells in vivo. However, designing materials that effectively deliver to target organs and then to desired compartments within the cell remains a challenge. Here we develop polymeric materials that can be optimized for either DNA transcription in the nucleus or mRNA translation in the cytosol. We synthesized poly(beta amino ester) terpolymers (PBAEs) with modular changes to monomer chemistry to investigate influence on nucleic acid delivery. We identified two PBAEs with a single monomer change as being effective for either DNA (D-90-C12-103) or mRNA (DD-90-C12-103) delivery to lung endothelium following intravenous injection in mice. Physical properties such as particle size or charge did not account for the difference in transfection efficacy. However, endosome co-localization studies revealed that D-90-C12-103 nanoparticles resided in late endosomes to a greater extent than DD-90-C12-103. We compared luciferase expression in vivo and observed that, even with nucleic acid optimized vectors, peak luminescence using mRNA was two orders of magnitude greater than pDNA in the lungs of mice following systemic delivery. This study indicates that different nucleic acids require tailored delivery vectors, and further support the potential of PBAEs as intracellular delivery materials.


Subject(s)
Nanoparticles , Polymers , Animals , DNA , Lipids , Lung , Mice , RNA, Messenger/genetics , Transfection
5.
Nat Commun ; 11(1): 1979, 2020 04 24.
Article in English | MEDLINE | ID: mdl-32332735

ABSTRACT

CRISPR-Cas9-associated base editing is a promising tool to correct pathogenic single nucleotide mutations in research or therapeutic settings. Efficient base editing requires cellular exposure to levels of base editors that can be difficult to attain in hard-to-transfect cells or in vivo. Here we engineer a chemically modified mRNA-encoded adenine base editor that mediates robust editing at various cellular genomic sites together with moderately modified guide RNA, and show its therapeutic potential in correcting pathogenic single nucleotide mutations in cell and animal models of diseases. The optimized chemical modifications of adenine base editor mRNA and guide RNA expand the applicability of CRISPR-associated gene editing tools in vitro and in vivo.


Subject(s)
Adenine/chemistry , CRISPR-Cas Systems , RNA, Guide, Kinetoplastida/chemistry , RNA, Messenger/chemistry , Alleles , Animals , Cell Line , Codon , Codon, Nonsense , Cystic Fibrosis/pathology , Gene Editing , HEK293 Cells , Humans , Mice , Mutation , Nucleotides , Phenotype , Plasmids , Transfection , Uridine/analogs & derivatives , Uridine/chemistry
6.
Nat Biomed Eng ; 4(1): 52-68, 2020 01.
Article in English | MEDLINE | ID: mdl-31937944

ABSTRACT

A small percentage of the short interfering RNA (siRNA) delivered via passive lipid nanoparticles and other delivery vehicles reaches the cytoplasm of cells. The high doses of siRNA and delivery vehicle that are thus required to achieve therapeutic outcomes can lead to toxicity. Here, we show that the integration of siRNA sequences into a Dicer-independent RNA stem-loop based on pre-miR-451 microRNA-which is highly enriched in small extracellular vesicles secreted by many cell types-reduces the expression of the genes targeted by the siRNA in the liver, intestine and kidney glomeruli of mice at siRNA doses that are at least tenfold lower than the siRNA doses typically delivered via lipid nanoparticles. Small extracellular vesicles that efficiently package siRNA can significantly reduce its therapeutic dose.


Subject(s)
Extracellular Vesicles/metabolism , MicroRNAs/metabolism , RNA, Small Interfering/administration & dosage , RNA, Small Interfering/metabolism , Animals , Cell Line, Tumor , Drug Delivery Systems/methods , Gene Expression/drug effects , Humans , Mice , MicroRNAs/chemistry , Motor Neurons/drug effects , Nanoparticles/administration & dosage , RNA Interference , RNA, Small Interfering/chemistry
7.
Nat Biomed Eng ; 4(1): 125-130, 2020 01.
Article in English | MEDLINE | ID: mdl-31740768

ABSTRACT

In contrast to traditional CRISPR-Cas9 homology-directed repair, base editing can correct point mutations without supplying a DNA-repair template. Here we show in a mouse model of tyrosinaemia that hydrodynamic tail-vein injection of plasmid DNA encoding the adenine base editor (ABE) and a single-guide RNA (sgRNA) can correct an A>G splice-site mutation. ABE treatment partially restored splicing, generated fumarylacetoacetate hydrolase (FAH)-positive hepatocytes in the liver, and rescued weight loss in mice. We also generated FAH+ hepatocytes in the liver via lipid-nanoparticle-mediated delivery of a chemically modified sgRNA and an mRNA of a codon-optimized base editor that displayed higher base-editing efficiency than the standard ABEs. Our findings suggest that adenine base editing can be used for the correction of genetic diseases in adult animals.


Subject(s)
Adenine/metabolism , Gene Editing/methods , Tyrosinemias/genetics , Animals , Disease Models, Animal , Female , HEK293 Cells , Hepatocytes/metabolism , Humans , Hydrolases/genetics , Liver/metabolism , Point Mutation , RNA/administration & dosage
8.
Angew Chem Int Ed Engl ; 57(41): 13582-13586, 2018 10 08.
Article in English | MEDLINE | ID: mdl-30112821

ABSTRACT

RNAs are a promising class of therapeutics given their ability to regulate protein concentrations at the cellular level. Developing safe and effective strategies to deliver RNAs remains important for realizing their full clinical potential. Here, we develop lipid nanoparticle formulations that can deliver short interfering RNAs (for gene silencing) or messenger RNAs (for gene upregulation). Specifically, we study how the tail length, tail geometry, and linker spacing in diketopiperazine lipid materials influences LNP potency with siRNAs and mRNAs. Eight lipid materials are synthesized, and 16 total formulations are screened for activity in vitro; the lead material is evaluated with mRNA for in vivo use and demonstrates luciferase protein expression in the spleen. In undertaking this approach, not only do we develop synthetic routes to delivery materials, but we also reveal structural criteria that could be useful for developing next-generation delivery materials for RNA therapeutics.


Subject(s)
Lipids/chemistry , Nanoparticles/chemistry , RNA, Messenger/administration & dosage , RNA, Small Interfering/administration & dosage
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