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1.
ACS Nano ; 18(15): 10374-10387, 2024 Apr 16.
Artigo em Inglês | MEDLINE | ID: mdl-38567845

RESUMO

The advent of mRNA for nucleic acid (NA) therapeutics has unlocked many diverse areas of research and clinical investigation. However, the shorter intracellular half-life of mRNA compared with other NAs may necessitate more frequent dosing regimens. Because lipid nanoparticles (LNPs) are the principal delivery system used for mRNA, this could lead to tolerability challenges associated with an accumulated lipid burden. This can be addressed by introducing enzymatically cleaved carboxylic esters into the hydrophobic domains of lipid components, notably, the ionizable lipid. However, enzymatic activity can vary significantly with age, disease state, and species, potentially limiting the application in humans. Here we report an alternative approach to ionizable lipid degradability that relies on nonenzymatic hydrolysis, leading to a controlled and highly efficient lipid clearance profile. We identify highly potent examples and demonstrate their exceptional tolerability in multiple preclinical species, including multidosing in nonhuman primates (NHP).


Assuntos
Lipossomos , Nanopartículas , Silício , Animais , Humanos , Éter , RNA Mensageiro/genética , RNA Mensageiro/química , Lipídeos/química , Nanopartículas/química , Etil-Éteres , Éteres , RNA Interferente Pequeno/genética
2.
Mol Ther ; 29(10): 2910-2919, 2021 10 06.
Artigo em Inglês | MEDLINE | ID: mdl-34091052

RESUMO

N-Acetylgalactosamine (GalNAc) conjugated short interfering RNAs (siRNAs) are a leading RNA interference (RNAi) platform allowing targeted inhibition of disease-causing genes in hepatocytes. More than a decade of development has recently resulted in the first approvals for this class of drugs. While substantial effort has been made to improve nucleic acid modification patterns for better payload stability and efficacy, relatively little attention has been given to the GalNAc targeting ligand. In addition, the lack of an intrinsic endosomal release mechanism has limited potency. Here, we report a stepwise analysis of the structure activity relationships (SAR) of the components comprising these targeting ligands. We show that there is relatively little difference in biological performance between bi-, tri-, and tetravalent ligand structures while identifying other features that affect their biological activity more significantly. Further, we demonstrate that subcutaneous co-administration of a GalNAc-functionalized, pH responsive endosomal release agent markedly improved the activity and duration of effect for siRNA conjugates, without compromising tolerability, in non-human primates. These findings could address a significant bottleneck for future siRNA ligand conjugate development.


Assuntos
Acetilgalactosamina/química , Receptor de Asialoglicoproteína/metabolismo , RNA Interferente Pequeno/administração & dosagem , Animais , Feminino , Células Hep G2 , Humanos , Injeções Subcutâneas , Ligantes , Lipossomos , Masculino , Camundongos , Nanopartículas , Primatas , RNA Interferente Pequeno/química , Relação Estrutura-Atividade
3.
Adv Drug Deliv Rev ; 154-155: 37-63, 2020.
Artigo em Inglês | MEDLINE | ID: mdl-32526452

RESUMO

Nucleic Acid (NA) based therapeutics are poised to disrupt modern medicine and augment traditional pharmaceutics in a meaningful way. However, a key challenge to advancing NA therapies into the clinical setting and on to the market is the safe and effective delivery to the target tissue and cell. Lipid Nanoparticles (LNP) have been extensively investigated and are currently the most advanced vector for the delivery of NA drugs, as evidenced by the approval of Onpattro for treatment of Amyloidosis in the US and EU in 2018. This article provides a comprehensive review of the state-of-the-art for LNP technology. We discuss key advances in the design and development of LNP, leading to a broad range of therapeutic applications. Finally, the current status of this technology in clinical trials and its future prospects are discussed.


Assuntos
Terapia Genética , Lipídeos/administração & dosagem , Nanopartículas/administração & dosagem , Ácidos Nucleicos/administração & dosagem , Animais , Hepatócitos/metabolismo , Humanos , Fígado/metabolismo
4.
Mol Ther ; 15(4): 713-20, 2007 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-17299407

RESUMO

Using a new controlled mixing process, highly transfection-competent polyplexes were formed and subsequently encapsulated within a lipid bilayer. The resulting "pre-condensed stable plasmid lipid particles" (pSPLPs) have small size (104+/-3 nm) and low surface charge characteristics. The formulation process equally enabled lipid encapsulation of either poly-L-lysine or poly(ethyleneimine) (PEI) condensed DNA, and the endosomolytic benefits of PEI were demonstrated in in vitro gene expression studies. The clearance properties of pSPLP were compared to similar formulations with an uncondensed payload (SPLP) in A/J mice bearing subcutaneous Neuro-2a tumors. Plasma clearance of pSPLP (t(1/2)=6.6 h) was similar to SPLP (t(1/2)=7.1 h), allowing significant accumulation at distal tumor target sites. Gene expression profiles were evaluated in vivo using the Neuro-2a model, and PEI-pSPLP formulations demonstrated a sixfold increase in reporter gene expression in tumors compared to SPLP. No significant gene expression was observed in the liver, lung, or spleen when mice were treated with either SPLP or pSPLP, and both formulations were equally well tolerated. The results support the lipid encapsulation of polyplex plasmid DNA as a means of changing its pharmacologic properties and enabling systemic delivery. The inclusion of endosomolytic DNA-condensing agents such as PEI greatly improves the potency of SPLP.


Assuntos
Vetores Genéticos , Plasmídeos/administração & dosagem , Plasmídeos/genética , Animais , Linhagem Celular Tumoral , Microscopia Crioeletrônica , Expressão Gênica , Terapia Genética/métodos , Técnicas In Vitro , Lipossomos , Masculino , Camundongos , Camundongos Endogâmicos A , Neuroblastoma/genética , Neuroblastoma/terapia , Transfecção
5.
J Control Release ; 112(2): 280-90, 2006 May 15.
Artigo em Inglês | MEDLINE | ID: mdl-16603272

RESUMO

Liposomal formulations have been used to encapsulate and deliver a wide variety of therapeutic and diagnostic agents. Their circulation can be prolonged by the addition of neutral, hydrophilic polymers such as poly(ethylene glycol) (PEG) to the outer surface. An extended circulation lifetime allows them to take advantage of the enhanced permeability and retention effect (EPR), resulting in increased delivery to target sites. Incorporation of PEG also prevents aggregation and aids in the formation of uniform, small mono-disperse particles. This is often accomplished with the use of PEG-lipid conjugates, PEG molecules with a hydrophobic domain to anchor them into the liposomal bilayer upon formulation. Here we present data showing that some commonly used PEG-lipids are chemically unstable due to the presence of carboxylic ester bonds. This instability limits their utility in aqueous environments common to many liposomal preparations. To address this problem, we designed and synthesized three alternative PEG-lipids. Using SPLP (PEG-stabilized liposomal vesicles encapsulating plasmid DNA) as a model system, we investigated the properties of the novel PEG-lipids. An accelerated stability study was conducted at 37 degrees C for 42 days to confirm chemical stability and an in vivo model was used to assess the pharmacokinetics, toxicity and activity of the SPLP. We show that the novel PEG-lipids are more stable in liposomal formulation, less toxic upon systemic administration, and accordingly, are suitable replacements for the PEG-lipids described previously.


Assuntos
DNA/administração & dosagem , Lipídeos , Polietilenoglicóis , Animais , Cromatografia Líquida de Alta Pressão , DNA/efeitos adversos , DNA/farmacocinética , Estabilidade de Medicamentos , Expressão Gênica , Terapia Genética , Meia-Vida , Injeções Intravenosas , Lipídeos/administração & dosagem , Lipídeos/síntese química , Lipídeos/química , Lipossomos , Luciferases/genética , Masculino , Camundongos , Camundongos Endogâmicos , Estrutura Molecular , Neuroblastoma/terapia , Tamanho da Partícula , Polietilenoglicóis/administração & dosagem , Polietilenoglicóis/síntese química , Polietilenoglicóis/química , Transfecção
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