Literature DB >> 30830754

Dual Toll-Like Receptor Targeting Liposomal Spherical Nucleic Acids.

Jennifer R Ferrer1,2,3, Jason A Wertheim2,4,5, Chad A Mirkin1,4,3.   

Abstract

Liposomal spherical nucleic acids (LSNAs) are a class of nanomaterial used broadly for biomedical applications. Their intrinsic capacity to rapidly enter cells and engage cell surface and intracellular ligands stems from their unique three-dimensional architecture, which consists of densely packed and uniformly oriented oligonucleotides on the surface of a liposomal core. Such structures are promising for therapeutics because they can carry chemical cargo within the lipid core in addition to the nucleic acids that define them, in principle enabling delivery of multiple signals to a single cell. On the basis of these traits, we have designed novel dual-targeting LSNAs that deliver a nucleic acid specific for TLR9 inhibition and a small molecule (TAK-242) that inhibits TLR4. Toll-like receptors (TLRs) play a large role in pathogen recognition and disease initiation, and TLR subtypes are differentially located within the lipid membranes of the cell surface and within intracellular endosomes. Oftentimes, in acute or chronic inflammatory conditions, multiple TLRs are activated, leading to stimulation of distinct, and sometimes overlapping, downstream pathways. As such, these inflammatory conditions may respond to attenuation of more than one initiating receptor. We show that dual targeting LSNAs, comprised of unilamellar liposomal cores, the INH-18 oligonucleotide sequence, and TAK-242 robustly inhibit TLR-9 and TLR-4 respectively, in engineered TLR reporter cells and primary mouse peritoneal macrophages. Importantly, the LSNAs exhibit up to a 10- and a 1000-fold increase, respectively, in TLR inhibition compared to the linear sequence and TAK-242 alone. Moreover, the timing of delivery is shown to be a critical factor in effecting TLR-inhibition, with near-complete TLR-4 inhibition occurring when cells were pretreated with SNAs for 4 h prior to stimulation. The most pronounced effect observed from this approach is the benefit of delivering the small molecule within the SNA via the receptor-mediated internalization pathway common to SNAs.

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Year:  2019        PMID: 30830754      PMCID: PMC6446553          DOI: 10.1021/acs.bioconjchem.9b00047

Source DB:  PubMed          Journal:  Bioconjug Chem        ISSN: 1043-1802            Impact factor:   4.774


  39 in total

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Journal:  Proc Natl Acad Sci U S A       Date:  2010-01-25       Impact factor: 11.205

3.  Immunomodulatory spherical nucleic acids.

Authors:  Aleksandar F Radovic-Moreno; Natalia Chernyak; Christopher C Mader; Subbarao Nallagatla; Richard S Kang; Liangliang Hao; David A Walker; Tiffany L Halo; Timothy J Merkel; Clayton H Rische; Sagar Anantatmula; Merideth Burkhart; Chad A Mirkin; Sergei M Gryaznov
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5.  DNA binding to proteolytically activated TLR9 is sequence-independent and enhanced by DNA curvature.

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6.  TAK-242 selectively suppresses Toll-like receptor 4-signaling mediated by the intracellular domain.

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7.  Necessity of oligonucleotide aggregation for toll-like receptor 9 activation.

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8.  Isolation of mouse peritoneal cavity cells.

Authors:  Avijit Ray; Bonnie N Dittel
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9.  Intracellular fate of spherical nucleic acid nanoparticle conjugates.

Authors:  Xiaochen A Wu; Chung Hang J Choi; Chuan Zhang; Liangliang Hao; Chad A Mirkin
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Review 10.  Nanoparticles in the clinic.

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  6 in total

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3.  Spherical nucleic acids: Organized nucleotide aggregates as versatile nanomedicine.

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4.  Impact of Liposomal Spherical Nucleic Acid Structure on Immunotherapeutic Function.

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Review 5.  DNA Nanostructure as an Efficient Drug Delivery Platform for Immunotherapy.

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6.  Combined integrin αvβ3 and lactoferrin receptor targeted docetaxel liposomes enhance the brain targeting effect and anti-glioma effect.

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  6 in total

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