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Dual-function hybrid nanoparticles with gene silencing and anti-inflammatory effects.


ABSTRACT: Background: Nanocarriers loaded with siRNA can be administered intranasally to provide a noninvasive, safe alternative to direct intracerebral or intrathecal infusions. Dual-function nanocarriers can also be designed to deliver several payloads that address different components of the pathological process. Aim: To design and test a hybrid nanocarrier with the capacity to lower Huntington's Disease gene (HTT) expression and prevent or diminish inflammation. Methods: Novel hybrid nanoparticles were fabricated using a chitosan-based matrix core loaded with siRNA and an outer shell consisting of a lipid composition containing cannabidiol. Results: Incubation of hybrid nanoparticles in mesenchymal stem cell cultures obtained from a YAC128 transgenic mouse modeling Huntington's disease resulted in effective lowering of mutant HTT gene expression and reduced levels of expression of the proinflammatory cytokine IL-6. Conclusion: A novel hybrid nanocarrier system with dual actions is effective in lowering HTT gene expression and attenuating inflammatory processes.

SUBMITTER: Fihurka O 

PROVIDER: S-EPMC9115733 | biostudies-literature | 2022 Apr

REPOSITORIES: biostudies-literature

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Dual-function hybrid nanoparticles with gene silencing and anti-inflammatory effects.

Fihurka Oksana O   Sava Vasyl V   Sanchez-Ramos Juan J  

Nanomedicine (London, England) 20220404 9


<b>Background:</b> Nanocarriers loaded with siRNA can be administered intranasally to provide a noninvasive, safe alternative to direct intracerebral or intrathecal infusions. Dual-function nanocarriers can also be designed to deliver several payloads that address different components of the pathological process. <b>Aim:</b> To design and test a hybrid nanocarrier with the capacity to lower Huntington's Disease gene (<i>HTT</i>) expression and prevent or diminish inflammation. <b>Methods:</b> No  ...[more]

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