In Vivo Rnai

In vivo RNA interference (RNAi) is a biological method for selectively reducing gene expression within a living organism, enabling researchers to test gene function and investigate potential treatments. Delivered small interfering RNAs (siRNAs) enter cells, load into the RNA-induced silencing complex (RISC), and guide sequence-specific recognition and cleavage of complementary messenger RNA, reducing production of the encoded protein. Delivery through lipid nanoparticles, viral vectors, or other carriers can target specific tissues, although stability, biodistribution, and off-target effects remain important considerations. In vivo RNAi supports functional genomics, disease modeling, and the development of gene-silencing therapies.

In Vivo Rnai - Related Videos

Education

JoVE Science Education - Basic Biology

RNAi in C. elegans

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2023

RNA interference (RNAi) is a widely used technique in which double stranded RNA is exogenously introduced into an organism, causing knockdown of a target gene. In the nematode, C. elegans, RNAi is particularly easy and effective because it can be delivered simply by feeding the worms bacteria that express double stranded RNA (dsRNA) that is complementary to a gene of interest. First, this video will introduce the concept of RNA interference and explain how it causes targeted gene knockdown.

Research

JoVE Journal - Biology

RNAi-mediated Gene Knockdown and In Vivo Diuresis Assay in Adult Female Aedes aegypti Mosquitoes

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Cited by 19 •

2012

In this protocol we combine RNAi-mediated gene silencing with an in vivo diuresis assay to study the effects knockdown of genes of interest has on mosquito fluid excretion.

Bacterial Delivery of RNAi Effectors: Transkingdom RNAi

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Cited by 18 •

2010

For development of RNA interference (RNAi)-based therapies, a novel strategy was developed, transkingdom RNAi (tkRNAi). This technology uses non-pathogenic bacteria to produce and deliver therapeutic short hairpin RNA (shRNA) into target cells. Here, tkRNAi was successfully applied for reversal of classical ABCB1-mediated multidrug resistance (MDR) of cancer cells.

The C. elegans Excretory Canal as a Model for Intracellular Lumen Morphogenesis and In Vivo Polarized Membrane Biogenesis in a Single Cell: labeling by GFP-fusions, RNAi Interaction Screen and Imaging

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Cited by 6 •

2017

The C. elegans excretory canal is a unique single-cell model for the visual in vivo analysis of de novo polarized membrane biogenesis. This protocol describes a combination of standard genetic/RNAi and imaging approaches, adaptable for the identification and characterization of molecules directing unicellular tubulogenesis, and apical membrane and lumen biogenesis.

Culturing and Maintenance of RNAi-Expressing Bacteria

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2025

Source: Anderson, Q. L., et al., A High-throughput, High-content, Liquid-based C. elegans Pathosystem. J. Vis. Exp. (2018)This video demonstrates the preparation of RNA interference (RNAi) bacteria carrying plasmids to inhibit target gene expression. It outlines RNAi bacterial selection, growth, and induction steps to produce dsRNA-expressing plates for downstream assays.

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