Bone marrow endothelial cells (BMECs) regulate their microenvironment, which includes hematopoietic stem cells. This makes BMECs an important target cell type for siRNA or gene editing (e.g., CRISPR) therapies. However, siRNA and sgRNA have not been delivered to BMECs using systemically administered nanoparticles. Given that in vitro nanoparticle screens have not identified nanoparticles with BMEC tropism, we developed a system to quantify how >100 different nanoparticles deliver siRNA in a single mouse. This is the first barcoding system capable of quantifying functional cytosolic siRNA delivery (where the siRNA drug is active), distinguishing it from in vivo screens that quantify biodistribution (where the siRNA drug went). Combining this...
RNA interference is an evolutionarily conserved gene-silencing phenomenon that shows great promise f...
RNA interference (RNAi) is being widely explored as a means of tumour therapy due to the specific an...
RNA therapeutics can potentially revolutionize the way in which we are able to treat a disease, name...
Endothelial cells and macrophages play active roles in disease and as a result are important targets...
© 2020, The Author(s), under exclusive licence to Springer Nature Limited. Bone-marrow endothelial c...
Genetic drugs (such as siRNAs, mRNAs, and CRISPR/Cas9) have the potential to be curative therapies f...
Dysfunctional endothelium contributes to more diseases than any other tissue in the body. Small inte...
Nucleic acid therapeutics are limited by inefficient delivery to target tissues and cells and by an ...
Thesis: Ph. D., Harvard-MIT Program in Health Sciences and Technology, 2015.Cataloged from PDF versi...
Most delivery systems for small interfering RNA therapeutics depend on endocytosis and release from ...
Delivery of short interfering RNAs (siRNAs) remains a key challenge in the development of RNA interf...
Despite efforts to understand the interactions between nanoparticles and cells, the cellular process...
Nanoparticles improve drug efficacy by delivering drugs to sites of disease. To effectively deliver ...
Nanoparticles are often targeted to receptors expressed on specific cells, but few receptors are (i)...
Nanoparticles represent particularly attractive delivery systems for small interfering RNA (siRNA) a...
RNA interference is an evolutionarily conserved gene-silencing phenomenon that shows great promise f...
RNA interference (RNAi) is being widely explored as a means of tumour therapy due to the specific an...
RNA therapeutics can potentially revolutionize the way in which we are able to treat a disease, name...
Endothelial cells and macrophages play active roles in disease and as a result are important targets...
© 2020, The Author(s), under exclusive licence to Springer Nature Limited. Bone-marrow endothelial c...
Genetic drugs (such as siRNAs, mRNAs, and CRISPR/Cas9) have the potential to be curative therapies f...
Dysfunctional endothelium contributes to more diseases than any other tissue in the body. Small inte...
Nucleic acid therapeutics are limited by inefficient delivery to target tissues and cells and by an ...
Thesis: Ph. D., Harvard-MIT Program in Health Sciences and Technology, 2015.Cataloged from PDF versi...
Most delivery systems for small interfering RNA therapeutics depend on endocytosis and release from ...
Delivery of short interfering RNAs (siRNAs) remains a key challenge in the development of RNA interf...
Despite efforts to understand the interactions between nanoparticles and cells, the cellular process...
Nanoparticles improve drug efficacy by delivering drugs to sites of disease. To effectively deliver ...
Nanoparticles are often targeted to receptors expressed on specific cells, but few receptors are (i)...
Nanoparticles represent particularly attractive delivery systems for small interfering RNA (siRNA) a...
RNA interference is an evolutionarily conserved gene-silencing phenomenon that shows great promise f...
RNA interference (RNAi) is being widely explored as a means of tumour therapy due to the specific an...
RNA therapeutics can potentially revolutionize the way in which we are able to treat a disease, name...