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Dive into the research topics where Joseph R. Dorkin is active.

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Featured researches published by Joseph R. Dorkin.


Nature Materials | 2013

Delivery materials for siRNA therapeutics

Rosemary Lynn Kanasty; Joseph R. Dorkin; Arturo Vegas; Daniel G. Anderson

RNA interference (RNAi) has broad potential as a therapeutic to reversibly silence any gene. To achieve the clinical potential of RNAi, delivery materials are required to transport short interfering RNA (siRNA) to the site of action in the cells of target tissues. This Review provides an introduction to the biological challenges that siRNA delivery materials aim to overcome, as well as a discussion of the way that the most effective and clinically advanced classes of siRNA delivery systems, including lipid nanoparticles and siRNA conjugates, are designed to surmount these challenges. The systems that we discuss are diverse in their approaches to the delivery problem, and provide valuable insight to guide the design of future siRNA delivery materials.


Nature Biotechnology | 2016

Therapeutic genome editing by combined viral and non-viral delivery of CRISPR system components in vivo.

Hao Yin; Chun-Qing Song; Joseph R. Dorkin; Lihua Julie Zhu; Yingxiang Li; Qiongqiong Wu; Angela I. Park; Junghoon Yang; Sneha Suresh; Aizhan Bizhanova; Ankit Gupta; Mehmet Fatih Bolukbasi; Stephen Walsh; Roman L. Bogorad; Guangping Gao; Zhiping Weng; Yizhou Dong; Victor Koteliansky; Scot A. Wolfe; Robert Langer; Wen Xue; Daniel G. Anderson

The combination of Cas9, guide RNA and repair template DNA can induce precise gene editing and the correction of genetic diseases in adult mammals. However, clinical implementation of this technology requires safe and effective delivery of all of these components into the nuclei of the target tissue. Here, we combine lipid nanoparticle–mediated delivery of Cas9 mRNA with adeno-associated viruses encoding a sgRNA and a repair template to induce repair of a disease gene in adult animals. We applied our delivery strategy to a mouse model of human hereditary tyrosinemia and show that the treatment generated fumarylacetoacetate hydrolase (Fah)-positive hepatocytes by correcting the causative Fah-splicing mutation. Treatment rescued disease symptoms such as weight loss and liver damage. The efficiency of correction was >6% of hepatocytes after a single application, suggesting potential utility of Cas9-based therapeutic genome editing for a range of diseases.


Advanced Materials | 2017

Synthesis and Biological Evaluation of Ionizable Lipid Materials for the In Vivo Delivery of Messenger RNA to B Lymphocytes

Owen S. Fenton; Kevin J. Kauffman; James C. Kaczmarek; Rebecca L. Mcclellan; Siddharth Jhunjhunwala; Mark W. Tibbitt; Manhao D. Zeng; Eric A. Appel; Joseph R. Dorkin; Faryal F. Mir; Jung H. Yang; Matthias A. Oberli; Michael Heartlein; Frank Derosa; Robert Langer; Daniel G. Anderson

B lymphocytes regulate several aspects of immunity including antibody production, cytokine secretion, and T-cell activation; moreover, B cell misregulation is implicated in autoimmune disorders and cancers such as multiple sclerosis and non-Hodgkins lymphomas. The delivery of messenger RNA (mRNA) into B cells can be used to modulate and study these biological functions by means of inducing functional protein expression in a dose-dependent and time-controlled manner. However, current in vivo mRNA delivery systems fail to transfect B lymphocytes and instead primarily target hepatocytes and dendritic cells. Here, the design, synthesis, and biological evaluation of a lipid nanoparticle (LNP) system that can encapsulate mRNA, navigate to the spleen, transfect B lymphocytes, and induce more than 60 pg of protein expression per million B cells within the spleen is described. Importantly, this LNP induces more than 85% of total protein production in the spleen, despite LNPs being observed transiently in the liver and other organs. These results demonstrate that LNP composition alone can be used to modulate the site of protein induction in vivo, highlighting the critical importance of designing and synthesizing new nanomaterials for nucleic acid delivery.


Archive | 2013

Amine-containing lipidoids and uses thereof

Daniel G. Anderson; Kathryn A. Whitehead; Joseph R. Dorkin; Arturo Vegas; Yunlong Zhang; Robert Langer


Archive | 2012

Alpha-aminoamidine polymers and uses thereof

Arturo Vegas; Kathryn A. Whitehead; Daniel G. Anderson; Robert Langer; Joseph R. Dorkin


Archive | 2014

1,3,5-TRIAZINANE-2,4,6-TRIONE DERIVATIVES AND USES THEREOF

Yizhou Dong; Akinleye C. Alabi; Hao Yin; Joseph R. Dorkin; Delai Chen; Robert Langer; Daniel G. Anderson; Ahmed A. Eltoukhy


Archive | 2015

Method for gene editing

Hao Yin; Wen Xue; Daniel G. Anderson; Joseph R. Dorkin; Tyler Jacks


Biomaterials Science | 2017

Poly(glycoamidoamine) brush nanomaterials for systemic siRNA delivery in vivo

Xiao Luo; Weiheng Wang; Joseph R. Dorkin; Omid Veiseh; P. H. Chang; Inbal Abutbul-Ionita; Dganit Danino; Robert Langer; Daniel G. Anderson; Yizhou Dong


Archive | 2016

ALKENYL SUBSTITUTED 2,5-PIPERAZINEDIONES, COMPOSITIONS, AND USES THEREOF

Daniel G. Anderson; Joseph R. Dorkin; Owen S. Fenton; Kevin J. Kauffman; Rebecca L. Mcclellan


Archive | 2015

POLYAMINE-FATTY ACID DERIVED LIPIDOIDS AND USES THEREOF

Owen S. Fenton; Joseph R. Dorkin; Daniel G. Anderson; Rebecca L. Mcclellan

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Daniel G. Anderson

Lankenau Institute for Medical Research

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Robert Langer

Massachusetts Institute of Technology

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Arturo Vegas

Massachusetts Institute of Technology

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Yizhou Dong

Massachusetts Institute of Technology

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Hao Yin

Massachusetts Institute of Technology

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Kevin J. Kauffman

Massachusetts Institute of Technology

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Owen S. Fenton

Massachusetts Institute of Technology

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Rebecca L. Mcclellan

Massachusetts Institute of Technology

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