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Molecular Therapy. Nucleic Acids|October 11, 2021
miR-320a induces pancreatic β cells dysfunction in diabetes by inhibiting MafFHengzhi Du, Zhongwei Yin, Yanru Zhao, et al.Molecular Therapy. Nucleic Acids|October 11, 2021
Circulating EVs long RNA-based subtyping and deconvolution enable prediction of immunogenic signatures and clinical outcome for PDACYuchen Li, Ye Li, Shulin Yu, et al.Molecular Therapy. Nucleic Acids|October 11, 2021
Replacing the SpCas9 HNH domain by deaminases generates compact base editors with an alternative targeting scopeLukas Villiger, Lukas Schmidheini, Nicolas Mathis, et al.Molecular Therapy. Nucleic Acids|October 11, 2021
Hsa_circ_0024093 accelerates VSMC proliferation via miR-4677-3p/miR-889-3p/USP9X/YAP1 axis in in vitro model of lower extremity ASOXue Zhang, Peng Wang, Kai Yuan, et al.Molecular Therapy. Nucleic Acids|October 11, 2021
Live-cell imaging of microRNA expression with post-transcriptional feedback controlMasayuki Sano, Kana Morishita, Satoshi Oikawa, et al.Molecular Therapy. Nucleic Acids|October 11, 2021
Effects of long-term culture on the biological characteristics and RNA profiles of human bone-marrow-derived mesenchymal stem cellsShan Wang, Ziming Wang, Hongjun Su, et al.Molecular Therapy. Nucleic Acids|October 27, 2021
Development of a novel PTD-mediated IVT-mRNA delivery platform for potential protein replacement therapy of metabolic/genetic disordersAndroulla N Miliotou, Ioannis S Pappas, George Spyroulias, et al.Molecular Therapy. Nucleic Acids|October 27, 2021
A GD2-aptamer-mediated, self-assembling nanomedicine for targeted multiple treatments in neuroblastoma theranosticsLiyu Zhang, Meng Wang, Zeen Zhu, et al.Molecular Therapy. Nucleic Acids|September 30, 2021
MultiEditR: The first tool for the detection and quantification of RNA editing from Sanger sequencing demonstrates comparable fidelity to RNA-seqMitchell G Kluesner, Rafail Nikolaos Tasakis, Taga Lerner, et al.Molecular Therapy. Nucleic Acids|September 30, 2021
miR-497 defect contributes to gastric cancer tumorigenesis and progression via regulating CDC42/ITGB1/FAK/PXN/AKT signalingLihui Zhang, Liwen Yao, Wei Zhou, et al.Pageof 308