A one-step construction of adenovirus (OSCA) system using the Gibson DNA Assembly technology
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Daniel A. Hu | T. He | Le Shen | H. Luu | R. Reid | R. Haydon | Fang-ge Deng | Jiaming Fan | J. Liao | Y. Zou | Xue-Lian Hu | K. Qin | Fang He | Hao Wang | Deyao Shi | Na Ni | Maya Sabharwal | W. Wagstaff | Piao Zhao | Connie Chen | Hongwei Wang | Bryce Hendren-Santiago | David Qin | Bryce K Hendren-Santiago
[1] Jian Yang,et al. Argonaute (AGO) proteins play an essential role in mediating BMP9-induced osteogenic signaling in mesenchymal stem cells (MSCs) , 2021, Genes & diseases.
[2] T. He,et al. BMP9‐initiated osteogenic/odontogenic differentiation of mouse tooth germ mesenchymal cells (TGMCS) requires Wnt/β‐catenin signalling activity , 2021, Journal of cellular and molecular medicine.
[3] T. He,et al. Long non-coding RNA (LncRNA) HOTAIR regulates BMP9-induced osteogenic differentiation by targeting the proliferation of mesenchymal stem cells (MSCs) , 2021, Aging.
[4] T. He,et al. Modeling colorectal tumorigenesis using the organoids derived from conditionally immortalized mouse intestinal crypt cells (ciMICs) , 2021, Genes & diseases.
[5] T. He,et al. FAMSi: A Synthetic Biology Approach to the Fast Assembly of Multiplex siRNAs for Silencing Gene Expression in Mammalian Cells , 2020, Molecular therapy. Nucleic acids.
[6] Daniel A. Hu,et al. SATB2: A versatile transcriptional regulator of craniofacial and skeleton development, neurogenesis and tumorigenesis, and its applications in regenerative medicine , 2020, Genes & diseases.
[7] T. He,et al. Blockade of IGF/IGF-1R signaling axis with soluble IGF-1R mutants suppresses the cell proliferation and tumor growth of human osteosarcoma. , 2020, American journal of cancer research.
[8] T. He,et al. Development of a simplified and inexpensive RNA depletion method for plasmid DNA purification using size selection magnetic beads (SSMBs) , 2020, Genes & diseases.
[9] T. He,et al. Leptin Potentiates BMP9-Induced Osteogenic Differentiation of Mesenchymal Stem Cells Through the Activation of JAK/STAT Signaling. , 2020, Stem cells and development.
[10] T. He,et al. lncRNA Rmst acts as an important mediator of BMP9-induced osteogenic differentiation of mesenchymal stem cells (MSCs) by antagonizing Notch-targeting microRNAs , 2019, Aging.
[11] T. He,et al. Highly expressed BMP9/GDF2 in postnatal mouse liver and lungs may account for its pleiotropic effects on stem cell differentiation, angiogenesis, tumor growth and metabolism , 2019, Genes & diseases.
[12] Elliot S. Bishop,et al. The wonders of BMP9: From mesenchymal stem cell differentiation, angiogenesis, neurogenesis, tumorigenesis, and metabolism to regenerative medicine , 2019, Genes & diseases.
[13] B. Liu,et al. A simplified system for the effective expression and delivery of functional mature microRNAs in mammalian cells , 2019, Cancer Gene Therapy.
[14] B. Liu,et al. Transcriptomic landscape regulated by the 14 types of bone morphogenetic proteins (BMPs) in lineage commitment and differentiation of mesenchymal stem cells (MSCs) , 2019, Genes & diseases.
[15] A. M. Ismail,et al. Rapid Construction of a Replication-Competent Infectious Clone of Human Adenovirus Type 14 by Gibson Assembly , 2018, Viruses.
[16] Yang Yu,et al. ☆DNA assembly technique simplifies the construction of infectious clone of fowl adenovirus. , 2018, Journal of virological methods.
[17] Bo Zhang,et al. Characterization of the essential role of bone morphogenetic protein 9 (BMP9) in osteogenic differentiation of mesenchymal stem cells (MSCs) through RNA interference , 2018, Genes & diseases.
[18] T. He,et al. CRISPR/Cas9-mediated reversibly immortalized mouse bone marrow stromal stem cells (BMSCs) retain multipotent features of mesenchymal stem cells (MSCs) , 2017, Oncotarget.
[19] Wenli Zhang,et al. Recent Advances in Preclinical Developments Using Adenovirus Hybrid Vectors. , 2017, Human gene therapy.
[20] L. Seymour,et al. Oncolytic adenovirus expressing bispecific antibody targets T‐cell cytotoxicity in cancer biopsies , 2017, EMBO molecular medicine.
[21] T. He,et al. BMP9 induces osteogenesis and adipogenesis in the immortalized human cranial suture progenitors from the patent sutures of craniosynostosis patients , 2017, Journal of cellular and molecular medicine.
[22] T. He,et al. Engineering the Rapid Adenovirus Production and Amplification (RAPA) Cell Line to Expedite the Generation of Recombinant Adenoviruses , 2017, Cellular Physiology and Biochemistry.
[23] Chao Yang,et al. Adenovirus-mediated gene delivery: Potential applications for gene and cell-based therapies in the new era of personalized medicine , 2017, Genes & diseases.
[24] T. He,et al. Noncanonical Wnt signaling plays an important role in modulating canonical Wnt-regulated stemness, proliferation and terminal differentiation of hepatic progenitors , 2017, Oncotarget.
[25] Maryam K. Mohammed,et al. A thermoresponsive polydiolcitrate-gelatin scaffold and delivery system mediates effective bone formation from BMP9-transduced mesenchymal stem cells , 2016, Biomedical materials.
[26] V. Mouly,et al. Selection-free gene repair after adenoviral vector transduction of designer nucleases: rescue of dystrophin synthesis in DMD muscle cell populations , 2016, Nucleic acids research.
[27] T. He,et al. A Simplified and Versatile System for the Simultaneous Expression of Multiple siRNAs in Mammalian Cells Using Gibson DNA Assembly , 2014, PloS one.
[28] X. Chen,et al. Overexpression of Ad5 precursor terminal protein accelerates recombinant adenovirus packaging and amplification in HEK-293 packaging cells , 2014, Gene Therapy.
[29] T. He,et al. Adenovirus-Mediated Gene Transfer in Mesenchymal Stem Cells Can Be Significantly Enhanced by the Cationic Polymer Polybrene , 2014, PloS one.
[30] T. He,et al. Targeting BMP9-promoted human osteosarcoma growth by inactivation of notch signaling. , 2014, Current cancer drug targets.
[31] F. Lienert,et al. Synthetic biology in mammalian cells: next generation research tools and therapeutics , 2014, Nature Reviews Molecular Cell Biology.
[32] D. G. Gibson,et al. Enzymatic Assembly of Overlapping DNA Fragments , 2011, Methods in Enzymology.
[33] T. He,et al. Insulin-like Growth Factor 2 (IGF-2) Potentiates BMP-9-Induced Osteogenic Differentiation and Bone Formation , 2010, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[34] D. G. Gibson,et al. Enzymatic assembly of DNA molecules up to several hundred kilobases , 2009, Nature Methods.
[35] K. Kinzler,et al. A protocol for rapid generation of recombinant adenoviruses using the AdEasy system , 2007, Nature Protocols.
[36] J. Szatkowski,et al. Characterization of the distinct orthotopic bone-forming activity of 14 BMPs using recombinant adenovirus-mediated gene delivery , 2004, Gene Therapy.
[37] T. He,et al. Adenoviral vector-mediated gene transfer for human gene therapy. , 2001, Current gene therapy.
[38] F. Graham,et al. High-efficiency Cre/loxp based system for construction of adenovirus vectors , 1999 .
[39] M. Kay,et al. Efficient construction of a recombinant adenovirus vector by an improved in vitro ligation method. , 1998, Human gene therapy.
[40] M. Kitamura,et al. Construction of adenovirus vectors through Cre-lox recombination , 1997, Journal of virology.
[41] M. Mehtali,et al. Efficient generation of recombinant adenovirus vectors by homologous recombination in Escherichia coli , 1996, Journal of virology.
[42] F. Graham,et al. Methods for construction of adenovirus vectors , 1995, Molecular biotechnology.
[43] F. Spencer,et al. Efficient manipulation of the human adenovirus genome as an infectious yeast artificial chromosome clone. , 1994, Proceedings of the National Academy of Sciences of the United States of America.
[44] T. He,et al. Canonical Wnt signaling acts synergistically on BMP9-induced osteo/odontoblastic differentiation of stem cells of dental apical papilla (SCAPs). , 2015, Biomaterials.
[45] R. Crystal. Adenovirus: the first effective in vivo gene delivery vector. , 2014, Human gene therapy.
[46] J. Szatkowski,et al. Osteogenic activity of the fourteen types of human bone morphogenetic proteins (BMPs). , 2003, The Journal of bone and joint surgery. American volume.
[47] K. Kinzler,et al. A simplified system for generating recombinant adenoviruses. , 1998, Proceedings of the National Academy of Sciences of the United States of America.