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The Democratization of RNA Therapeutics.- Supramolecular Strategies for mRNA Delivery.- In Vitro-Transcribed mRNAs as a New Generation of Therapeutics in the Dawn of 21st Century: Exploitation of Peptides as Carriers for their Intracellular Delivery.- Effective Delivery of mRNA Therapeutics and Vaccines Using Lipid Nanoparticles.- Messenger RNA Therapeutics.- Formulation, Delivery and Application of mRNA Therapeutics In Respiratory Diseases.- Clinical Applications of mRNA Formulated In Lipid Nanoparticles.- Preparation of Messenger RNA Loaded Nanomedicine Applied on Tissue Engineering And Regenerative Medicine.- Lipid Nanoparticle-Mediated Delivery of mRNA Therapeutics: Immune Activation By Ionizable Cationic Lipids.- Adjuvants, the Elephant in the Room for RNA Vaccines.- Addressing Skin with Modified mRNA Constructs for Novel Therapies.- mRNA-Based Cancer Immunotherapies.- From Bench to Bedside: The Journey of an mRNA Drug Candidate Into a Medicine.- Synthetic mRNA Gene Therapies for Chronic HBV Infection.- Delivery Vehicles for Self-Amplifying RNA.- Delivery Technologies of mRNA Vaccines.- Nanosystems: The Key in Formulations of mRNA for Several Pathologies.- Messenger RNA Nanoformulation For Cancer Vaccine.- Preparation of Synthetic mRNAs for In Vivo Applications – Overview and Considerations.- Messenger RNA for Prophylaxis.- Nuclear Export of mRNA with Disease Pathogenesis and Therapeutic Potentials.- Messenger RNA Therapeutics: Start of a New Era in Medicine.- mRNA Delivery Technologies for Therapeutic Applications.
Jan Barciszewski is Professor at Adam Mickiewicz University (AMU) in Poznan, Poland and at the Institute of Bioorganic Chemistry of the Polish Academy of Sciences, Poznan, Poland where he has worked since 1974. He studied organic chemistry at the AMU. During his Ph.D. studies, he worked on the structure and function of modified bases and nucleoside sequences of plant phenylalanine specific transfer ribonucleic acid (tRNA), including cytokinins. He was subsequently granted Doctor of Science degree for his work on the properties of plant tRNAs and aminoacyl-tRNA synthetases. In the 1990s, he began working on the diagnosis and therapy of brain tumors. He developed a new method for the transformation of plant mitochondria based on catalytic RNAs and is currently involved in studies on a new type of catalytic RNAs (enantiomeric ribozymes) for efficient RNA target cleavage in vivo, as well as the search for new anti-aging agents.


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