A droplet reactor on a super-hydrophobic surface allows control and characterization of amyloid fibril growth

Peng Zhang(University of Cincinnati), Enzo Di Fabrizio(Politecnico di Torino), Yuansi Tian(King Abdullah University of Science and Technology), S. Mani Sarathy(King Abdullah University of Science and Technology), Davide Altamura(Institute of Crystallography), Gobind Das(Khalifa University of Science and Technology), Natalia Malara(Magna Graecia University), Francesco Gentile(Federico II University Hospital), Manola Moretti(King Abdullah University of Science and Technology), Ida Autiero(Institute of Biostructure and Bioimaging), Marco Allione(King Abdullah University of Science and Technology), Er Qiang Li(University of Science and Technology of China), Monica Marini(University of Brescia), Andrea Giugni(University of Milan), Bruno Torre(King Abdullah University of Science and Technology), Javier Ordoñez-Loza(Western University), S. T. Thoroddsen(King Abdullah University of Science and Technology), Cinzia Giannini(Institute of Crystallography)
Communications Biology
August 20, 2020
Cited by 17


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