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Χωρίς Τίτλο!
Prof. Ehud Gazit, Tel Aviv University, ISRAEL
Wednesday, April 20, 2016 @ 14:00
FORTH Amphitheatre
Host: M. Kokkinidis
=20
Bio-inspired nanotechnology is a key direction in the field of molecular =
self-assembly. Concept and notions from biological self-assembly allow =
the design and fabrication of nanomaterials, while molecular =
self-assembly paradigm could be applied to biological systems. Our works =
on the mechanism of aromatic peptide self-assembly, lead to the =
discovery that aromatic peptides, as short as dipeptides, self-assembles =
into peptide nanotubes with a remarkable physical properties We recently =
extended our studied to single amino acids and metabolites. We =
established the concept that even these entities can form well-ordered =
assemblies with amyloid like properties including ultrastructural =
morphology, toxicity leading to apoptosis, ThT-binding, and Congo-red =
birefringence.=20
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n style=3D'color:#1F497D'>=CE=98=CE=95=CE=9C=CE=91</span><span =
lang=3DEN-US style=3D'color:#1F497D'>: InnovCrete Seminar: Ehud Gazit @ =
20/04/2016, 14:00<o:p></o:p></span></p><p class=3DMsoNormal =
style=3D'margin-bottom:0cm;margin-bottom:.0001pt;line-height:normal'><spa=
n =
style=3D'color:#1F497D'>=CE=91=CE=A0=CE=9F=CE=A3=CE=A4=CE=9F=CE=9B=CE=95=CE=
=91=CE=A3</span><span lang=3DEN-US style=3D'color:#1F497D'>: IMBB =
Seminars [mailto:imbb_seminars@xxxxxxxxxxxxx]<o:p></o:p></span></p><p =
class=3DMsoNormal><span lang=3DEN-US =
style=3D'color:#1F497D'><o:p> </o:p></span></p><p =
class=3DMsoNormal><o:p> </o:p></p><p class=3DMsoNormal =
align=3Dcenter =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:auto;text-align:ce=
nter'><b><u><span style=3D'font-size:26.0pt;line-height:115%'>InnovCrete =
Seminar</span></u></b><o:p></o:p></p><p class=3DMsoNormal align=3Dcenter =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:auto;text-align:ce=
nter'><b><i><br></i></b><b><i><span style=3D'color:red'>From Biological =
Self-Assembly to Novel Peptide Nanostructures of Unique Mechanical, =
Optical, Piezoelectric and Semiconductive =
Properties</span></i></b><o:p></o:p></p><p class=3DMsoNormal =
align=3Dcenter =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:auto;text-align:ce=
nter'><b><i><br>Prof. Ehud Gazit, Tel Aviv University, =
ISRAEL<br><br><br></i></b><span =
style=3D'font-size:18.0pt;line-height:115%'>Wednesday, April 20, 2016 @ =
14:00</span><o:p></o:p></p><p class=3DMsoNormal align=3Dcenter =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:auto;text-align:ce=
nter'><i><span style=3D'font-size:13.5pt;line-height:115%'>FORTH =
Amphitheatre</span></i><i><span =
style=3D'font-size:26.0pt;line-height:115%'><br><br></span><b>Host: M. =
Kokkinidis</b></i><o:p></o:p></p><p =
class=3DMsoNormal><o:p> </o:p></p><p class=3DMsoNormal =
align=3Dcenter =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:auto;text-align:ce=
nter'><b><i><br><br></i></b><o:p></o:p></p><p class=3DMsoNormal =
style=3D'margin-bottom:0cm;margin-bottom:.0001pt;line-height:normal'><spa=
n lang=3DEN-US style=3D'mso-fareast-language:EN-US'>Bio-inspired =
nanotechnology is a key direction in the field of molecular =
self-assembly. Concept and notions from biological self-assembly allow =
the design and fabrication of nanomaterials, while molecular =
self-assembly paradigm could be applied to biological systems. =
</span><span lang=3DEN-US style=3D'mso-fareast-language:EN-GB'>Our works =
on the mechanism of aromatic peptide self-assembly, lead to the =
discovery that aromatic peptides, as short as dipeptides, self-assembles =
into peptide nanotubes with a remarkable physical properties We recently =
extended our studied to single amino acids and metabolites. We =
established the concept that even these entities can form well-ordered =
assemblies with amyloid like properties including ultrastructural =
morphology, toxicity leading to apoptosis, ThT-binding, and Congo-red =
birefringence.</span><span lang=3DEN-US> </span><span =
style=3D'font-size:12.0pt;font-family:"Times New =
Roman","serif"'><o:p></o:p></span></p></div></body></html>
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ΛΙΣΤΑ ΚΟΙΝΟΠΟΙΗΣΕΩΝ ΣΤΗ ΦΙΛΟΣΟΦΙΚΗ ΣΧΟΛΗ.