22 results on '"Kaminski Schierle, Gabriele S."'
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2. High Aspect Ratio Nanoscale Pores through BCP-Based Metal Oxide Masks and Advanced Dry Etching.
3. Feasibility of Coacervate-Like Nanostructure for Instant Drug Nanoformulation.
4. Millisecond Hydrogen/Deuterium-Exchange Mass Spectrometry Approach to Correlate Local Structure and Aggregation in α‑Synuclein.
5. Non-Aromatic Fluorescence in Biological Matter: The Exception or the Rule?
6. Fluorescent Nanoparticles for Super-Resolution Imaging.
7. Intracellular Aβ42 Aggregation Leads to Cellular Thermogenesis.
8. Design of a Functionalized Metal–Organic Framework System for Enhanced Targeted Delivery to Mitochondria
9. Different Structural Conformers of Monomeric α-Synuclein Identified after Lyophilizing and Freezing
10. Label-Free Characterization of Amyloids and Alpha-Synuclein Polymorphs by Exploiting Their Intrinsic Fluorescence Property.
11. Purification of Recombinant α‑synuclein: A Comparison of Commonly Used Protocols.
12. Fast Purification of Recombinant Monomeric Amyloid‑β from E. coli and Amyloid-β-mCherry Aggregates from Mammalian Cells.
13. Fast Fluorescence Lifetime Imaging Reveals the Aggregation Processes of α‑Synuclein and Polyglutamine in Aging Caenorhabditis elegans.
14. Fluorescence Self-Quenching from Reporter Dyes Informs on the Structural Properties of Amyloid Clusters Formed in Vitro and in Cells.
15. Direct Observation of Heterogeneous Amyloid FibrilGrowth Kinetics via Two-Color Super-Resolution Microscopy.
16. Feasibility of coacervate-like nanostructure for instant drug nanoformulation
17. Design of a Functionalized Metal-Organic Framework System for Enhanced Targeted Delivery to Mitochondria.
18. Opal-like Multicolor Appearance of Self-Assembled Photonic Array.
19. Fluorescence Self-Quenching from Reporter Dyes Informs on the Structural Properties of Amyloid Clusters Formed in Vitro and in Cells.
20. Proton Transfer and Structure-Specific Fluorescence in Hydrogen Bond-Rich Protein Structures.
21. Direct observation of heterogeneous amyloid fibril growth kinetics via two-color super-resolution microscopy.
22. In situ measurements of the formation and morphology of intracellular β-amyloid fibrils by super-resolution fluorescence imaging.
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