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Title
The length distribution of frangible biofilaments
Authors
Keywords
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Journal
JOURNAL OF CHEMICAL PHYSICS
Volume 143, Issue 16, Pages 164901
Publisher
AIP Publishing
Online
2015-10-23
DOI
10.1063/1.4933230
References
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Related references
Note: Only part of the references are listed.- Kinetic theory of protein filament growth: Self-consistent methods and perturbative techniques
- (2015) Thomas C. T. Michaels et al. INTERNATIONAL JOURNAL OF MODERN PHYSICS B
- Mean-field master equation formalism for biofilament growth
- (2014) Thomas C. T. Michaels et al. AMERICAN JOURNAL OF PHYSICS
- Asymptotic solutions of the Oosawa model for the length distribution of biofilaments
- (2014) Thomas C. T. Michaels et al. JOURNAL OF CHEMICAL PHYSICS
- Nucleation-conversion-polymerization reactions of biological macromolecules with prenucleation clusters
- (2014) Gonzalo A. Garcia et al. PHYSICAL REVIEW E
- Differences in nucleation behavior underlie the contrasting aggregation kinetics of the Aβ40 and Aβ42 peptides
- (2014) Georg Meisl et al. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
- Characterization of the regrowth behavior of amyloid-like fragmented fibrils decomposed by ultrasonic treatment
- (2014) Wonseok Lee et al. RSC Advances
- An Imaging and Systems Modeling Approach to Fibril Breakage Enables Prediction of Amyloid Behavior
- (2013) Wei-Feng Xue et al. BIOPHYSICAL JOURNAL
- Time evolution of amyloid fibril length distribution described by a population balance model
- (2012) Paolo Arosio et al. CHEMICAL ENGINEERING SCIENCE
- From Macroscopic Measurements to Microscopic Mechanisms of Protein Aggregation
- (2012) Samuel I.A. Cohen et al. JOURNAL OF MOLECULAR BIOLOGY
- Relationship between Prion Propensity and the Rates of Individual Molecular Steps of Fibril Assembly
- (2011) Yi-Qian Wang et al. JOURNAL OF BIOLOGICAL CHEMISTRY
- Nucleated polymerization with secondary pathways. I. Time evolution of the principal moments
- (2011) Samuel I. A. Cohen et al. JOURNAL OF CHEMICAL PHYSICS
- Nucleated polymerization with secondary pathways. III. Equilibrium behavior and oligomer populations
- (2011) Samuel I. A. Cohen et al. JOURNAL OF CHEMICAL PHYSICS
- Fibril Fragmentation Enhances Amyloid Cytotoxicity
- (2009) Wei-Feng Xue et al. JOURNAL OF BIOLOGICAL CHEMISTRY
- An Analytical Solution to the Kinetics of Breakable Filament Assembly
- (2009) T. P. J. Knowles et al. SCIENCE
- The Double Nucleation Model for Sickle Cell Haemoglobin Polymerization: Full Integration and Comparison with Experimental Data
- (2008) Terkia Medkour et al. ACTA BIOTHEORETICA
- Systematic analysis of nucleation-dependent polymerization reveals new insights into the mechanism of amyloid self-assembly
- (2008) Wei-Feng Xue et al. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
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