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Micro-mechanical response and power-law exponents from the longitudinal fluctuations of F-actin solutions.

基本信息

DOI:
10.1039/d2sm01445a
发表时间:
2023-05-24
期刊:
影响因子:
3.4
通讯作者:
Jeney, Sylvia
中科院分区:
化学2区
文献类型:
Journal Article
作者: Dominguez-Garcia, Pablo;Pinto, Jose R.;Akrap, Ana;Jeney, Sylvia研究方向: Chemistry;Materials Science;Physics;Polymer ScienceMeSH主题词: --
关键词: --
来源链接:pubmed详情页地址

文献摘要

We investigate the local fluctuations of filamentous actin (F-actin), with a focus on the skeletal thin filament, using single-particle optical trapping interferometry. This experimental technique allows us to detect the Brownian motion of a tracer bead immersed in a complex fluid with nanometric resolution at the microsecond time-scale. The mean square displacement, loss modulus, and velocity autocorrelation function (VAF) of the trapped microprobes in the fluid follow power-law behaviors, whose exponents can be determined in the short-time/high-frequency regime over several decades. We obtain 7/8 subdiffusive power-law exponents for polystyrene depleted microtracers at low optical trapping forces. Microrheologically, the elastic modulus of these suspensions is observed to be constant up to the limit of high frequencies, confirming that the origin of this subdiffusive exponent is the local longitudinal fluctuations of the polymers. Deviations from this value are measured and discussed in relation to the characteristic length scales of these F-actin networks and probes’ properties, and also in connection with the different power-law exponents detected in the VAFs. Finally, we observed that the thin filament, composed of tropomyosin (Tm) and troponin (Tn) coupled to F-actin in the presence of Ca2+, shows exponent values less dispersed than that of F-actin alone, which we interpret as a micro-measurement of the filament stabilization. We investigate the local fluctuations of filamentous actin (F-actin), with a focus on the skeletal thin filament, using single-particle optical trapping interferometry.
我们使用单粒子光镊干涉测量法研究丝状肌动蛋白(F - 肌动蛋白)的局部波动,重点关注骨骼肌细丝。
参考文献(74)
被引文献(0)
Cell and molecular mechanics of biological materials
DOI:
10.1038/nmat1001
发表时间:
2003-11-01
期刊:
NATURE MATERIALS
影响因子:
41.2
作者:
Bao, G;Suresh, S
通讯作者:
Suresh, S
Stokes friction coefficient of spherical particles in the presence of polymer depletion layers - Analytical and numerical calculations, comparison with experimental data
DOI:
10.1039/a603103j
发表时间:
1997-01-07
期刊:
JOURNAL OF THE CHEMICAL SOCIETY-FARADAY TRANSACTIONS
影响因子:
0
作者:
Donath, E;Krabi, A;Vincent, B
通讯作者:
Vincent, B
Two-point microrheology of inhomogeneous soft materials
DOI:
10.1103/physrevlett.85.888
发表时间:
2000-07-24
期刊:
PHYSICAL REVIEW LETTERS
影响因子:
8.6
作者:
Crocker, JC;Valentine, MT;Weitz, DA
通讯作者:
Weitz, DA
OBSERVATION OF A SINGLE-BEAM GRADIENT FORCE OPTICAL TRAP FOR DIELECTRIC PARTICLES
DOI:
10.1364/ol.11.000288
发表时间:
1986-05-01
期刊:
OPTICS LETTERS
影响因子:
3.6
作者:
ASHKIN, A;DZIEDZIC, JM;CHU, S
通讯作者:
CHU, S
Surface adsorption and hopping cause probe-size-dependent microrheology of actin networks
DOI:
10.1103/physreve.83.041902
发表时间:
2011-04-07
期刊:
PHYSICAL REVIEW E
影响因子:
2.4
作者:
He, Jun;Tang, Jay X.
通讯作者:
Tang, Jay X.

数据更新时间:{{ references.updateTime }}

关联基金

Modulators of Cardiomyopathic Diseases
批准号:
9914116
批准年份:
2016
资助金额:
37.15
项目类别:
Jeney, Sylvia
通讯地址:
Univ Fribourg, Dept Phys, Fribourg, Switzerland
所属机构:
Univ FribourgnUniversity of FribourgnUniversity of Fribourg Faculty of Science and MedicinenUniversity of Fribourg Science SectionnUniversity of Fribourg Department of Physics
电子邮件地址:
--
通讯地址历史:
Univ Nacl Educ & Distancia UNED, Dep Fis Interdisciplinar, Madrid 28040, Spain
所属机构
Univ Nacl Educ & Distancia UNED
Universidad Nacional de Educacion a Distancia (UNED)
Florida State Univ, Dept Biomed Sci, Coll Med, Tallahassee, FL USA
所属机构
Florida State Univ
State University System of Florida
Florida State University
Florida State University College of Medicine
Florida State University College of Medicine
Florida State University Department of Biomedical Sciences
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