Literature DB >> 32597450

Spatiotemporal control of micromechanics and microstructure in acoustically-responsive scaffolds using acoustic droplet vaporization.

Mitra Aliabouzar1, Christopher D Davidson2, William Y Wang2, Oliver D Kripfgans3, Renny T Franceschi4, Andrew J Putnam2, J Brian Fowlkes3, Brendon M Baker2, Mario L Fabiilli3.   

Abstract

Acoustically-responsive scaffolds (ARSs), which are composite fibrin hydrogels, have been used to deliver regenerative molecules. ARSs respond to ultrasound in an on-demand, spatiotemporally-controlled manner via a mechanism termed acoustic droplet vaporization (ADV). Here, we study the ADV-induced, time-dependent micromechanical and microstructural changes to the fibrin matrix in ARSs using confocal fluorescence microscopy as well as atomic force microscopy. ARSs, containing phase-shift double emulsion (PSDE, mean diameter: 6.3 μm), were exposed to focused ultrasound to generate ADV - the phase transitioning of the PSDE into gas bubbles. As a result of ADV-induced mechanical strain, localized restructuring of fibrin occurred at the bubble-fibrin interface, leading to formation of locally denser regions. ADV-generated bubbles significantly reduced fibrin pore size and quantity within the ARS. Two types of ADV-generated bubble responses were observed in ARSs: super-shelled spherical bubbles, with a growth rate of 31 μm per day in diameter, as well as fluid-filled macropores, possibly as a result of acoustically-driven microjetting. Due to the strain stiffening behavior of fibrin, ADV induced a 4-fold increase in stiffness in regions of the ARS proximal to the ADV-generated bubble versus distal regions. These results highlight that the mechanical and structural microenvironment within an ARS can be spatiotemporally modulated using ultrasound, which could be used to control cellular processes and further the understanding of ADV-triggered drug delivery for regenerative applications.

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Year:  2020        PMID: 32597450      PMCID: PMC7377967          DOI: 10.1039/d0sm00753f

Source DB:  PubMed          Journal:  Soft Matter        ISSN: 1744-683X            Impact factor:   3.679


  57 in total

1.  Synthetic matrix metalloproteinase-sensitive hydrogels for the conduction of tissue regeneration: engineering cell-invasion characteristics.

Authors:  M P Lutolf; J L Lauer-Fields; H G Schmoekel; A T Metters; F E Weber; G B Fields; J A Hubbell
Journal:  Proc Natl Acad Sci U S A       Date:  2003-04-09       Impact factor: 11.205

Review 2.  Mechanical bioeffects of ultrasound.

Authors:  Diane Dalecki
Journal:  Annu Rev Biomed Eng       Date:  2004       Impact factor: 9.590

3.  Stiffening of individual fibrin fibers equitably distributes strain and strengthens networks.

Authors:  Nathan E Hudson; John R Houser; E Timothy O'Brien; Russell M Taylor; Richard Superfine; Susan T Lord; Michael R Falvo
Journal:  Biophys J       Date:  2010-04-21       Impact factor: 4.033

4.  Structural hierarchy governs fibrin gel mechanics.

Authors:  Izabela K Piechocka; Rommel G Bacabac; Max Potters; Fred C Mackintosh; Gijsje H Koenderink
Journal:  Biophys J       Date:  2010-05-19       Impact factor: 4.033

5.  Design of ultrasonically-activatable nanoparticles using low boiling point perfluorocarbons.

Authors:  Paul S Sheeran; Samantha H Luois; Lee B Mullin; Terry O Matsunaga; Paul A Dayton
Journal:  Biomaterials       Date:  2012-01-29       Impact factor: 12.479

6.  Strain-enhanced stress relaxation impacts nonlinear elasticity in collagen gels.

Authors:  Sungmin Nam; Kenneth H Hu; Manish J Butte; Ovijit Chaudhuri
Journal:  Proc Natl Acad Sci U S A       Date:  2016-05-02       Impact factor: 11.205

7.  Growth and dissolution of an encapsulated contrast microbubble: effects of encapsulation permeability.

Authors:  Kausik Sarkar; Amit Katiyar; Pankaj Jain
Journal:  Ultrasound Med Biol       Date:  2009-08       Impact factor: 2.998

8.  The role of inertial cavitation in acoustic droplet vaporization.

Authors:  Mario L Fabiilli; Kevin J Haworth; Nasir H Fakhri; Oliver D Kripfgans; Paul L Carson; J Brian Fowlkes
Journal:  IEEE Trans Ultrason Ferroelectr Freq Control       Date:  2009-05       Impact factor: 2.725

9.  Permeability of three-dimensional fibrin constructs corresponds to fibrinogen and thrombin concentrations.

Authors:  Cecilia L Chiu; Vivian Hecht; Haison Duong; Benjamin Wu; Bill Tawil
Journal:  Biores Open Access       Date:  2012-01

10.  Nonpolarized signaling reveals two distinct modes of 3D cell migration.

Authors:  Ryan J Petrie; Núria Gavara; Richard S Chadwick; Kenneth M Yamada
Journal:  J Cell Biol       Date:  2012-04-30       Impact factor: 10.539

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  5 in total

1.  Micropatterning of acoustic droplet vaporization in acoustically-responsive scaffolds using extrusion-based bioprinting.

Authors:  Mitra Aliabouzar; Adam W Y Ley; Sabine Meurs; Andrew J Putnam; Brendon M Baker; Oliver D Kripfgans; J Brian Fowlkes; Mario L Fabiilli
Journal:  Bioprinting       Date:  2021-12-28

2.  Spatiotemporal control of myofibroblast activation in acoustically-responsive scaffolds via ultrasound-induced matrix stiffening.

Authors:  Easton Farrell; Mitra Aliabouzar; Carole Quesada; Brendon M Baker; Renny T Franceschi; Andrew J Putnam; Mario L Fabiilli
Journal:  Acta Biomater       Date:  2021-11-20       Impact factor: 8.947

3.  Direct comparison of angiogenesis in natural and synthetic biomaterials reveals that matrix porosity regulates endothelial cell invasion speed and sprout diameter.

Authors:  William Y Wang; Robert N Kent; Stephanie A Huang; Evan H Jarman; Eve H Shikanov; Christopher D Davidson; Harrison L Hiraki; Daphne Lin; Monica A Wall; Daniel L Matera; Jae-Won Shin; William J Polacheck; Ariella Shikanov; Brendon M Baker
Journal:  Acta Biomater       Date:  2021-08-29       Impact factor: 10.633

4.  Spatially-directed angiogenesis using ultrasound-controlled release of basic fibroblast growth factor from acoustically-responsive scaffolds.

Authors:  Leidan Huang; Carole Quesada; Mitra Aliabouzar; J Brian Fowlkes; Renny T Franceschi; Zheng Liu; Andrew J Putnam; Mario L Fabiilli
Journal:  Acta Biomater       Date:  2021-05-05       Impact factor: 10.633

5.  Ultrasound-Induced Mechanical Compaction in Acoustically Responsive Scaffolds Promotes Spatiotemporally Modulated Signaling in Triple Negative Breast Cancer.

Authors:  Brock A Humphries; Mitra Aliabouzar; Carole Quesada; Avinash Bevoor; Kenneth K Y Ho; Alex Farfel; Johanna M Buschhaus; Shrila Rajendran; Mario L Fabiilli; Gary D Luker
Journal:  Adv Healthc Mater       Date:  2022-02-17       Impact factor: 11.092

  5 in total

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