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Noninvasive assessment of collagen gel microstructure and mechanics using multiphoton microscopy.

Noninvasive assessment of collagen gel microstructure and mechanics using multiphoton microscopy. Research Abstract Details 

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  • Noninvasive assessment of collagen gel microstructure and mechanics using multiphoton microscopy. Abstract Text:

    christopher b raubChristopher B Raub,vinod sureshVinod Suresh,tatiana krasievaTatiana Krasieva,julia lyubovitskyJulia Lyubovitsky,justin d mihJustin D Mih,andrew j putnamAndrew J Putnam,bruce j trombergBruce J Tromberg,steven c georgeSteven C George,

    Multiphoton microscopy of collagen hydrogels produces second harmonic generation (SHG) and two-photon fluorescence (TPF) images, which can be used to noninvasively study gel microstructure at depth ( approximately 1 mm). The microstructure is also a primary determinate of the mechanical properties of the gel; thus, we hypothesized that bulk optical properties (i.e., SHG and TPF) could be used to predict bulk mechanical properties of collagen hydrogels. We utilized polymerization temperature (4-37 degrees C) and glutaraldehyde to manipulate collagen hydrogel fiber diameter, space-filling properties, and cross-link density. Multiphoton microscopy and scanning electron microscopy reveal that as polymerization temperature decreases (37-4 degrees C) fiber diameter and pore size increase, whereas hydrogel storage modulus (G', from 23 +/- 3 Pa to 0.28 +/- 0.16 Pa, respectively, mean +/- SE) and mean SHG decrease (minimal change in TPF). In contrast, glutaraldehyde significantly increases the mean TPF signal (without impacting the SHG signal) and the storage modulus (16 +/- 3.5 Pa before to 138 +/- 40 Pa after cross-linking, mean +/- SD). We conclude that SHG and TPF can characterize differential microscopic features of the collagen hydrogel that are strongly correlated with bulk mechanical properties. Thus, optical imaging may be a useful noninvasive tool to assess tissue mechanics.

    Noninvasive assessment of collagen gel microstructure and mechanics using multiphoton microscopy. Publishing Authors By Initials

    cb raubCB Raub,v sureshV Suresh,t krasievaT Krasieva,j lyubovitskyJ Lyubovitsky,jd mihJD Mih,aj putnamAJ Putnam,bj trombergBJ Tromberg,sc georgeSC George,

    For similar biomechanics: stress, mechanical research abstracts see: biomechanics: stress, mechanical research

    PUBMED ID PMID:

    MEDLINE DATE:

    Noninvasive assessment of collagen gel microstructure and mechanics using multiphoton microscopy. Journal Published:

    PUBLICATION TYPE: Research Support, U.S. Gov't,

    Journal: Biophysical journal

    VOLUME: 92

    Page Numbers: 2212-22

    Journal Abbreviation: Biophys. J.

    ISSN: 0006-3495

    DAY: 15

    MONTH: 12

    YEAR: 2006

    Noninvasive assessment of collagen gel microstructure and mechanics using multiphoton microscopy. Information

    Number of References:

    LANGUAGE: eng

    NlmUniqueID: 370626

    Noninvasive assessment of collagen gel microstructure and mechanics using multiphoton microscopy. Keywords Mesh Terms:

    KEYWORDS: Stress, Mechanical

    MESH TERMS: methods

    Chemical & Substance for Abstract: Noninvasive assessment of collagen gel microstructure and mechanics using multiphoton microscopy. Information

    Substance Name: Collagen Type I

    Registry Number: 0

    Grant and Affiliation Information for Noninvasive assessment of collagen gel microstructure and mechanics using multiphoton microscopy.

    AFFILIATION: Department of Biomedical Engineering, University of California Irvine, Irvine, California 92697-2715, USA.

    Country: United States

    United States Research PublicationUnited States Research Publication

    AGENCY: United States NCRR

    GRANT: P41RR01192

    ACRONYM: RR

    MEDLINETA: Biophys J

    REFSOURCE:

    DATABASENAME:

    ACCESSION NUMBER:

    Number Hits: 0

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