Literature DB >> 12683843

Effects of treatment protocols and subcutaneous implantation on bovine pericardium: a Raman spectroscopy study.

Catherine P Tarnowski1, Shona Stewart, Kelli Holder, Lori Campbell-Clark, R J Thoma, Alan K Adams, Mark A Moore.   

Abstract

Using Raman microspectroscopy, we have studied mineral deposition on bovine pericardia, fixed according to three different protocols and either implanted subcutaneously or not implanted (controls). A lightly carbonated apatitic phosphate mineral, similar to that found in bone tissue, was deposited on the surface of a glutaraldehyde-fixed, implanted pericardium. Implanted pericardia fixed in glutaraldehyde followed by treatment in either an 80% ethanol or a 5% octanol/40% ethanol solution did not mineralize on implantation. Collagen secondary structure changes were observed on glutaraldehyde fixation by monitoring the center of gravity of the amide I envelope. It is proposed that the decrease in the amide I center of gravity frequency for the glutaraldehyde-fixed tissue compared to the nonfixed tissue is due to an increase in nonreducible collagen cross-links (1660 cm(-1)) and a decrease in reducible cross-links (1690 cm(-1)). The amide I center of gravity in the glutaraldehyde/ethanol-fixed pericardium was higher than the glutaraldehyde-fixed tissue center of gravity. This increase in center of gravity could possibly be due to a decrease in hydrogen bonding within the collagen fibrils following the ethanol pretreatment. In addition, we found a secondary structure change to the pericardial collagen after implantation: an increase in the frequency of the center of gravity of amide I is indicative of an increase in cross-links.

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Year:  2003        PMID: 12683843     DOI: 10.1117/1.1559729

Source DB:  PubMed          Journal:  J Biomed Opt        ISSN: 1083-3668            Impact factor:   3.170


  5 in total

1.  FLIm-Guided Raman Imaging to Study Cross-Linking and Calcification of Bovine Pericardium.

Authors:  Tanveer Ahmed Shaik; Alba Alfonso-García; Xiangnan Zhou; Katherine M Arnold; Anne K Haudenschild; Christoph Krafft; Leigh G Griffiths; Jürgen Popp; Laura Marcu
Journal:  Anal Chem       Date:  2020-07-14       Impact factor: 6.986

2.  Spectrally resolved multiphoton imaging of in vivo and excised mouse skin tissues.

Authors:  Jonathan A Palero; Henriëtte S de Bruijn; Angélique van der Ploeg van den Heuvel; Henricus J C M Sterenborg; Hans C Gerritsen
Journal:  Biophys J       Date:  2007-04-20       Impact factor: 4.033

3.  In vivo molecular evaluation of guinea pig skin incisions healing after surgical suture and laser tissue welding using Raman spectroscopy.

Authors:  A Alimova; R Chakraverty; R Muthukattil; S Elder; A Katz; V Sriramoju; Stanley Lipper; R R Alfano
Journal:  J Photochem Photobiol B       Date:  2009-06-14       Impact factor: 6.252

4.  Temperature Distribution of Vessel Tissue by High Frequency Electric Welding with Combination Optical Measure and Simulation.

Authors:  Hao Wang; Xingjian Yang; Naerzhuoli Madeniyeti; Jian Qiu; Caihui Zhu; Li Yin; Kefu Liu
Journal:  Biosensors (Basel)       Date:  2022-03-31

Review 5.  Synchrotron Imaging Assessment of Bone Quality.

Authors:  Shaocheng Ma; Oliver Boughton; Angelo Karunaratne; Andi Jin; Justin Cobb; Ulrich Hansen; Richard Abel
Journal:  Clin Rev Bone Miner Metab       Date:  2016-09-07
  5 in total

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