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Analysis of supramolecular melanin-material interactions for fundamental biology & applied biotechnological applications

Research output: Contribution to conference - Without ISBN/ISSN Posterpeer-review

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Analysis of supramolecular melanin-material interactions for fundamental biology & applied biotechnological applications. / Galeb, Hanaa; Taylor, Adam; Hardy, John.
2022. Poster session presented at Recent Appointees in Materials Science 2022, Bradford, United Kingdom.

Research output: Contribution to conference - Without ISBN/ISSN Posterpeer-review

Harvard

Galeb, H, Taylor, A & Hardy, J 2022, 'Analysis of supramolecular melanin-material interactions for fundamental biology & applied biotechnological applications', Recent Appointees in Materials Science 2022, Bradford, United Kingdom, 5/09/22 - 6/09/22.

APA

Galeb, H., Taylor, A., & Hardy, J. (2022). Analysis of supramolecular melanin-material interactions for fundamental biology & applied biotechnological applications. Poster session presented at Recent Appointees in Materials Science 2022, Bradford, United Kingdom.

Vancouver

Galeb H, Taylor A, Hardy J. Analysis of supramolecular melanin-material interactions for fundamental biology & applied biotechnological applications. 2022. Poster session presented at Recent Appointees in Materials Science 2022, Bradford, United Kingdom.

Author

Galeb, Hanaa ; Taylor, Adam ; Hardy, John. / Analysis of supramolecular melanin-material interactions for fundamental biology & applied biotechnological applications. Poster session presented at Recent Appointees in Materials Science 2022, Bradford, United Kingdom.

Bibtex

@conference{e08a23a2f5d141d58ea7231e1ba30b0f,
title = "Analysis of supramolecular melanin-material interactions for fundamental biology & applied biotechnological applications",
abstract = "Alkaptonuria is a medical condition where patients have elevated levels of homogentisic acid (HGA) and its derivatives in their bodies which leads to the deposition of pyomelanin nanoparticle pigmentation in specific bodily tissues. The focus of this study is supramolecular melanin-material interactions, and in this study we report the analysis of polymerised HGA (polyHGA) nanoparticles formed under various conditions in vitro and ex vivo, with a view to understanding their biomedical relevance. A variety of spectroscopic and microscopic techniques were employed to analyse pyomelanin nanoparticle formation in vitro, 1) in the absence/presence of different enzymes, 2) in the absence/presence of extracellular matrix components, 3) in the absence/presence of cells, and 4) in vivo using a turkey tendon model. Analytical techniques employed to study these materials include: UV-Vis, FTIR, SEM-EDX, NMR, EPR, zeta potential measurements, XPS/XRD; and the electrochemical properties of these materials were assessed via CV, cAFM and SECM. The data offers insight into the pigment formation and its relevance to deposition in vivo, which offers molecular level understanding of potential clinical relevance; moreover, such insights may also be used in the design and development of novel materials for electronics and other biotechnological applications.",
author = "Hanaa Galeb and Adam Taylor and John Hardy",
year = "2022",
month = sep,
day = "5",
language = "English",
note = "Recent Appointees in Materials Science 2022, RAMS2022 ; Conference date: 05-09-2022 Through 06-09-2022",
url = "https://ramsukcom.wordpress.com/",

}

RIS

TY - CONF

T1 - Analysis of supramolecular melanin-material interactions for fundamental biology & applied biotechnological applications

AU - Galeb, Hanaa

AU - Taylor, Adam

AU - Hardy, John

PY - 2022/9/5

Y1 - 2022/9/5

N2 - Alkaptonuria is a medical condition where patients have elevated levels of homogentisic acid (HGA) and its derivatives in their bodies which leads to the deposition of pyomelanin nanoparticle pigmentation in specific bodily tissues. The focus of this study is supramolecular melanin-material interactions, and in this study we report the analysis of polymerised HGA (polyHGA) nanoparticles formed under various conditions in vitro and ex vivo, with a view to understanding their biomedical relevance. A variety of spectroscopic and microscopic techniques were employed to analyse pyomelanin nanoparticle formation in vitro, 1) in the absence/presence of different enzymes, 2) in the absence/presence of extracellular matrix components, 3) in the absence/presence of cells, and 4) in vivo using a turkey tendon model. Analytical techniques employed to study these materials include: UV-Vis, FTIR, SEM-EDX, NMR, EPR, zeta potential measurements, XPS/XRD; and the electrochemical properties of these materials were assessed via CV, cAFM and SECM. The data offers insight into the pigment formation and its relevance to deposition in vivo, which offers molecular level understanding of potential clinical relevance; moreover, such insights may also be used in the design and development of novel materials for electronics and other biotechnological applications.

AB - Alkaptonuria is a medical condition where patients have elevated levels of homogentisic acid (HGA) and its derivatives in their bodies which leads to the deposition of pyomelanin nanoparticle pigmentation in specific bodily tissues. The focus of this study is supramolecular melanin-material interactions, and in this study we report the analysis of polymerised HGA (polyHGA) nanoparticles formed under various conditions in vitro and ex vivo, with a view to understanding their biomedical relevance. A variety of spectroscopic and microscopic techniques were employed to analyse pyomelanin nanoparticle formation in vitro, 1) in the absence/presence of different enzymes, 2) in the absence/presence of extracellular matrix components, 3) in the absence/presence of cells, and 4) in vivo using a turkey tendon model. Analytical techniques employed to study these materials include: UV-Vis, FTIR, SEM-EDX, NMR, EPR, zeta potential measurements, XPS/XRD; and the electrochemical properties of these materials were assessed via CV, cAFM and SECM. The data offers insight into the pigment formation and its relevance to deposition in vivo, which offers molecular level understanding of potential clinical relevance; moreover, such insights may also be used in the design and development of novel materials for electronics and other biotechnological applications.

M3 - Poster

T2 - Recent Appointees in Materials Science 2022

Y2 - 5 September 2022 through 6 September 2022

ER -