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2016 | Hauterkrankungen in der Hausarztpraxis | OriginalPaper | Buchkapitel

8. Raman-Spektroskopie in der Dermatologie

verfasst von : Jürgen Lademann, Prof. Dr. med., Martina C. Meinke, PD Dr. rer. nat., Alexa Patzelt, Dr. med., Maxim E. Darvin, Dr. rer. med.

Erschienen in: Nichtinvasive physikalische Diagnostik in der Dermatologie

Verlag: Springer Berlin Heidelberg

Zusammenfassung

Die Dermatologie ist ein geeignetes Fachgebiet, um optische und spektroskopische Untersuchungen zur Analyse der Haut, aber auch zur Penetration topisch applizierter Substanzen durchzuführen. Der Penetration topisch applizierter Substanzen in Form von Arzneimitteln und Pflegeprodukten kommt hierbei eine besondere Bedeutung zu. Während laserscanmikroskopische Untersuchungen hauptsächlich dazu dienen, die zelluläre Struktur abzubilden, wird mit Hilfe der Raman-Spektroskopie die inelastische Streuung von Licht an Molekülen oder Festkörpern erfasst. Damit ermöglicht die Raman-Spektroskopie den Nachweis von Stoffen in und auf der Haut. Hierbei wird Laserlicht in die Haut eingestrahlt. Neben der eingestrahlten Frequenz werden noch weitere Frequenzen beobachtet, deren Unterschiede zur Frequenz des eingestrahlten Lichts Informationen über die Rotationsschwingungs- und Photonen- oder Spin-Flip-Prozesse liefern. Mit den erhaltenen Spektren können Substanzen selektiv nachgewiesen werden.
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Zurück zum Zitat Schroeder P, Lademann J, Darvin ME, Stege H, Marks C, Bruhnke S, Krutmann J (2008) Infrared radiation-induced matrix metalloproteinase in human skin: implications for protection. J Invest Dermatol 128(10):2491–2497CrossRefPubMed Schroeder P, Lademann J, Darvin ME, Stege H, Marks C, Bruhnke S, Krutmann J (2008) Infrared radiation-induced matrix metalloproteinase in human skin: implications for protection. J Invest Dermatol 128(10):2491–2497CrossRefPubMed
Zurück zum Zitat Shah PP, Desai PR, Channer D, Singh M (2012) Enhanced skin permeation using polyarginine modified nanostructured lipid carriers. J Control Release 161(3):735–745PubMedCentralCrossRefPubMed Shah PP, Desai PR, Channer D, Singh M (2012) Enhanced skin permeation using polyarginine modified nanostructured lipid carriers. J Control Release 161(3):735–745PubMedCentralCrossRefPubMed
Zurück zum Zitat Shim MG, Wilson BC, Marple E, Wach M (1999) Study of fiber-optic probes for in vivo medical Raman spectroscopy. Appl Spectrosc 53(6):619–627CrossRef Shim MG, Wilson BC, Marple E, Wach M (1999) Study of fiber-optic probes for in vivo medical Raman spectroscopy. Appl Spectrosc 53(6):619–627CrossRef
Zurück zum Zitat Wang WZJ, Short M, Zeng H (2015) Real-time in vivo cancer diagnosis using raman spectroscopy. J Biophotonics 8:527–545CrossRefPubMed Wang WZJ, Short M, Zeng H (2015) Real-time in vivo cancer diagnosis using raman spectroscopy. J Biophotonics 8:527–545CrossRefPubMed
Zurück zum Zitat Weigmann HJ, Jacobi U, Antoniou C, Tsikrikas GN, Wendel V, Rapp C, Gers-Barlag H, Sterry W, Lademann J (2005) Determination of penetration profiles of topically applied substances by means of tape stripping and optical spectroscopy: UV filter substance in sunscreens. J Biomed Opt 10(1):14009CrossRefPubMed Weigmann HJ, Jacobi U, Antoniou C, Tsikrikas GN, Wendel V, Rapp C, Gers-Barlag H, Sterry W, Lademann J (2005) Determination of penetration profiles of topically applied substances by means of tape stripping and optical spectroscopy: UV filter substance in sunscreens. J Biomed Opt 10(1):14009CrossRefPubMed
Zurück zum Zitat Zastrow L, Doucet O, Ferrero L, Groth N, Klein F, Kockott D, Lademann J (2015) Free radical threshold value – a new universal body constant. Skin Pharmacol Physiol 28:264–268CrossRefPubMed Zastrow L, Doucet O, Ferrero L, Groth N, Klein F, Kockott D, Lademann J (2015) Free radical threshold value – a new universal body constant. Skin Pharmacol Physiol 28:264–268CrossRefPubMed
Zurück zum Zitat Zastrow L, Groth N, Klein F, Kockott D, Lademann J, Renneberg R, Ferrero L (2009) The missing link – light-induced (280-1,600 nm) free radical formation in human skin. Skin Pharmacol Physiol 22(1):31–44CrossRefPubMed Zastrow L, Groth N, Klein F, Kockott D, Lademann J, Renneberg R, Ferrero L (2009) The missing link – light-induced (280-1,600 nm) free radical formation in human skin. Skin Pharmacol Physiol 22(1):31–44CrossRefPubMed
Zurück zum Zitat Zhu Y, Choe CS, Ahlberg S, Meinke MC, Alexiev U, Lademann J, Darvin ME (2015) Penetration of silver nanoparticles into porcine skin ex vivo using fluorescence lifetime imagingmicroscopy, Raman microscopy, and surface-enhanced Raman scattering microscopy. J Biomed Optics 20(5):051006CrossRef Zhu Y, Choe CS, Ahlberg S, Meinke MC, Alexiev U, Lademann J, Darvin ME (2015) Penetration of silver nanoparticles into porcine skin ex vivo using fluorescence lifetime imagingmicroscopy, Raman microscopy, and surface-enhanced Raman scattering microscopy. J Biomed Optics 20(5):051006CrossRef
Metadaten
Titel
Raman-Spektroskopie in der Dermatologie
verfasst von
Jürgen Lademann, Prof. Dr. med.
Martina C. Meinke, PD Dr. rer. nat.
Alexa Patzelt, Dr. med.
Maxim E. Darvin, Dr. rer. med.
Copyright-Jahr
2016
Verlag
Springer Berlin Heidelberg
DOI
https://doi.org/10.1007/978-3-662-46389-5_8

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