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1.
Analyst ; 139(20): 5069-74, 2014 Oct 21.
Article in English | MEDLINE | ID: mdl-25136703

ABSTRACT

In this study, we present confocal Raman microscopy for chemically selective analysis of a human buccal epithelial cell layer with a focus on label-free visualization of particle uptake into the cells. We demonstrate the suitability and benefit of this analytical technique in comparison to confocal fluorescence microscopy for three dimensional imaging of in vitro cell models.


Subject(s)
Epithelial Cells/chemistry , Microscopy, Confocal , Spectrum Analysis, Raman , Cell Body/chemistry , Cell Body/metabolism , Cell Nucleus/chemistry , Cell Nucleus/metabolism , Epithelial Cells/cytology , Epithelial Cells/metabolism , Humans , Mouth Mucosa/cytology , Titanium/chemistry
2.
J Control Release ; 172(3): 872-8, 2013 Dec 28.
Article in English | MEDLINE | ID: mdl-24140721

ABSTRACT

The aim of the present study was the in vivo evaluation of thiomer-coated liposomes for an oral application of peptides. For this purpose, salmon calcitonin was chosen as a model drug and encapsulated within liposomes. Subsequently, the drug loaded liposomes were coated with either chitosan-thioglycolic acid (CS-TGA) or an S-protected version of the same polymer (CS-TGA-MNA), leading to an increase in the particle size of about 500 nm and an increase in the zeta potential from approximately -40 mV to a maximum value of about +44 mV, depending on the polymer. Coated liposomes were demonstrated to effectively penetrate the intestinal mucus layer where they came in close contact with the underlying epithelium. To investigate the permeation enhancing properties of the coated liposomes ex vivo, we monitored the transport of fluoresceinisothiocyanate-labeled salmon calcitonin (FITC-sCT) through rat small intestine. Liposomes coated with CS-TGA-MNA showed the highest effect, leading to a 3.8-fold increase in the uptake of FITC-sCT versus the buffer control. In vivo evaluation of the different formulations was carried out by the oral application of 40 µg of sCT per rat, either encapsulated within uncoated liposomes, CS-TGA-coated liposomes or CS-TGA-MNA-coated liposomes, or given as a solution serving as negative control. The blood calcium level was monitored over a time period of 24h. The highest reduction in the blood calcium level, to a minimum of 65% of the initial value after 6h, was achieved for CS-TGA-MNA-coated liposomes. Comparing the areas above curves (AAC) of the blood calcium levels, CS-TGA-MNA-coated liposomes led to an 8.2-fold increase compared to the free sCT solution if applied orally in the same concentration. According to these results, liposomes coated with S-protected thiomers have demonstrated to be highly valuable carriers for enhancing the oral bioavailability of salmon calcitonin.


Subject(s)
Calcitonin/administration & dosage , Chitosan/analogs & derivatives , Liposomes/chemistry , Sulfhydryl Compounds/chemistry , Administration, Oral , Animals , Calcitonin/pharmacokinetics , Intestine, Small/metabolism , Male , Rats , Rats, Sprague-Dawley
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