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1.
Sci Rep ; 7(1): 11100, 2017 09 11.
Article in English | MEDLINE | ID: mdl-28894194

ABSTRACT

Gingival re-epithelialization represents an essential phase of oral wound healing in which epithelial integrity is re-establish. We developed an automated high-throughput re-epithelialization kinetic model, using the gingival epithelial cell line Ca9-22. The model was employed to screen 39 lactic acid bacteria, predominantly including oral isolates, for their capacity to accelerate gingival re-epithelialization. This screen identified several strains of Streptococcus salivarius that stimulated re-epithelialization. Further analysis revealed that S. salivarius strain MS-oral-D6 significantly promoted re-epithelialization through a secreted proteinaceous compound and subsequent experiments identified a secreted serine protease as the most likely candidate to be involved in re-epithelialization stimulation. The identification of bacteria or their products that stimulate gingival wound repair may inspire novel strategies for the maintenance of oral health.


Subject(s)
Gingiva/microbiology , Gingiva/physiology , Re-Epithelialization , Serine Proteases/biosynthesis , Streptococcus salivarius/physiology , Wound Healing , Cytokines/biosynthesis , Humans , Inflammation Mediators/metabolism , Models, Biological , Mouth/microbiology
2.
Sensors (Basel) ; 12(12): 17358-71, 2012 Dec 13.
Article in English | MEDLINE | ID: mdl-23443402

ABSTRACT

In this paper, a laboratory goniometer system for performing multi-angular measurements under controlled illumination conditions is described. A commercially available robotic arm enables the acquisition of a large number of measurements over the full hemisphere within a short time span making it much faster than other goniometers. In addition, the presented set-up enables assessment of anisotropic reflectance and emittance behaviour of soils, leaves and small canopies. Mounting a spectrometer enables acquisition of either hemispherical measurements or measurements in the horizontal plane. Mounting a thermal camera allows directional observations of the thermal emittance. This paper also presents three showcases of these different measurement set-ups in order to illustrate its possibilities. Finally, suggestions for applying this instrument and for future research directions are given, including linking the measured reflectance anisotropy with physically-based anisotropy models on the one hand and combining them with field goniometry measurements for joint analysis with remote sensing data on the other hand. The speed and flexibility of the system offer a large added value to the existing pool of laboratory goniometers.


Subject(s)
Anisotropy , Earth, Planet , Robotics , Climatic Processes , Humans
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