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Biomedical subjects

D Hönig

Publications and source records attributed to D Hönig.

5 recordsLinked to original sources

How the most common preservative affects the Meibomian lipid layer.

PURPOSE Effects of preservatives like benzalkonium chloride on the tear film are often hypothetized. With regard to the Meibomian lipid layer only few data are available. In order to receive precise information about the effect of benzalkonium chloride on the Meibomian lipid layer we performed in vitro experiments using a direct optical control of the films. METHODS Meibomian gland secretion was spread on a water subphase containing benzalkonium chloride in concentrations of 0.001%, 0.005%, 0.01%, 0.05%, and 0.1%, respectively. This aqueous subphase was chosen in analogy to the aqueous tear film layer. In our experimental assay, the pH was 5.5, the temperature was 20 degrees C. The spreading process and the quality of the films were controlled by the Brewster Angle Microscope. RESULTS Benzalkonium chloride was well tolerated up to concentrations of 0.005%. Concentrations > 0.005% affected the spreading process forming domains, and instable films. CONCLUSIONS. Thus it could be demonstrated that there is a critical concentration of benzalkonium chloride which destroys the spreading and alters the morphology of the Meibomian lipid layer. These results were confirmed by a modified method injecting benzalkonium chloride in the subphase after spreading the Meibomian lipid layer. Therefore eye drops with benzalkonium chloride in concentrations above 0.005% should be abandoned in clinical therapy.

Journal Article↗

[Morphology of the Meibomian lipid film. Results of Brewster angle microscopy].

Meibomian lipid layers were studied in the anterior mirror area by reflecting microscopy and interference microscopy. Using these techniques, it was not possible to correlate the biophysical and morphological data. Brewster angle microscopy provides direct observation of the spread Meibomian lipid layer with simultaneous registration of the surface pressure. It is based on the fact that He-Ne laser light, which is incident at a water surface under the Brewster angle, does not reflect visible light. After spreading of a lipid film, the angle of the incident light beam varies, causing reflection of light. The Meibomian lipid layer was studied in a Langmuir-type trough. At 5.0 mN/m the lipid layers are homogeneous and mobile, consisting of areas of higher and lower reflectivity. In patients with meibomitis the films are inhomogeneous and immobile. The thickness of the areas of lower reflectivity is 2 nm, the high reflectivity lipids are 8-10 nm thick. According to these results, Meibomian gland secretion can form monolayers under in vitro conditions.

Blepharitis↗

[Notes about cutis verticis gyrata (author's transl)].

A case of so-called, "Pseudo"-Cutis verticis gyrata naevocellularis is described. The possible malignant degeneration of this disease, which can also be described as "cerebriform intradermal nevus" is discussed. In this context, a classification of the "Cutis verticis gyrata" is suggested.

Adult↗

Brewster angle microscopy. A new method of visualizing the spreading of Meibomian lipids.

The spreading behaviour of the Meibomian lipids is important for the integrity of the whole tear film. This paper presents the application of Brewster Angle Microscopy (BAM) for the observation of the spreading process in vitro. Meibomian gland secretions were studied in a Langmuir trough. The secretion was characterized by an extremely rapid continuous spreading, suggesting that enough material would be available to recover the superficial lipid layer of the tears between the blinks of the eye. This new technique provides important information on how the normal tear film works and how tear substitutes might act.

Humans↗