Abstract:
A bioactive borate glass composition including, for example: 30 to 60% B 2 O 3 ; 0.5 to 20% ZrO 2 ; 3 to 30% Na 2 O; 0.1 to 15% K 2 O; 0.1 to 15% MgO; 5 to 30% CaO; and 1 to 5% P 2 O 5 in mole percents based on 100 mol% of the total composition. Also disclosed is a method of making and method of using the compositions and the bioactive borate glass dentin treatment formulations.
Abstract:
A transparent cover glass for applications such as, but not limited to, touch screen devices that embody antimicrobial properties that include s being antibacterial, antifungal, and antiviral. The antimicrobial glasses contain nanoparticles of Cu or Cu 2 0 on the surface of the glass. The antimicrobial glasses can further have a fluorosilane coating or other coating on the surface to make the glasses easy-to -clean. Also, glass surfaces having an antibacterial or antimicrobial surfaces and a protective coating on the surface that do not inhibit the antibacterial or antimicrobial properties of the glass are described. The disclosure is further directed to methods of making such articles.
Abstract:
This invention relates three dimensional porous cell culture matrices or scaffolds. More particularly, this invention relates to three dimensional porous cell culture matrices or scaffolds for cell culture which are derived from or contain gums including naturally occurring gums, plant gums, galactomannan gums or derivatives thereof. The invention also relates to articles of manufacture (e.g., cell culture vessels and labware) having such matrices or scaffolds, methods of applying these materials to cell culture surfaces, and methods of using cell culture vessels having these three dimensional porous cell culture matrices or scaffolds.
Abstract:
A flow cell article including: a chamber; and at least one surface of the chamber comprising: a solid substrate having a reactive surface comprising: a coupling agent covalently attached to the solid substrate; a polymer covalently attached to the coupling agent; and a nucleic acid probe covalently attached to the polymer. Also disclosed is a method of making the article and a method of using the article.
Abstract:
Described herein are coated glass or glass-ceramic articles having improved antimicrobial efficacy. Further described are methods of making and using the improved articles. The coated articles generally include a glass or glass-ceramic substrate and an antimicrobial coating disposed thereon. The antimicrobial coating is not a free-standing adhesive film, but a coating that is formed on or over at least a portion of a surface of the glass or glass-ceramic substrate.
Abstract:
This invention relates to coatings for cell culture surfaces. More particularly, this invention relates to coatings for cell culture surfaces which are derived from or contain gums including naturally occurring gums, plant gums, galactomannan gums or derivatives thereof. The invention also relates to articles of manufacture (e.g., cell culture vessels and labware) having such coatings, methods of applying these coatings to cell culture surfaces, and methods of using coated cell culture vessel.
Abstract:
An article and method of manufacturing an article is provided. The article includes a glass, glass-ceramic, or ceramic substrate having a primary surface with an anti-reflective coating disposed over the primary surface. An intermediate coating containing a cured polysilazane or a cured silsesquioxane material is disposed over the anti-reflective coating. An easy-to-clean (ETC) coating containing a polymer and/or fluorinated material is disposed directly on the intermediate coating. The method of manufacturing the article includes curing an intermediate coating solution containing a polysilazane or a silsesquioxane to form an intermediate coating at a temperature of about 300 °C or less.
Abstract:
An air filter article, including: a wall-flow honeycomb particulate filter; and at least one anti-microbial agent on at least a portion of the interior surfaces. The disclosure also provides a filtration system that incorporates or uses the air filter article, and methods for making the air filter article.
Abstract:
The application discloses the formation of antimicrobial glass ceramic articles having an amorphous phase and a crystalline phase and an antimicrobial agent selected from the group consisting of silver, copper and a mixture of silver and copper. The antimicrobial glass ceramic can have a Log Reduction of >2.
Abstract:
The disclosure is directed to a chemically strengthened glass having antimicrobial properties and to a method of making such glass. In particular, the disclosure is directed to a chemically strengthened glass with antimicrobial properties and with a low surface energy coating on the glass that does not interfere with the antimicrobial properties of the glass. The antimicrobial has an Ag ion concentration on the surface in the range of greater than zero to 0.047 µg/cm2. The glass has particular applications as antimicrobial shelving, table tops and other applications in hospitals, laboratories and other institutions handling biological substances, where color in the glass is not a consideration.
Abstract translation:本公开涉及具有抗微生物性质的化学强化玻璃和制造这种玻璃的方法。 特别地,本公开涉及具有抗微生物性质的化学强化玻璃,并且在玻璃上具有不影响玻璃的抗微生物性能的低表面能涂层。 抗微生物剂在表面上具有大于0至0.047μg/ cm 2的范围内的Ag离子浓度。 该玻璃在医院,实验室和其他处理生物物质的机构中具有抗菌架,桌面和其他应用的特殊应用,其中不考虑玻璃中的颜色。