- Conover NC, US Jordan Schindler - Tucson AZ, US Erik Scott Goebel - Vadnais Heights MN, US Nathan Jablonske - Hickory NC, US Sandy Wood - East Bend NC, US Michael Drzewinski - Long Valley NJ, US Justin Jed - Seattle WA, US
Methods for manufacturing drug delivery systems are provided. The drug delivery systems may include a substrate coated with at least one polymer and at least one active compound. The substrate may include yarns, yarn precursors, threads, filaments, fibers, and/or other suitable substrates. The methods may include disposing a solution including a monomer and an active compound on the substrate. The methods may also include exposing the solution and the substrate to UV light to initiate polymerization of the solution.
Disclosed herein are delivery systems including coated and uncoated yarns, yarn precursors, threads, fibers, and other substrates for the constant or near-constant release of active compounds, as well as methods for manufacturing such delivery systems. The yarns, yarn precursors, threads, fibers, and other substrates can include a cross-linked hydrophobic elastomer and an active compound. One or more coatings that are impermeable or substantially impermeable to the active compound may partially or fully occlude the yarn or substrate to control release rates of the active compound. The delivery systems may be used in a variety of applications, including the making of articles of clothing, textiles, and fabrics, and may be used in methods of treating various conditions and diseases.
Naphthoquinone Compounds And Methods For Preparing The Same
Disclosed herein are delivery systems including coated and uncoated yarns, yarn precursors, threads, fibers, and other substrates for the constant or near-constant release of active compounds, as well as methods for manufacturing such delivery systems. The yarns, yarn precursors, threads, fibers, and other substrates can include a cross-linked hydrophobic elastomer and an active compound. One or more coatings that are impermeable or substantially impermeable to the active compound may partially or fully occlude the yarn or substrate to control release rates of the active compound. The delivery systems may be used in a variety of applications, including the making of articles of clothing, textiles, and fabrics, and may be used in methods of treating various conditions and diseases.
Disclosed herein are delivery systems including coated and uncoated yarns, yarn precursors, threads, fibers, and other substrates for the constant or near-constant release of active compounds, as well as methods for manufacturing such delivery systems. The yarns, yarn precursors, threads, fibers, and other substrates can include a cross-linked hydrophobic elastomer and an active compound. One or more coatings that are impermeable or substantially impermeable to the active compound may partially or fully occlude the yarn or substrate to control release rates of the active compound. The delivery systems may be used in a variety of applications, including the making of articles of clothing, textiles, and fabrics, and may be used in methods of treating various conditions and diseases.
University of Minnesota since Sep 2007
Graduate Student
Diversey Inc Jun 2006 - Aug 2006
Intern
Diversey Inc Jun 2005 - Aug 2005
Intern
Education:
University of Minnesota-Twin Cities 2007 - 2013
Doctor of Philosophy (Ph.D.), Synthetic Organic Chemistry
University of Wisconsin-Madison 2003 - 2007
Bachelor of Science (BS), Chemistry
Skills:
Organic Chemistry Nmr Spectroscopy Organic Synthesis Microsoft Office Microsoft Excel Powerpoint Microsoft Word Teamwork Chemistry Research English Hplc Synthetic Organic Chemistry Natural Products Mass Spectrometry Nmr Chromatography Characterization Spectroscopy Ir Chemdraw
Sep 2007 to 2000 Graduate AssistantFloor Care Division
Jun 2005 to Aug 2005 Scientific InternSC Johnson
Jun 2004 to Aug 2004 Temporary Worker
Education:
University of Minnesota Minneapolis-Saint Paul, MN 2009 to 2014 PhD in Synthetic Organic ChemistryUniversity of Minnesota Minneapolis, MN 2007 to 2009 M.S. in ChemistryUniversity of Wisconsin - Madison Madison, WI 2003 to 2007 BS in Chemistry
Skills:
Synthetic organic chemist with experience in multi-step synthesis and methodology development capable of safe and independent work. Proficient in milligram to multi-gram production, identification and purification of organic compounds. Full range of analytical instrumentation in characterization of intermediates. Experienced with high pressure equipment, microwave synthesis, air-sensitive reactions, IR, GC, GC/MS, chiral HPLC, 1D &2D hetero- & homo-nuclear NMR. Creative problem solver with innovative solutions to challenges. Strong written and oral communication skills. Proven leadership ability including successful conflict resolution and negotiation.
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