Antimicrobial articles of manufacture
Compositions having antimicrobial activity contain surface functionalized particles comprising an inorganic copper salt which has low water solubility. These types of inorganic salts may also be introduced in porous particles to yield antimicrobial compositions. The compositions may optionally comprise additional antimicrobial agents, salts with high water solubility, organic acids, salts of organic acids and their esters. The compositions may be added to various fluids used in the petroleum extraction industry, or used as coatings on components used in this industry. These antimicrobial materials may be used for reducing both anaerobic and aerobic bacteria and are also useful for reducing corrosion of ferrous components caused by anaerobic bacteria. Although such compositions may be used for any antimicrobial application, and some of the other important uses of these compositions are in wound care, personal care and waste processing.
CPC - классификация
AA0A01A01NA01N2A01N25A01N25/A01N25/1A01N25/10A01N25/12A01N25/2A01N25/22A01N25/26A01N5A01N59A01N59/A01N59/1A01N59/12A01N59/16A01N59/2A01N59/20A6A61A61KA61K2A61K23A61K230A61K2300A61K2300/A61K2300/0A61K2300/00A61K28A61K280A61K2800A61K2800/A61K2800/4A61K2800/41A61K2800/412A61K3A61K33A61K33/A61K33/1A61K33/18A61K33/3A61K33/34A61K4A61K47A61K47/A61K47/3A61K47/32A61K6A61K6/A61K6/0A61K6/00A61K6/001A61K6/0017A61K6/002A61K6/0023A61K6/003A61K6/0038A61K8A61K8/A61K8/0A61K8/02A61K8/027A61K8/0279A61K8/1A61K8/19A61K8/2A61K8/20A61K8/25A61K9A61K9/A61K9/0A61K9/00A61K9/001A61K9/0014A61K9/06A61K9/08A61LA61L1A61L15A61L15/A61L15/1A61L15/18A61L15/4A61L15/46A61L2A61L23A61L230A61L2300A61L2300/A61L2300/1A61L2300/10A61L2300/102A61L2300/106A61L2300/4A61L2300/40A61L2300/404A61L24A61L240A61L2400A61L2400/A61L2400/1A61L2400/12A61QA61Q1A61Q17A61Q17/A61Q17/0A61Q17/00A61Q17/005A61Q3A61Q3/A61Q3/0A61Q3/02CC0C08C08KC08K3C08K3/C08K3/1C08K3/16C08LC08L3C08L33C08L33/C08L33/0C08L33/02C08L33/08C08L33/1C08L33/10C08L33/12C09C09DC09D5C09D5/C09D5/1C09D5/14C09D5/16C09D5/161C09D5/1618C09KC09K8C09K8/C09K8/5C09K8/52C09K8/524C09K8/54YY0Y02Y02AY02A5Y02A50Y02A50/Y02A50/3Y02A50/30IPC - классификация
AA0A01A01NA01N2A01N25A01N25/A01N25/1A01N25/10A01N25/12A01N25/2A01N25/22A01N25/26A01N5A01N59A01N59/A01N59/1A01N59/16A01N59/2A01N59/20A6A61A61KA61K3A61K33A61K33/A61K33/1A61K33/18A61K33/3A61K33/34A61K4A61K47A61K47/A61K47/3A61K47/32A61K8A61K8/A61K8/0A61K8/02A61K8/1A61K8/19A61K8/2A61K8/20A61K8/25A61K9A61K9/A61K9/0A61K9/00A61K9/06A61K9/08A61LA61L1A61L15A61L15/A61L15/1A61L15/18A61L15/2A61L15/28A61L15/4A61L15/46A61QA61Q1A61Q17A61Q17/A61Q17/0A61Q17/00A61Q3A61Q3/A61Q3/0A61Q3/02CC0C08C08KC08K3C08K3/C08K3/1C08K3/16C09C09DC09D5C09D5/C09D5/1C09D5/14C09D5/16C09KC09K8C09K8/C09K8/5C09K8/52C09K8/524C09K8/54Цитирование НПИ
Compositions and Methods for antimicrobial metal Nanoparticles, Anoop Agrawal, Murat Akarsu, John P. Cronin and Donald R. Uhlmann, filed Jun. 15, 2012, U.S. Appl. No. 13/525,115.Compositions and Methods for antimicrobial metal Nanoparticles, Anoop Agrawal, Murat Akarsu, John P. Cronin and Donald R. Uhlmann, filed Jun. 15, 2012, U.S. Appl. No. 13/525,121.
Compositions and Methods for antimicrobial metal Nanoparticles, Donald R. Uhlmann, Anoop Agrawal, Murat Akarsu, John P. Cronin, Juan Carlos Lopez Tonazzi, Ryan J. Reeser, filed May 24, 2012, U.S. Appl. No. 13/480,367.
Compositions and Methods for antimicrobial metal Nanoparticles, John P. Cronin, Anoop Agrawal and Donald R. Uhlmann, filed Jun. 15, 2012, U.S. Appl. No. 13/525,127.
Compositions and Methods for antimicrobial metal Nanoparticles, Juan Carlos Lopez Tonazzi, Donald R. Uhlmann and Anoop Agrawal, filed Jun. 20, 2012, U.S. Appl. No. 13/527,809.
Compositions and Methods for antimicrobial metal Nanoparticles, Murat Akarsu, John P. Cronin, Anoop Agrawal and Donald R. Uhlmann, filed Jun. 14, 2012, U.S. Appl. No. 13/523,811.
Compositions and Methods for antimicrobial metal Nanoparticles, Nicholas Krasnow, Lori Adams, John P. Cronin, Anoop Agrawal and Donald R. Uhlmann, filed Nov. 26, 2012, U.S. Appl. No. 13/685,379.
Cooper, 2007, Iodine revisited.International wound Journal, (2007) vol. 4(2), p. 124-137.
Dow Corning, “Silicone Resins and Intermediates Selection Guide,” Paints & Sink Solutions, © 2016, pp. 1-12.
Fujimori et al , 2011 Appl. Environ.Novel antiviral characteristics of nanosized copper (1) iodide particles showing inactivation activity against 2009 pandemic H1N1 influenza virus. Microbiol. 2012. 78(4). p. 951-955.
Kauffmann, 1983, Inorganic Synthesis, vol. 22, (2007) Chapter Transition metal complexesand compounds section 20: purification of Copper (1) iodide, p. 101-103.
Kumar et al, Mar. 2, 2008, Salt Selection in Drug Development, Pharmaceutical Technology, vol. 3, Issue 32 URL: http://www.pharmtech.com/salt-selection-drug-development.
Merck 2012 Merck Veterinary Manual, Chapter on Antifungal agents, Iodides section URL: http://www.merckvetmanual.com/mvm/pharmacology/antifungal_agents/iodides.html.
Neouze et al, 2008, Surface modification and functionalization of metal and metal oxide nano particles by organic ligands. Monatsch Chem (2008)vol. 139, p. 183-185.
Pramanik et al 2012. A novel study of antibacterial activity of copper iodide nanoparticles mediated by DNA membrane damage. Colloids and Surfaces B: Biointerfaces, (2012) vol. 96 (1) p. 50-55.
Ren et al 2007, characterization of copper oxide nano particles for antimicrobid application. International Journal of Antimicrobial Agents, vol. 33 (2009) p. 587-590.