专利号:US-10501782-B1 优先权日:2014-09-05 标题:Cell-free synthesis of DNA by strand displacement 发明人:PORTER NEIL; ROTHWELL PAUL; EXTANCE JONATHAN 权利人:TOUCHLIGHT IP LTD 摘要:The present invention relates to an improved process for synthesis of DNA, RNA, proteins and like molecules, in particular cell-free enzymatic synthesis of DNA, preferably in large scale. The present invention relates to the synthesis of DNA using strand-displacement replication and the addition of nucleotides to the reaction mixture is controlled, thus controlling yield. The reaction mixture contains a starting amount of nucleotides, polymerase and DNA template, to which further nucleotides are supplied in a controlled manner.
专利号:US-2003138880-A1 优先权日:2001-08-24 标 题:Solid-phase synthesis of oligosaccharides and glycopeptides using glycosynthases 发明人:WITHERS STEPHEN G; JENSEN KNUD J; PETERSEN LARS; TOLBORG JAKOB L 权利人:UNIV BRITISH COLUMBIA 摘要:The present invention provides materials and methods for the solid-phase synthesis of oligosaccharides and glycopeptides. Such materials and methods include mutant glycosidase enzymes, or “glycosynthases,â€? chemically-derivatized acceptor molecules, and specific solid support matrices.
专利号:US-2019323050-A1 优先权日:2016-12-21 标题 :Modulation of Enzymatic Polynucleotide Synthesis Using Chelated Divalent Cations 发明人:GRISWOLD JR KETTNER JOHN FREDERICK; LEE HOWON; CHURCH GEORGE M 权利人:HARVARD COLLEGE 摘要:Methods and apparatus of modulating polynucleotide synthesis are provided. The methods include delivering reagents comprising enzymes, nucleotides and ions to oligonucleotide primers wherein the reagents catalyze incorporation of the nucleotides to 3′ ends of the oligonucleotide primers, and modulating incorporation of the nucleotides to the 3′ ends of the oligonucleotide primers. Polynucleotide synthesis is modulated by modulating presence or absence of catalytic cation cofactors to provide sequence defined synthesis of polynucleotides. In certain embodiments, the polynucleotides encode information.
专利号:US-2025136636-A1 优先权日:2021-08-16 标 题:Nucleotide complexes capable of an improved dna synthesis yield 发明人:KYSH DANIEL; ROTHWELL PAUL 权利人:TOUCHLIGHT IP LTD 摘要:The present invention relates to novel nucleotide complexes which enhance the enzymatic production of DNA. The nucleotide complexes includes a divalent cation at a ratio of 0.2-1.5 divalent cations per nucleotide, whilst monovalent ions (other than hydrogen or hydronium ions from any solvent) are minimal. The nucleotide complexes have desirable properties for the synthesis of deoxyribonucleic acid (DNA), in particular cell-free enzymatic synthesis of DNA, preferably on a large or industrial scale. Further, the invention includes improved processes for preparing said nucleotide complexes. Further complexes are disclosed which possess unique properties in accelerating DNA synthesis at higher concentrations, these complexes also containing zwitterion molecules.
专利号:US-2023091493-A1 优先权日:2020-02-14 标 题:Dna synthesis yield improvements 发明人:ROTHWELL PAUL; KYSH DANIEL; PORTER NEIL 权利人:TOUCHLIGHT IP LTD 摘要:The present invention relates to an improved process for synthesis of deoxyribonucleic acid (DNA), in particular cell-free enzymatic synthesis of DNA, preferably on a large or industrial scale, with an improved yield and/or with an improved efficiency. The invention requires the use of nucleotide complexes wherein the nucleotide is associated with a mixture of divalent and monovalent cations. Preferably, the divalent cation may be magnesium or manganese.
专利号:US-11559556-B2 优先权日:2019-03-15 标题:Citrus fruit extract-mediated synthesis of tellurium nanomaterials having biomedical applications 发明人:MEDINA CRUZ DAVID; TIEN-STREET WILLIAM; ZHANG BOHAN; HUANG XINJING; CRUA ADA VERNET; WEBSTER THOMAS J 权利人:UNIV NORTHEASTERN 摘要:Methods disclosed herein provide for an environmentally-friendly approach that employ citric extracts from fruits as unique reducing and stabilizing agents for making a tellurium nanomaterial. A particular method of making a tellurium nanomaterial includes combining citrus fruit extract with a tellurium salt to form a mixture of citrus fruit extract and dissolved tellurium salt; and heating the mixture of citrus fruit extract and dissolved tellurium salt, thereby making the tellurium nanomaterial. The resulting nanoparticles exhibit enhanced and desirable biomedical properties toward treatment of both infectious diseases and cancer.
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合成参考文献
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