中文名称 | 英文名称 | CAS号 | 化学式 | 分子量 |
---|---|---|---|---|
(S)-(+)-1-氨基茚满 | (S)-1-Aminoindane | 61341-86-4 | C9H11N | 133.193 |
1-氨基-2-茚醇 | 1-amino-2,3-dihydro-1H-inden-2-ol | 74165-73-4 | C9H11NO | 149.192 |
—— | 1-isothiocyanato-2,3-dihydro-1H-indene | 71492-66-5 | C10H9NS | 175.254 |
茚满 | INDANE | 496-11-7 | C9H10 | 118.178 |
中文名称 | 英文名称 | CAS号 | 化学式 | 分子量 |
---|---|---|---|---|
(S)-(+)-1-氨基茚满 | (S)-1-Aminoindane | 61341-86-4 | C9H11N | 133.193 |
(R)-(-)-1-氨基茚满 | (R)-1-Aminoindane | 10277-74-4 | C9H11N | 133.193 |
茚-1-甲胺 | N-methyl-1-indanamine | 2084-72-2 | C10H13N | 147.22 |
—— | N-formyl-1-indanamin | 31502-89-3 | C10H11NO | 161.203 |
—— | N,N-dimethyl-1-indanylamine | 91245-71-5 | C11H15N | 161.247 |
—— | 1-Isocyanato-2,3-dihydro-1H-indene | 1224439-25-1 | C10H9NO | 159.188 |
6-溴-2,3-二氢-1H-茚-1-胺 | 6-bromoindan-1-amine | 907973-36-8 | C9H10BrN | 212.089 |
—— | 1-isothiocyanato-2,3-dihydro-1H-indene | 71492-66-5 | C10H9NS | 175.254 |
雷沙吉兰 | rasagiline | 136236-51-6 | C12H13N | 171.242 |
2,3-二氢-n-2-丙炔-1-基-1H-茚-1-胺 | N-propargyl-1-aminoindan | 1875-50-9 | C12H13N | 171.242 |
(S)-N-(2-丙炔基)-2,3-二氢茚-1-胺 | N-Propargyl-1(S)-aminoindan | 185517-74-2 | C12H13N | 171.242 |
拉沙吉林杂质9 | N-allyl-2,3-dihydro-1H-inden-1-amine | 91639-43-9 | C12H15N | 173.258 |
2,3-二氢-N-苄基-1H-茚-1-胺 | (+)-N-benzylindan-1-amine | 66399-68-6 | C16H17N | 223.318 |
—— | N-(2,3-dihydro-1H-inden-1-yl)guanidine | 46169-72-6 | C10H13N3 | 175.233 |
N-茚满-1-基-乙酰胺 | N-(2,3-dihydro-1H-inden-1-yl)acetamide | 10408-91-0 | C11H13NO | 175.23 |
—— | N-((R)-2,3-dihydro-1H-inden-1-yl)acetamide | 169105-02-6 | C11H13NO | 175.23 |
—— | (S)-(+)-N-(indan-1-yl)acetamide | —— | C11H13NO | 175.23 |
—— | 1-(2,3-dihydro-1H-inden-1-yl)urea | 6520-67-8 | C10H12N2O | 176.218 |
(S)-1-氨基-2,3-二氢-1H-茚-4-甲腈盐酸盐 | (S)-1-amino-2,3-dihydro-1H-indene-4-carbonitrile | 1213099-69-4 | C10H10N2 | 158.203 |
—— | m-Nitro-indane | 135498-85-0 | C9H9NO2 | 163.176 |
N-(2,3-二氢-1H-茚-1-基)硫二酰胺 | 1-(sulfamoylamino)-2,3-dihydro-1H-indene | 15211-60-6 | C9H12N2O2S | 212.272 |
—— | 2,3-Dihydro-1H-inden-1-ylsulfamyl chloride | 89316-24-5 | C9H10ClNO2S | 231.703 |
—— | N-(2,3-Dihydro-1H-inden-1-yl)butanamide | 144602-65-3 | C13H17NO | 203.284 |
—— | N-[(1S)-2,3-dihydro-1H-inden-1-yl]butanamide | —— | C13H17NO | 203.284 |
—— | N-[(1R)-2,3-dihydro-1H-inden-1-yl]butanamide | —— | C13H17NO | 203.284 |
—— | 2-chloro-N-(2,3-dihydro-1H-inden-1-yl)acetamide | 6514-50-7 | C11H12ClNO | 209.675 |
—— | N-(2,3-dihydro-1H-inden-1-yl)prop-2-enamide | 870837-43-7 | C12H13NO | 187.241 |
茚满 | INDANE | 496-11-7 | C9H10 | 118.178 |
雷沙吉兰杂质8 | N,N-bispropargylaminoindan | 92850-02-7 | C15H15N | 209.291 |
—— | 4-(1-indanamino)-1-methylpiperidine | 41292-90-4 | C15H22N2 | 230.353 |
—— | 1-isothiocyanato-4-methyi-indane | 927406-15-3 | C11H11NS | 189.281 |
—— | (3,4-dichlorobenzyl)indan-1-yl-amine | —— | C16H15Cl2N | 292.208 |
—— | 1-(2-hydroxy-ethyl)-3-indan-1-yl-thiourea | 937741-22-5 | C12H16N2OS | 236.338 |
—— | 1.4-Bis- |
4981-13-9 | C28H36N2 | 400.607 |
—— | N-(2,3-dihydro-1H-inden-1-yl)pyridin-4-amine | —— | C14H14N2 | 210.279 |
—— | N-(2,3-Dihydro-1H-inden-1-yl)-2-methoxyacetamide | —— | C12H15NO2 | 205.257 |
—— | (R)-N-(2,3-dihydro-1H-inden-1-yl)-2-methoxyacetamide | —— | C12H15NO2 | 205.257 |
—— | N-trifluoroacetyl indan-1-ylamine | 127727-24-6 | C11H10F3NO | 229.202 |
1-氨基-6-硝基茚 | 6-nitro-indan-1-ylamine | 62658-54-2 | C9H10N2O2 | 178.191 |
—— | N-(2,3-dihydro-1H-inden-1-yl)benzamide | 73391-98-7 | C16H15NO | 237.301 |
—— | N-[(1R)-2,3-dihydro-1H-inden-1-yl]benzamide | 73391-99-8 | C16H15NO | 237.301 |
—— | 2-chloro-N-(2,3-dihydro-1H-inden-1-yl)propanamide | —— | C12H14ClNO | 223.702 |
—— | 1- |
6514-54-1 | C15H22N2O | 246.352 |
The biocatalytic performance of a cloned cyclohexylamine oxidase derived from Brevibacterium oxydans IH-35A towards structurally different amines was investigated. Cycloalkyl primary amines, alkyl aryl amines, and α-carbon-substituted aliphatic amines were identified as suitable substrates for the biocatalyst based on an activity assay. Kinetic resolutions of several amines by either recombinant whole cells or crude enzyme extracts prepared therefrom gave enantiomerically pure (R)-amines besides the corresponding ketones. When cyclohexylamine oxidase in combination with a borane–ammonia complex as reducing agent was applied to the deracemization of several substrates, excellent enantiomeric ratios (>99:1) and good isolated yields (62%–75%) of the corresponding (R)-amines were obtained.