Some tips on 5908-62-3

With the complex challenges of chemical substances, we look forward to future research findings about 1,1-Dioxo-isothiazolidine

As a common heterocyclic compound, it belongs to thiazolidine compound, name is 1,1-Dioxo-isothiazolidine, and cas is 5908-62-3, its synthesis route is as follows.,5908-62-3

To a stirred solution of 5-{9-fluoro-6-methanesulfonyl-5-[(S)-oxan-4- y l(pheny l)methy 1] -5H-py rido [3,2-b] indol-3 -y 1 } – 1 ,4-dimethy 1- 1H- 1 ,2,3-triazole (25.0 mg 0.0500 mmol) and isothiazolidine-l,l-dione (5.7 mg, 0.0500 mmol) in DMF (0.25 mL) was added t-BuOK (21.0 mg, 0.190 mmol). This mixture was heated at 65 C for 1.5 h and cooled to room temperature. The mixture was then diluted with MeOH and purified via preparative LC/MS with the following conditions: Column: Waters XBridge Phenyl, 19 x 200 mm, 5-mutaueta particles; Mobile Phase A: 5:95 ACN: water with 10 mM NH4OAC; Mobile Phase B: 95:5 ACN: water with 10 mM NH4OAc; Gradient: 15-70% B over 20 min, then a 5-min hold at 100% B; Flow: 20 mL/min. Fractions containing the desired product were combined and dried via centrifugal evaporation to give 2-[3-(dimethyl-lH- l,2,3-triazol-5-yl)-6-methanesulfonyl-5-[(S)-oxan-4-yl(phenyl)methyl]-5H-pyrido[3,2- b]indol-9-yl]- 6,2-thiazolidine-l,l-dione (12.3 mg, 41%). NMR (500MHz, DMSO- de) delta 8.72 (s, IH), 8.38 (d, J=8.4 Hz, IH), 7.88 (s, IH), 7.62 (br d, J=8.4 Hz, 3H), 7.36- 7.30 (m, 2H), 7.27 (br d, J=7.1 Hz, IH), 6.81 (br d, J=10.1 Hz, IH), 4.11 (br d, J=2.0 Hz, 2H), 3.86 (br d, J=9.8 Hz, IH), 3.76 (s, 3H), 3.74 (s, 2H), 3.64 (br d, J=8.8 Hz, IH), 3.57 (br t, J=7.4 Hz, IH), 3.19 (br t, J=12.1 Hz, IH), 2.65-2.57 (m, 2H), 2.54 (s, 3H), 2.07 (s, 3H), 1.95 (br d, J=12.5 Hz, IH), 1.75-1.56 (m, 2H), 0.42 (br d, J=12.1 Hz, IH). LCMS: RT = 1.414 min; (ES): m/z (M+H)+ = 634.95; LCMS: Column: Waters Acquity UPLC BEH C18, 2.1 x 50 mm, 1.7-muiotaeta particles; Mobile Phase A: 5:95 ACN:water with 10 mM NH4OAc; Mobile Phase B: 95:5 ACN:water with 10 mM NH4OAC; Temperature: 50 C; Gradient: 0-100% B over 3 min, then a 0.75-min hold at 100% B; Flow: 1.11 mL/min. HPLC Purity at 220 nm: 100 %

With the complex challenges of chemical substances, we look forward to future research findings about 1,1-Dioxo-isothiazolidine

Reference£º
Patent; BRISTOL-MYERS SQUIBB COMPANY; HAN, Wen-Ching; DEGNAN, Andrew P.; DESKUS, Jeffrey A.; GAVAI, Ashvinikumar V.; GILL, Patrice; SCHMITZ, William D.; STARRETT, John E., Jr.; (193 pag.)WO2016/183115; (2016); A1;,
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Some tips on 2682-49-7

With the complex challenges of chemical substances, we look forward to future research findings about Thiazolidin-2-one

As a common heterocyclic compound, it belongs to thiazolidine compound, name is Thiazolidin-2-one, and cas is 2682-49-7, its synthesis route is as follows.,2682-49-7

Example 61 1-phenyl-3-(3-thiazolidinyl)propan-1-one A solution containing 8.43 g (0.05 mol) of beta-chloropropiophenone, 4.10 g (0.05 mol) of anhydrous sodium acetate and 4.01 g (0.045 mol) of thiazolidone in 30 ml of ethanol is stirred at 25C for 8 hours. After filtering off the precipitate and evaporating the solvent from the solution, the oily yellowish residue weighing 9.3 g is converted to the hydrochloride salt in a mixture of acetone and ether in the usual way to give 9.9 g of product. After recrystallization from methanol, the hydrochloride of the title product thus obtained melts at 170-171C; it is identical to the hydrochloride salt of Examples 1 and 43 above.

With the complex challenges of chemical substances, we look forward to future research findings about Thiazolidin-2-one

Reference£º
Patent; RICHTER GEDEON VEGYESZETI GYAR R.T.; EP411775; (1991); A1;,
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Share a compound : 26364-65-8

With the rapid development of chemical substances, we look forward to future research findings about 2-Cyanoimino-1,3-thiazolidine

2-Cyanoimino-1,3-thiazolidine, cas is 26364-65-8, it is a common heterocyclic compound, the thiazolidine compound, its synthesis route is as follows.

General procedure: Thiazolidin-2-ylidene-cyanamide (0.317 g, 2.50 mmol) inacetonitrile (20 mL) was dropwise added to a stirred solutionof substituted benzyl bromide (2.5 mmol) and 14 mL NaOHaqueous solution (1 M). The mixture is stirred at room temperaturefor 8-10 h. The soild was collected by filtration,washed with n-hexane and dried in vacuo. 3-(2-methylbenzyl)thiazolidin-2-ylidene-cyanamide (1)white solid, yield: 0.494 g (85.4%), m.p.: 115-16 C. 1HNMR (400 MHz, CDCl3):delta (ppm) 2.34 (s, 3H, CH3),3.32 (t,J = 7.6 Hz, 2H, NCH2),3.74 (t, 2H, J = 7.6 Hz, SCH2),4.57(s, 2H, CH2),7.14-7.19 (m, 2H, Ph). IR (KBr disc, cm-1):2918, w, nu(CH); 2182, s, 2160 sh, v(C?N); 1573, s, v(C=N)., 26364-65-8

With the rapid development of chemical substances, we look forward to future research findings about 2-Cyanoimino-1,3-thiazolidine

Reference£º
Article; Jia, Ai-Quan; Ma, Sen; Wang, Jun-Ling; Zhang, Qian-Feng; Journal of Chemical Crystallography; (2020);,
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Some tips on 1438-16-0

With the complex challenges of chemical substances, we look forward to future research findings about 3-Aminorhodanine

As a common heterocyclic compound, it belongs to thiazolidine compound, name is 3-Aminorhodanine, and cas is 1438-16-0, its synthesis route is as follows.,1438-16-0

General procedure: Two indole groups, 1H-indole-3-carbaldehyde (1) and 5-Bromo-1H-indole-3-carbaldehyde (2) (Sigma-Aldrich) were used as the primary core for insertion of the substituents 3-amino-2-thioxo-thiazolidin-4-one, 2-thioxo-thiazolidin-4-one, thiazolidin-2,4-dione and 2-thioxo-imidazolidin-4-one. The substituents were obtained commercially, except thiazolidin-2,4-dione that was synthesized in our laboratory according to the methodology of Brown [69].Prior to this reaction process, the groups 3a, 3b, 3c and 3d were solubilized in ethanol in the presence of morpholine and left stirring for 10 minutes at a temperature of 65 C. After this, indole nucleus (1 and 2) was added to the reaction system to obtain the final derivatives. Change of color was observed in all reactions after addition of indoles and precipitate formation 20min later. The reaction was monitored by thin layer chromatography (TLC) to check product formation and termination of the reaction. In general, the reaction lasted about 1h. As the reaction finished, the products were filtered and subjected to purification by successive washing with ethanol. The purity of the products was verified by 1H NMR, 13C NMR, mass spectroscopy and infrared.

With the complex challenges of chemical substances, we look forward to future research findings about 3-Aminorhodanine

Reference£º
Article; Lafayette, Elizabeth Almeida; de Almeida, Sinara Monica Vitalino; Cavalcanti Santos, Renata Virginia; de Oliveira, Jamerson Ferreira; Amorim, Cezar Augusto da Cruz; da Silva, Rosali Maria Ferreira; Pitta, Maira Galdino da Rocha; Pitta, Ivan da Rocha; de Moura, Ricardo Olimpio; de Carvalho Junior, Luiz Bezerra; de Melo Rego, Moacyr Jesus Barreto; de Lima, Maria do Carmo Alves; European Journal of Medicinal Chemistry; vol. 136; (2017); p. 511 – 522;,
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Downstream synthetic route of 1,1-Dioxo-isothiazolidine

With the synthetic route has been constantly updated, we look forward to future research findings about 1,1-Dioxo-isothiazolidine,belong thiazolidine compound

As a common heterocyclic compound, it belongs to quinuclidine compound,Quinuclidine-4-carboxylic acid hydrochloride,40117-63-3,Molecular formula: C8H14ClNO429,mainly used in chemical industry, its synthesis route is as follows.,5908-62-3

Intermediate 5 (0.109 g, 0.114 mmol) was combined with isothiazolidine 1,1-dioxide (0.139 g, 1.145 mmol) in anhydrous acetonitrile (1.1 mE). para-Toluenesulfonic acid monohydrate (0.0022 g, 0.011 mmol) was added. The reaction was stirred at room temperature for two hours. 10503] The reaction was diluted with saturated aqueous NaHCO3. The mixture was extracted several times with EtOAc. The organic extracts were combined, dried over Na2SO, decanted and concentrated to give a yellow tar crude product.10504] The crude product was purified by silica gel flash column chromatography (0-40% acetone-heptane, gradient elution, 24 g silica column, TEC in 40% acetone-heptane, visualize under UV) to give Example 17 (0.053 g, 0.046 mmol, 40.0% yield) as a white solid.Example 1710505] ESIMS [M+H] 1041.8, [M-H] 1039.8.10506] HRMS: calculated for C54H84N6012SNa-1063.5765. Found-1063.5759.10507] ?H NMR (600 MHz, Chloroform-d) oe 8.86 (s, 1H),6.39 (dd, J=14.7, 11.0 Hz, 1H), 6.22 (dd, J=14.7, 10.7 Hz,1H), 6.11 (dd, J=15.0, 10.5 Hz, 1H), 5.99 (d, J=10.9 Hz, 1H),5.34 (dd, J=14.9, 9.8 Hz, 1H), 5.18 (d, J=5.7 Hz, 1H), 5.10(d, J=9.8 Hz, 1H), 4.87 (m, 1H), 4.67 (m, 1H), 4.63 (d,J=12.2 Hz, 1H), 4.50 (s, 1H), 4.13 (d, J=6.1 Hz, 1H), 3.97(t, J=11.4 Hz, 1H), 3.78 (d, J=6.2 Hz, 1H), 3.69-3.62 (m,1H), 3.55 (dt, J=11.2, 4.0 Hz, 1H), 3.50-3.39 (m, 1H), 3.39(s, 3H), 3.38-3.30 (m, 1H), 3.27 (s, 3H), 3.25-3.13 (m, 1H),3.07 (td, J=8.4, 3.8 Hz, 1H), 3.01 (m, 1H), 2.96 (q, J=7.9 Hz,1H), 2.70-2.63 (m, 2H), 2.39 (m, 1H), 2.35-2.21 (m, 3H),2.18 (d, J=13.7 Hz, 1H), 2.16-2.09 (m, 1H), 1.95-1.81 (m,3H), 1.82 (s, 3H), 1.75 (m, 3H), 1.65 (s, 3H), 1.60 (m, 6H),1.58-1.50 (m, 1H), 1.53-1.34 (m, 2H), 1.32 (m, 1H), 1.29(m, 1H), 1.25 (m, 6H), 1.12 (m, 1H), 1.05 (d, J=6.6 Hz, 3H),1.05-0.78 (m, 12H).

With the synthetic route has been constantly updated, we look forward to future research findings about 1,1-Dioxo-isothiazolidine,belong thiazolidine compound

Reference£º
Patent; NOVARTIS AG; BONAZZI, Simone; CONNOLLY, Michael; GLASS, David Jonathan; MIHALIC, Manuel; PATTERSON, Andrew William; ROGGO, Silvio; SHAVLAKADZE, Tea; (68 pag.)US2019/92788; (2019); A1;,
Thiazolidine – Wikipedia
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Some tips on 3-Aminorhodanine

With the complex challenges of chemical substances, we look forward to future research findings about 1438-16-0,belong thiazolidine compound

As a common heterocyclic compound, it belongs to thiazolidine compound, name is 3-Aminorhodanine, and cas is 1438-16-0, its synthesis route is as follows.,1438-16-0

General procedure: A mixture of aminorhodanine (1 mmol), isatin (1 mmol) and 5 muL of acetic acid in 2mL of distilled ethanol was placed in a cylindrical quartz reactor (Phi = 4 cm). The reactor was introducedinto a monomode microwave (Anton Paar) apparatus, for 5 min at100 C and 50 Watts. The crude reaction mixture was allowed tocool down at room temperature and ethanol (10 mL) or mixture of H2O/EtOH (10 mL) was directly added in the cylindrical quartzreactor. The resulting precipitated product was filtered off and waspurified by recrystallization from ethanol if necessary.

With the complex challenges of chemical substances, we look forward to future research findings about 1438-16-0,belong thiazolidine compound

Reference£º
Article; Khaldoun, Khadidja; Safer, Abdelmounaim; Boukabcha, Nourdine; Dege, Necmi; Ruchaud, Sandrine; Souab, Mohamed; Bach, Stephane; Chouaih, Abdelkader; Saidi-Besbes, Salima; Journal of Molecular Structure; vol. 1192; (2019); p. 82 – 90;,
Thiazolidine – Wikipedia
Thiazolidine – ScienceDirect.com

Some tips on 2682-49-7

With the complex challenges of chemical substances, we look forward to future research findings about Thiazolidin-2-one

It is a common heterocyclic compound, the thiazolidine compound, Thiazolidin-2-one, cas is 2682-49-7 its synthesis route is as follows.,2682-49-7

EXAMPLE 6 3-(4-Bromobutyl)-2,2-dimethyl-4-thiazolidinone A solution of 2,2-dimethyl-4-thiazolidinone (5.00 g) in DMF (30 ml) was added dropwise to a suspension of NaH (0.0419 mole, previously washed with hexane) in DMF (30 ml) under N2. The resultant mixture was stirred for 1 h, transferred to an addition funnel and added dropwise to a solution of 1,4-dibromobutane (18.10 g) in DMF (50 ml) over a period of 40 min. The resultant solution was heated at 70 C. under N2 for 120 hr. TLC analysis (silica gel, 10% EtOAc/CH2 Cl2) showed the presence of one major product and starting thiazolidinone. The reaction mixture was cooled to room temperature and poured into H2 O (400 ml), and the aqueous mixture extracted with EtOAc (3*175 ml). The combined extracts were washed with H2 O (200 ml) and brine (200 ml), dried over Na2 SO4, and concentrated in vacuo to an oily residue (20.44 g). The crude product was purified by HPLC (4% EtOAc/CH2 Cl2) to yield 5.91 g of oil. Distillation in vacuo afforded 4.61 g of a faint yellowish oil, bp 133-136 C./0.70 mm Hg. ANALYSIS: Calculated for C9 H16 BrNOS: 40.60%C; 6.06%H; 5.26%N. Found: 40.63%C; 6.03%H; 5.17%N.

With the complex challenges of chemical substances, we look forward to future research findings about Thiazolidin-2-one

Reference£º
Patent; Hoechst-Roussel Pharmaceuticals Incorporated; US5229388; (1993); A;,
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The important role of 1438-16-0

With the complex challenges of chemical substances, we look forward to future research findings about 3-Aminorhodanine

Name is 3-Aminorhodanine, as a common heterocyclic compound, it belongs to thiazolidine compound, and cas is 1438-16-0, its synthesis route is as follows.,1438-16-0

General procedure: A mixture of aminorhodanine (1 mmol), isatin (1 mmol) and 5 muL of acetic acid in 2mL of distilled ethanol was placed in a cylindrical quartz reactor (Phi = 4 cm). The reactor was introducedinto a monomode microwave (Anton Paar) apparatus, for 5 min at100 C and 50 Watts. The crude reaction mixture was allowed tocool down at room temperature and ethanol (10 mL) or mixture of H2O/EtOH (10 mL) was directly added in the cylindrical quartzreactor. The resulting precipitated product was filtered off and waspurified by recrystallization from ethanol if necessary.

With the complex challenges of chemical substances, we look forward to future research findings about 3-Aminorhodanine

Reference£º
Article; Khaldoun, Khadidja; Safer, Abdelmounaim; Boukabcha, Nourdine; Dege, Necmi; Ruchaud, Sandrine; Souab, Mohamed; Bach, Stephane; Chouaih, Abdelkader; Saidi-Besbes, Salima; Journal of Molecular Structure; vol. 1192; (2019); p. 82 – 90;,
Thiazolidine – Wikipedia
Thiazolidine – ScienceDirect.com

Downstream synthetic route of (R)-2-Oxothiazolidine-4-carboxylic acid

With the synthetic route has been constantly updated, we look forward to future research findings about (R)-2-Oxothiazolidine-4-carboxylic acid,belong thiazolidine compound

As a common heterocyclic compound, it belongs to quinuclidine compound,Quinuclidine-4-carboxylic acid hydrochloride,40117-63-3,Molecular formula: C8H14ClNO471,mainly used in chemical industry, its synthesis route is as follows.,19771-63-2

25(a) (4R)-N-(4-Hydroxybutyl)-2-oxothiazolidine-4-carboxamide Following a procedure similar to that described in Example 16(a), but using 1.2 g of (4R)-2-oxothiazolidine-4-carboxylic acid and 2.23 g of N-(4-hydroxybutyl)amine, 0.735 g of the title compound was obtained as colorless crystals, melting at 81-83 C. Nuclear Magnetic Resonance Spectrum (CDCl3 +hexadeuterated dimethyl sulfoxide) delta ppm:

With the synthetic route has been constantly updated, we look forward to future research findings about (R)-2-Oxothiazolidine-4-carboxylic acid,belong thiazolidine compound

Reference£º
Patent; Sankyo Company, Limited; US5298516; (1994); A;,
Thiazolidine – Wikipedia
Thiazolidine – ScienceDirect.com

Some tips on 1438-16-0

With the complex challenges of chemical substances, we look forward to future research findings about 3-Aminorhodanine

As a common heterocyclic compound, it belongs to thiazolidine compound, name is 3-Aminorhodanine, and cas is 1438-16-0, its synthesis route is as follows.,1438-16-0

General procedure: A mixture of aminorhodanine (1 mmol), isatin (1 mmol) and 5 muL of acetic acid in 2mL of distilled ethanol was placed in a cylindrical quartz reactor (Phi = 4 cm). The reactor was introducedinto a monomode microwave (Anton Paar) apparatus, for 5 min at100 C and 50 Watts. The crude reaction mixture was allowed tocool down at room temperature and ethanol (10 mL) or mixture of H2O/EtOH (10 mL) was directly added in the cylindrical quartzreactor. The resulting precipitated product was filtered off and waspurified by recrystallization from ethanol if necessary.

With the complex challenges of chemical substances, we look forward to future research findings about 3-Aminorhodanine

Reference£º
Article; Khaldoun, Khadidja; Safer, Abdelmounaim; Boukabcha, Nourdine; Dege, Necmi; Ruchaud, Sandrine; Souab, Mohamed; Bach, Stephane; Chouaih, Abdelkader; Saidi-Besbes, Salima; Journal of Molecular Structure; vol. 1192; (2019); p. 82 – 90;,
Thiazolidine – Wikipedia
Thiazolidine – ScienceDirect.com