CIESC Journal ›› 2020, Vol. 71 ›› Issue (4): 1851-1858.DOI: 10.11949/0438-1157.20191198
• Material science and engineering, nanotechnology • Previous Articles Next Articles
Jinchao XU1(),Yong CHEN1,2(),Huiqing YE1,Jie ZHANG1,Ji ZHANG1,2,Zhonghua LUO1,2
Received:
2019-10-12
Revised:
2019-12-26
Online:
2020-04-05
Published:
2020-04-05
Contact:
Yong CHEN
徐巾超1(),陈勇1,2(),叶辉青1,张杰1,张霁1,2,罗忠华1,2
通讯作者:
陈勇
作者简介:
徐巾超(1991—),女,硕士,工程师,基金资助:
CLC Number:
Jinchao XU, Yong CHEN, Huiqing YE, Jie ZHANG, Ji ZHANG, Zhonghua LUO. Synthesis, characterization and physicochemical properties study ofroxadustat co-crystals[J]. CIESC Journal, 2020, 71(4): 1851-1858.
徐巾超, 陈勇, 叶辉青, 张杰, 张霁, 罗忠华. 罗沙司他共晶的合成、表征与理化性质研究[J]. 化工学报, 2020, 71(4): 1851-1858.
Add to citation manager EndNote|Ris|BibTeX
1 | Ö Almarsson, Zaworotko M. Crystal engineering of the composition of pharmaceutical phases. Do pharmaceutical co-crystals represent a new path to improved medicines? [J]. Chem. Commun., 2004, 35(17): 1889-1896. |
2 | Lipinski C A J. Drug-like properties and the causes of poor solubility and poor permeability[J]. J. Pharmacol. Toxicol. Methods, 2000, 44(1): 235-249. |
3 | Takagi T, Ramachandran C, Bermejo M, et al. A provisional biopharmaceutical classification of the top 200 oral drug products in the United States, Great Britain, Spain, and Japan[J]. Mol. Pharm., 2006, 3(6): 631-643. |
4 | Pouton C W. Formulation of poorly water-soluble drugs for oral administration: physicochemical and physiological issues and the lipid formulation classification system[J]. Eur. J. Pharm. Sci., 2006, 29(3/4): 278-287. |
5 | Bučar D K, Lancaster R W, Bernstein J. Disappearing polymorphs revisited[J]. Angew. Chem. Int. Ed., 2015, 54(24): 6972-6993. |
6 | Vishweshwar P, Mcmahon J A, Bis J A, et al. Pharmaceutical co-crystals[J]. J. Pharm. Sci., 2006, 95(3): 499-516. |
7 | 陈嘉媚, 吴传斌, 鲁统部. 超分子化学在药物共晶中的应用[J]. 高等学校化学学报, 2011, 32(9): 1996-2009. |
Chen J M, Wu C B, Lu T B. Application of supramolecular chemistry in pharmaceutical co-crystals[J]. Chemical Journal of Chinese Universities, 2011, 32(9): 1996-2009. | |
8 | Zhang C Y, Xiong Y, Jiao F B, et al. Redefining the term of cocrystal and broadening its intension[J]. Cryst. Growth Des., 2019, 19(3): 1471-1478. |
9 | Aitipamula S, Banerjee R, Bansal A K, et al. Polymorphs, salts, and cocrystals: what s in a name? [J]. Cryst. Growth Des., 2012, 12(5): 2147-2152. |
10 | Aakeröy C B, Fasulo M E, Desper J. Cocrystal or salt: does it really matter? [J]. Mol. Pharm., 2007, 4: 317-322. |
11 | Etter M C. Encoding and decoding hydrogen-bond patterns of organic compounds margaret[J]. Acc. Chem. Res., 1990, 23(4): 120-126. |
12 | Gadade D D, Pekamwar S S. Pharmaceutical cocrystals: regulatory and strategic aspects, design and development[J]. Advanced Pharmaceutical Bulletin, 2016, 6(4): 479-494. |
13 | U.S. Department of Health and Human Services, Food and Drug Administration, Center for Drug Evaluation and Research (CDER). Regulatory classification of pharmaceutical co-crystals, Revision 1[EB/OL]. [2019-09-06]. . |
14 | 黄耀辉, 尹秋响, 张霞, 等. 药物共晶的合成和结构分析[J]. 化工学报, 2017, 68(2): 509-518. |
Huang Y H, Yin Q X, Zhang X, et al. Synthesis and structural analysis of pharmaceutical co-crystals[J]. CIESC Journal, 2017, 68(2): 509-518. | |
15 | Koranne S, Krzyzaniak J F, Luthra S, et al. Role of coformer and excipient properties on the solid-state stability of theophylline cocrystals [J]. Cryst. Growth Des., 2019, 19(2): 868-875. |
16 | Aakeröy C B, Salmon D J. Building co-crystals with molecular sense and supramolecular sensibility[J]. Cryst. Eng. Comm., 2005, 7(72): 439-448. |
17 | Shiraki K, Takata N, Takano R, et al. Dissolution improvement and the mechanism of the improvement from cocrystallization of poorly water-soluble compounds[J]. Pharmaceutical Research, 2008, 25(11): 2581-2592. |
18 | Duggirala N K, Perry M L, Ö Almarsson, et al. Pharmaceutical cocrystals: along the path to improved medicines[J]. Chemical Communications, 2016, 52(4): 640-655. |
19 | Shayanfar A, Asadpour-Zeynali K, Jouyban A. Solubility and dissolution rate of a carbamazepine-cinnamic acid cocrystal[J]. Journal of Molecular Liquids, 2013, 187: 171-176. |
20 | Childs S L, Chyall L J, Dunlap J T, et al. Crystal engineering approach to forming cocrystals of amine hydrochlorides with organic acids. Molecular complexes of fluoxetine hydrochloride with benzoic, succinic, and fumaric acids[J]. Journal of the American Chemical Society, 2004, 126(41): 13335-13342. |
21 | Chen Y, Li L, Yao J, et al. Improving the solubility and bioavailability of apixaban via apixaban-oxalic acid cocrystal[J]. Crystal Growth & Design, 2016, 16(5): 2923-2930. |
22 | Schultheiss N, Newman A. Pharmaceutical cocrystals and their physicochemical properties[J]. Crystal Growth and Design, 2009, 9(6): 2950-2967. |
23 | Braga D, Grepioni F, Maini L, et al. From unexpected reactions to a new family of ionic co-crystals: the case of barbituric acid with alkali bromides and caesium iodide[J]. Chemical Communications, 2010, 46(41): 7715-7717. |
24 | Tsutsui H, Momomura S, Saito Y, et al. Efficacy and safety of sacubitril/valsartan (LCZ696) in Japanese patients with chronic heart failure and reduced ejection fraction: rationale for and design of the randomized, double-blind PARALLEL-HF study[J]. Journal of Cardiology, 2017, 70(3): 225-231. |
25 | Feng L, Karpinski P H, Sutton P, et al. LCZ696: a dual-acting sodium supramolecular complex[J]. Tetrahedron Letters, 2012, 53(3): 275-276. |
26 | Miao Z, Nucci G, Amin N, et al. Pharmacokinetics, metabolism, and excretion of the antidiabetic agent ertugliflozin (PF-04971729) in healthy male subjects[J]. Drug Metabolism and Disposition, 2013, 41(2): 445-456. |
27 | Chen N, Hao C, Peng X, et al. Roxadustat treatment for anemia in patients undergoing long-term dialysis[J]. N. Engl. J. Med., 2019, 381(11): 1011-1022. |
28 | Chen N, Hao C, Liu B C, et al. Roxadustat for anemia in patients with kidney disease not receiving dialysis[J]. N. Engl. J. Med., 2019, 381(11): 1001-1010. |
29 | Royal Society of Chemistry. Water solubility estimate from Log Kow (WSKOW v1.41. [EB/OL]. [2019-09-18]. . |
30 | Witschi C, Park J M, Thompson M D, et al. Crystalline forms of a prolyl hydroxylase inhibitor: WO2014014835A2[P]. 2014-01-23. |
31 | Li J, Wang L, Ye Y Q, et al. Improving the solubility of dexlansoprazole by cocrystallization with isonicotinamide[J]. European Journal of Pharmaceutical Sciences, 2016, 85: 47-52. |
32 | Avdeef A, Tsinman O. Miniaturized rotating disk intrinsic dissolution rate measurement: effects of buffer capacity in comparisons to traditional Wood s apparatus[J]. Pharmaceutical Research, 2008, 25(11): 2613-2627. |
33 | Emami S, Adibkia K, Barzegar J M, et al. Piroxicam cocrystals with phenolic coformers: preparation, characterization, and dissolution properties[J]. Pharmaceutical Development and Technology, 2019, 24(2): 199-210. |
[1] | He JIANG, Junfei YUAN, Lin WANG, Guyu XING. Experimental study on the effect of flow sharing cavity structure on phase change flow characteristics in microchannels [J]. CIESC Journal, 2023, 74(S1): 235-244. |
[2] | Qi WANG, Bin ZHANG, Xiaoxin ZHANG, Hujian WU, Haitao ZHAN, Tao WANG. Synthesis of isoxepac and 2-ethylanthraquinone catalyzed by chloroaluminate-triethylamine ionic liquid/P2O5 [J]. CIESC Journal, 2023, 74(S1): 245-249. |
[3] | Hongxin YU, Shuangquan SHAO. Simulation analysis of water crystallization process [J]. CIESC Journal, 2023, 74(S1): 250-258. |
[4] | Chao HU, Yuming DONG, Wei ZHANG, Hongling ZHANG, Peng ZHOU, Hongbin XU. Preparation of high-concentration positive electrolyte of vanadium redox flow battery by activating vanadium pentoxide with highly concentrated sulfuric acid [J]. CIESC Journal, 2023, 74(S1): 338-345. |
[5] | Lingding MENG, Ruqing CHONG, Feixue SUN, Zihui MENG, Wenfang LIU. Immobilization of carbonic anhydrase on modified polyethylene membrane and silica [J]. CIESC Journal, 2023, 74(8): 3472-3484. |
[6] | Xudong YU, Qi LI, Niancu CHEN, Li DU, Siying REN, Ying ZENG. Phase equilibria and calculation of aqueous ternary system KCl + CaCl2 + H2O at 298.2, 323.2, and 348.2 K [J]. CIESC Journal, 2023, 74(8): 3256-3265. |
[7] | Yu FU, Xingchong LIU, Hanyu WANG, Haimin LI, Yafei NI, Wenjing ZOU, Yue LEI, Yongshan PENG. Research on F3EACl modification layer for improving performance of perovskite solar cells [J]. CIESC Journal, 2023, 74(8): 3554-3563. |
[8] | Yuyuan ZHENG, Zhiwei GE, Xiangyu HAN, Liang WANG, Haisheng CHEN. Progress and prospect of medium and high temperature thermochemical energy storage of calcium-based materials [J]. CIESC Journal, 2023, 74(8): 3171-3192. |
[9] | Bin LI, Zhenghu XU, Shuang JIANG, Tianyong ZHANG. Clean and efficient synthesis of accelerator CBS by hydrogen peroxide catalytic oxidation method [J]. CIESC Journal, 2023, 74(7): 2919-2925. |
[10] | Jiali GE, Tuxiang GUAN, Xinmin QIU, Jian WU, Liming SHEN, Ningzhong BAO. Synthesis of FeF3 nanoparticles covered by vertical porous carbon for high performance Li-ion battery cathode [J]. CIESC Journal, 2023, 74(7): 3058-3067. |
[11] | Yuming TU, Gaoyan SHAO, Jianjie CHEN, Feng LIU, Shichao TIAN, Zhiyong ZHOU, Zhongqi REN. Advances in the design, synthesis and application of calcium-based catalysts [J]. CIESC Journal, 2023, 74(7): 2717-2734. |
[12] | Tan ZHANG, Guang LIU, Jinping LI, Yuhan SUN. Performance regulation strategies of Ru-based nitrogen reduction electrocatalysts [J]. CIESC Journal, 2023, 74(6): 2264-2280. |
[13] | Bin CAI, Xiaolin ZHANG, Qian LUO, Jiangtao DANG, Liyuan ZUO, Xinmei LIU. Research progress of conductive thin film materials [J]. CIESC Journal, 2023, 74(6): 2308-2321. |
[14] | Lei MAO, Guanzhang LIU, Hang YUAN, Guangya ZHANG. Efficient preparation of carbon anhydrase nanoparticles capable of capturing CO2 and their characteristics [J]. CIESC Journal, 2023, 74(6): 2589-2598. |
[15] | Wenchao XU, Zhigao SUN, Cuimin LI, Juan LI, Haifeng HUANG. Effect of surfactant E-1310 on the formation of HCFC-141b hydrate under static conditions [J]. CIESC Journal, 2023, 74(5): 2179-2185. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||