中国药学(英文版) ›› 2024, Vol. 33 ›› Issue (10): 877-905.DOI: 10.5246/jcps.2024.10.064
• 【综述】 •
李哲1,#, 罗晓岁1,#, Abid Naeem1, 李琼1, 张尧2, 管咏梅1, 陈丽华1, 朱卫丰1, 金正吉1, 冯怡1,3, 明良山1,*()
收稿日期:
2024-01-08
修回日期:
2024-02-12
接受日期:
2024-03-23
出版日期:
2024-10-31
发布日期:
2024-10-31
通讯作者:
明良山
Zhe Li1,#, Xiaosui Luo1,#, Abid Naeem1, Qiong Li1, Yao Zhang2, Yongmei Guan1, Lihua Chen1, Weifeng Zhu1, Zhengji Jin1, Yi Feng1,3, Liangshan Ming1,*()
Received:
2024-01-08
Revised:
2024-02-12
Accepted:
2024-03-23
Online:
2024-10-31
Published:
2024-10-31
Contact:
Liangshan Ming
About author:
# Zhe Li and Xiaosui Luo contributed equally to this work.
Supported by:
摘要:
固体制剂作为最广泛使用的剂型, 其结构显著影响药物的有效性。因此, 深入研究固体制剂结构是至关重要的。本文采用文献计量学的方法总结了近五年固体制剂和物理结构方面的文献, 并利用CiteSpace软件提供了可视化分析。此外, 在三个不同的水平上探讨了固体制剂结构的影响因素: 原材料、中间体和最终产品。最后, 深入讨论了固体制剂物理结构的各种表征技术, 如扫描电子显微镜、透射电子显微镜、X射线衍射、核磁共振、低场核磁共振、热分析和太赫兹等。本综述强调了固体制剂结构研究的重要意义, 为该领域的进一步研究和发展奠定了基础。这种全面的方法旨在促进固体制剂的理解和进步, 以提高药物的有效性。
Supporting:
李哲, 罗晓岁, Abid Naeem, 李琼, 张尧, 管咏梅, 陈丽华, 朱卫丰, 金正吉, 冯怡, 明良山. 固体制剂物理结构的研究进展[J]. 中国药学(英文版), 2024, 33(10): 877-905.
Zhe Li, Xiaosui Luo, Abid Naeem, Qiong Li, Yao Zhang, Yongmei Guan, Lihua Chen, Weifeng Zhu, Zhengji Jin, Yi Feng, Liangshan Ming. Recent developments in the physical structure of solid formulations: a comprehensive review[J]. Journal of Chinese Pharmaceutical Sciences, 2024, 33(10): 877-905.
[1] |
Couillaud, B.M.; Espeau, P.; Mignet, N.; Corvis, Y. State of the art of pharmaceutical solid forms: from crystal property issues to nanocrystals formulation. ChemMedChem. 2019, 14, 8–23.
|
[2] |
Zhang, S.; Stroud, P.A.; Zhu, A.; Johnson, M.J.; Lomeo, J.; Burcham, C.L.; Hinds, J.; Allen-Francis Blakely, K.; Walworth, M.J. Characterizing the impact of spray dried particle morphology on tablet dissolution using quantitative X-ray microscopy. Eur. J. Pharm. Sci. 2021, 165, 105921.
|
[3] |
Tang, B.; Cheng, G.; Gu, J.C.; Xu, C.H. Development of solid self-emulsifying drug delivery systems: preparation techniques and dosage forms. Drug Discov. Today. 2008, 13, 606–612.
|
[4] |
Gao, L.; Liu, G.Y.; Ma, J.L.; Wang, X.Q.; Zhou, L.; Li, X.; Wang, F. Application of drug nanocrystal technologies on oral drug delivery of poorly soluble drugs. Pharm. Res. 2013, 30, 307–324.
|
[5] |
Zhang, Y.X.; Bai, Y.; Chen, H.L.; Huang, Y.R.; Yuan, P.; Zhang, L.K. Preparation of a colon-specific sustained-release capsule with curcumin-loaded SMEDDS alginate beads. RSC Adv. 2017, 7, 22280–22285.
|
[6] |
Yu, J.Y.; Kim, J.A.; Joung, H.J.; Ko, J.A.; Park, H.J. Preparation and characterization of curcumin solid dispersion using HPMC. J. Food Sci. 2020, 85, 3866–3873.
|
[7] |
Fan, W.L.; Zhu, W.J.; Zhang, X.Y.; Di, L.Q. The preparation of curcumin sustained-release solid dispersion by hot melt extrusion-Ⅰ. optimization of the formulation. J. Pharm. Sci. 2020, 109, 1242–1252.
|
[8] |
Skelbæk-Pedersen, A.L.; Al-Sharabi, M.; Vilhelmsen, T.K.; Rantanen, J.; Zeitler, J.A. Effect of particle size and deformation behaviour on water ingress into tablets. Int. J. Pharm. 2020, 587, 119645.
|
[9] |
Wu, S.J.; Zhang, X.Y.; Zhou, G.M.; Wu, J.H.; Song, W.; Zhang, Y.; Li, Z.; Li, W.L. Physical fingerprint transformation of herbal medicines powders using near-infrared spectroscopy. Adv. Powder Technol. 2023, 34, 104244.
|
[10] |
Cao, Z.Y.; Sun, N.Y.; Sun, H.Y.; Liu, J.; Li, J.; Bi, D.Z.; Wang, C.F.; Wu, L.; Yin, X.Z.; Xiao, T.Q.; Yang, R.; Xu, M.D.; Wu, W.; Zhang, J.W. The structural diversity of ibuprofen sustained-release pellets on the same goal of bioequivalence consistency. Mater. Des. 2022, 217, 110583.
|
[11] |
Öblom, H.; Sjöholm, E.; Rautamo, M.; Sandler, N. Towards printed pediatric medicines in hospital pharmacies: comparison of 2D and 3D-printed orodispersible warfarin films with conventional oral powders in unit dose sachets. Pharmaceutics. 2019, 11, 334.
|
[12] |
Chu, K.R.; Lee, E.; Jeong, S.H.; Park, E.S. Effect of particle size on the dissolution behaviors of poorly water-soluble drugs. Arch. Pharm. Res. 2012, 35, 1187–1195.
|
[13] |
Dian, L.H.; Yang, Z.W.; Li, F.; Wang, Z.H.; Pan, X.; Peng, X.S.; Huang, X.T.; Guo, Z.F.; Quan, G.L.; Shi, X.; Chen, B.; Li, G.; Wu, C.B. Cubic phase nanoparticles for sustained release of ibuprofen: formulation, characterization, and enhanced bioavailability study. Int. J. Nanomedicine. 2013, 8, 845–854.
|
[14] |
Moghadamnia, Y.; Kazemi, S.; Rezaee, B.; Rafati-Rahimzadeh, M.; Ebrahimpour, S.; Aghapour, F. New formulation of ibuprofen on absorption-rate: a comparative bioavailability study in healthy volunteers. Caspian J. Intern. Med. 2019, 10, 150–155.
|
[15] |
Fang, L.W.; Yin, X.Z.; Wu, L.; He, Y.P.; He, Y.Z.; Qin, W.; Meng, F.Y.; York, P.; Xu, X.; Zhang, J.W. Classification of microcrystalline celluloses via structures of individual particles measured by synchrotron radiation X-ray micro-computed tomography. Int. J. Pharm. 2017, 531, 658–667.
|
[16] |
Nordström, J.; Alderborn, G. The granule porosity controls the loss of compactibility for both dry- and wet-processed cellulose granules but at different rate. J. Pharm. Sci. 2015, 104, 2029–2039.
|
[17] |
Šantl, M.; Ilić, I.; Vrečer, F.; Baumgartner, S. A compressibility and compactibility study of real tableting mixtures: the impact of wet and dry granulation versus a direct tableting mixture. Int. J. Pharm. 2011, 414, 131–139.
|
[18] |
Bacher, C.; Olsen, P.M.; Bertelsen, P.; Sonnergaard, J.M. Compressibility and compactibility of granules produced by wet and dry granulation. Int. J. Pharm. 2008, 358, 69–74.
|
[19] |
Mirankó, M.; Trif, L.; Tóth, J.; Feczkó, T. Nanostructured micronized solid dispersion of crystalline-amorphous metronidazole embedded in amorphous polymer matrix prepared by nano spray drying. Adv. Powder Technol. 2021, 32, 2621–2633.
|
[20] |
Jain, A.K.; Thareja, S. In vitro and in vivo characterization of pharmaceutical nanocarriers used for drug delivery. Artif. Cells Nanomed. Biotechnol. 2019, 47, 524–539.
|
[21] |
Kaasalainen, M.; Aseyev, V.; von Haartman, E.; Karaman, D.Ş.; Mäkilä, E.; Tenhu, H.; Rosenholm, J.; Salonen, J. Size, stability, and porosity of mesoporous nanoparticles characterized with light scattering. Nanoscale Res. Lett. 2017, 12, 74.
|
[22] |
Robson, A.L.; Dastoor, P.C.; Flynn, J.; Palmer, W.; Martin, A.; Smith, D.W.; Woldu, A.; Hua, S.S. Advantages and limitations of current imaging techniques for characterizing liposome morphology. Front. Pharmacol. 2018, 9, 80.
|
[23] |
Skotnicki, M.; Apperley, D.C.; Aguilar, J.A.; Milanowski, B.; Pyda, M.; Hodgkinson, P. Characterization of two distinct amorphous forms of valsartan by solid-state NMR. Mol. Pharm. 2016, 13, 211–222.
|
[24] |
Pindelska, E.; Sokal, A.; Kolodziejski, W. Pharmaceutical cocrystals, salts and polymorphs: advanced characterization techniques. Adv. Drug Deliv. Rev. 2017, 117, 111–146.
|
[25] |
Markl, D.; Sauerwein, J.; Goodwin, D.J.; van den Ban, S.; Zeitler, J.A. Non-destructive determination of disintegration time and dissolution in immediate release tablets by terahertz transmission measurements. Pharm. Res. 2017, 34, 1012–1022.
|
[26] |
Garboczi, E.J.; Riding, K.A.; Mirzahosseini, M. Particle shape effects on particle size measurement for crushed waste glass. Adv. Powder Technol. 2017, 28, 648–657.
|
[27] |
Sun, C.C. Microstructure of tablet-pharmaceutical significance, assessment, and engineering. Pharm. Res. 2017, 34, 918–928.
|
[28] |
de Souza, C.M.P.; dos Santos, J.A.B.; do Nascimento, A.L.; Chaves Júnior, J.V.; de Lima Ramos Júnior, F.J.; de Lima Neto, S.A.; Santos de Souza, F.; Macêdo, R.O. Thermal analysis study of solid dispersions hydrochlorothiazide. J. Therm. Anal. Calorim. 2018, 131, 681–689.
|
[29] |
Zhang, F.; Aaltonen, J.; Tian, F.; Saville, D.J.; Rades, T. Influence of particle size and preparation methods on the physical and chemical stability of amorphous simvastatin. Eur. J. Pharm. Biopharm. 2009, 71, 64–70.
|
[30] |
Vercruysse, J.; Córdoba Díaz, D.; Peeters, E.; Fonteyne, M.; Delaet, U.; Van Assche, I.; De Beer, T.; Remon, J.P.; Vervaet, C. Continuous twin screw granulation: influence of process variables on granule and tablet quality. Eur. J. Pharm. Biopharm. 2012, 82, 205–211.
|
[31] |
Portier, C.; Pandelaere, K.; Delaet, U.; Vigh, T.; Kumar, A.; Di Pretoro, G.; De Beer, T.; Vervaet, C.; Vanhoorne, V. Continuous twin screw granulation: influence of process and formulation variables on granule quality attributes of model formulations. Int. J. Pharm. 2020, 576, 118981.
|
[32] |
Qi, S.; Gryczke, A.; Belton, P.; Craig, D.Q.M. Characterisation of solid dispersions of paracetamol and EUDRAGIT E prepared by hot-melt extrusion using thermal, microthermal and spectroscopic analysis. Int. J. Pharm. 2008, 354, 158–167.
|
[33] |
Schomberg, A.K.; Diener, A.; Wünsch, I.; Finke, J.H.; Kwade, A. The use of X-ray microtomography to investigate the microstructure of pharmaceutical tablets: Potentials and comparison to common physical methods. Int. J. Pharm. X. 2021, 3, 100090.
|
[34] |
Casian, T.; Reznek, A.; Vonica-Gligor, A.L.; Van Renterghem, J.; De Beer, T.; Tomuta, I. Development, validation and comparison of near infrared and Raman spectroscopic methods for fast characterization of tablets with amlodipine and valsartan. Talanta. 2017, 167, 333–343.
|
[35] |
Alhijjaj, M.; Yassin, S.; Reading, M.; Zeitler, J.A.; Belton, P.; Qi, S. Characterization of heterogeneity and spatial distribution of phases in complex solid dispersions by thermal analysis by structural characterization and X-ray micro computed tomography. Pharm. Res. 2017, 34, 971–989.
|
[36] |
Liao, H.C.; Mi, X.M.; Xu, Z.S. A survey of decision-making methods with probabilistic linguistic information: bibliometrics, preliminaries, methodologies, applications and future directions. Fuzzy Optim. Decis. Mak. 2020, 19, 81–134.
|
[37] |
Ming, L.S.; Wu, H.L.; Liu, A.; Naeem, A.; Dong, Z.S.; Fan, Q.M.; Zhang, G.C.; Liu, H.N.; Li, Z. Evolution and critical roles of particle properties in Pickering emulsion: a review. J. Mol. Liq. 2023, 388, 122775.
|
[38] |
Zhu, X.Q.; Hu, J.Q.; Deng, S.H.; Tan, Y.Q.; Qiu, C.; Zhang, M.; Ni, X.J.; Lu, H.Y.; Wang, Z.Z.; Li, L.; Chen, H.Z.; Huang, S.Q.; Xiao, T.; Shang, D.W.; Wen, Y.G. Bibliometric and visual analysis of research on the links between the gut microbiota and depression from 1999 to 2019. Front. Psychiatry. 2021, 11, 587670.
|
[39] |
Zhang, S.W.; Huang, M.L.; Zhi, J.C.; Wu, S.H.; Wang, Y.; Pei, F. Research hotspots and trends of peripheral nerve injuries based on web of science from 2017 to 2021: a bibliometric analysis. Front. Neurol. 2022, 13, 872261.
|
[40] |
Wouters, O.J.; Kanavos, P.G.; McKee, M. Comparing generic drug markets in Europe and the United States: prices, volumes, and spending. Milbank Q. 2017, 95, 554–601.
|
[41] |
Dunne, S.; Shannon, B.; Dunne, C.; Cullen, W. A review of the differences and similarities between generic drugs and their originator counterparts, including economic benefits associated with usage of generic medicines, using Ireland as a case study. BMC Pharmacol. Toxicol. 2013, 14, 1.
|
[42] |
Al Ameri, M.N.; Nayuni, N.; Anil Kumar, K.G.; Perrett, D.; Tucker, A.; Johnston, A. The differences between the branded and generic medicines using solid dosage forms: In-vitro dissolution testing. Results Pharma Sci. 2011, 2, 1–8.
|
[43] |
Hwang, K.M.; Nguyen, T.T.; Seok, S.H.; Jo, H.I.; Cho, C.H.; Hwang, K.M.; Kim, J.Y.; Park, C.W.; Rhee, Y.S.; Park, E.S. Swellable and porous bilayer tablet for gastroretentive drug delivery: preparation and in vitro-in vivo evaluation. Int. J. Pharm. 2019, 572, 118783.
|
[44] |
Zhao, N.; Augsburger, L.L. Functionality comparison of 3 classes of superdisintegrants in promoting aspirin tablet disintegration and dissolution. AAPS PharmSciTech. 2005, 6, E634–E640.
|
[45] |
Kadry, G. Comparison between gelatin/carboxymethyl cellulose and gelatin/carboxymethyl nanocellulose in tramadol drug loaded capsule. Heliyon. 2019, 5, e02404.
|
[46] |
Ramesh, A.V.R.N.S.; Mohanalayam, S.; Sarheed, O.; Islam, Q.; Gopi Krishna, G. Design and evaluation of single and multiunit sustained release dosage forms of captopril. Asian J. Pharm. 2017, 11, 118.
|
[47] |
Kanani, K.; Gatoulis, S.C.; Voelker, M. Influence of differing analgesic formulations of aspirin on pharmacokinetic parameters. Pharmaceutics. 2015, 7, 188–198.
|
[48] |
Fathi, M.; Kazemi, S.; Zahedi, F.; Shiran, M.R.; Moghadamnia, A.A. Comparison of oral bioavailability of acetaminophen tablets, capsules and effervescent dosage forms in healthy volunteers. Curr. News. Pharm. Med. Sci. 2018, 31, 5–9.
|
[49] |
Ansari, M.; Kazemipour, M.; Talebnia, J. The development and validation of a dissolution method for clomipramine solid dosage forms. Dissolution Technol. 2004, 11, 16–24.
|
[50] |
Pingali, K.; Mendez, R.; Lewis, D.; Michniak-Kohn, B.; Cuitino, A.; Muzzio, F. Mixing order of glidant and lubricant: influence on powder and tablet properties. Int. J. Pharm. 2011, 409, 269–277.
|
[51] |
Al-Ali, M.; Selvakannan, P.R.; Parthasarathy, R. Influences of novel microwave drying on dissolution of new formulated naproxen sodium. RSC Adv. 2018, 8, 16214–16222.
|
[52] |
Vreeman, G.; Sun, C.C. Air entrapment during tablet compression-Diagnosis, impact on tableting performance, and mitigation strategies. Int. J. Pharm. 2022, 615, 121514.
|
[53] |
Li, Z.; Zhou, M.M.; Wu, F.; Shen, L.; Lin, X.; Feng, Y. Direct compaction properties of Zingiberis Rhizoma extracted powders coated with various shell materials: improvements and mechanism analysis. Int. J. Pharm. 2019, 564, 10–21.
|
[54] |
Cao, X.P.; Morganti, M.; Hancock, B.C.; Masterson, V.M. Correlating particle hardness with powder compaction performance. J. Pharm. Sci. 2010, 99, 4307–4316.
|
[55] |
Benabbas, R.; Sanchez-Ballester, N.M.; Aubert, A.; Sharkawi, T.; Bataille, B.; Soulairol, I. Performance evaluation of a novel biosourced co-processed excipient in direct compression and drug release. Polymers. 2021, 13, 988.
|
[56] |
Zhang, T.; Xiao, S.Y.; Ding, Z.H.; Song, Y.T. Effects of superfine grinding on physicochemical properties and morphological structure of coix seed powders. J. Cereal Sci. 2021, 102, 103361.
|
[57] |
Xu, Q.L.; Huang, R.H.; Yang, P.; Wang, L.; Xing, Y.G.; Liu, H.; Wu, L.; Che, Z.M.; Zhang, P. Effect of different superfine grinding technologies on the physicochemical and antioxidant properties of Tartary buckwheat bran powder. RSC Adv. 2021, 11, 30898–30910.
|
[58] |
Li, Y.H.; Li, Y.N.; Li, H.T.; Qi, Y.R.; Wu, Z.F.; Yang, M. Comparative study of microwave-vacuum and vacuum drying on the physicochemical properties and antioxidant capacity of licorice extract powder. Powder Technol. 2017, 320, 540–545.
|
[59] |
Li, Y.H.; Qi, Y.R.; Wu, Z.F.; Wang, Y.Q.; Wang, X.C.; Wang, F.; Yang, M. Comparative study of microwave-vacuum and vacuum drying on the drying characteristics, dissolution, physicochemical properties, and antioxidant capacity of Scutellaria extract powder. Powder Technol. 2017, 317, 430–437.
|
[60] |
Lee, K.T.; Ingram, A.; Rowson, N.A. Comparison of granule properties produced using Twin Screw Extruder and High Shear Mixer: a step towards understanding the mechanism of twin screw wet granulation. Powder Technol. 2013, 238, 91–98.
|
[61] |
Arndt, O.R.; Baggio, R.; Adam, A.K.; Harting, J.; Franceschinis, E.; Kleinebudde, P. Impact of different dry and wet granulation techniques on granule and tablet properties: a comparative study. J. Pharm. Sci. 2018, 107, 3143–3152.
|
[62] |
Rajani, C.; Kumar, D.D.; Jaya, D.; Kumar, J.A. Effects of granule particle size and lubricant concentration on tablet hardness containing large concentration of polymers. Braz. J. Pharm. Sci. 2018, 53, e00149.
|
[63] |
van den Ban, S.; Goodwin, D.J. The impact of granule density on tabletting and pharmaceutical product performance. Pharm. Res. 2017, 34, 1002–1011.
|
[64] |
Wünsch, I.; Finke, J.H.; John, E.; Juhnke, M.; Kwade, A. The influence of particle size on the application of compression and compaction models for tableting. Int. J. Pharm. 2021, 599, 120424.
|
[65] |
Bonfilio, R.; Leal, J.S.; Santos, O.M.M.; Pereira, G.R.; Doriguetto, A.C.; de Araújo, M.B. Analysis of chlorthalidone polymorphs in raw materials and tablets and the effect of forms I and II on the dissolution properties of drug products. J. Pharm. Biomed. Anal. 2014, 88, 562–570.
|
[66] |
Huang, S.Y.; Williams, R.O. 3rd. Effects of the preparation process on the properties of amorphous solid dispersions. AAPS PharmSciTech. 2018, 19, 1971–1984.
|
[67] |
Nie, B.S.; Liu, X.F.; Yang, L.L.; Meng, J.Q.; Li, X.C. Pore structure characterization of different rank coals using gas adsorption and scanning electron microscopy. Fuel. 2015, 158, 908–917.
|
[68] |
Malatesta, M. Transmission electron microscopy as a powerful tool to investigate the interaction of nanoparticles with subcellular structures. Int. J. Mol. Sci. 2021, 22, 12789.
|
[69] |
Asadabad, M.A.; Eskandari, M.J. Transmission electron microscopy as best technique for characterization in nanotechnology. Synth. React. Inorg. Met. Org. Nano Met. Chem. 2015, 45, 323–326.
|
[70] |
Ramohlola, K.E.; Iwuoha, E.I.; Hato, M.J.; Modibane, K.D. Instrumental techniques for characterization of molybdenum disulphide nanostructures. J. Anal. Methods Chem. 2020, 2020, 8896698.
|
[71] |
Li, M.; Wang, D.M.; Shao, Z.L. Experimental study on changes of pore structure and mechanical properties of sandstone after high-temperature treatment using nuclear magnetic resonance. Eng. Geol. 2020, 275, 105739.
|
[72] |
Wang, J.L.; Dong, S.F.; Zhou, C.S.; Ashour, A.; Han, B.G. Investigating pore structure of nano-engineered concrete with low-field nuclear magnetic resonance. J. Mater. Sci. 2021, 56, 243–259.
|
[73] |
Leyva-Porras, C.; Cruz-Alcantar, P.; Espinosa-Solís, V.; Martínez-Guerra, E.; Balderrama, C.I.P.; Martínez, I.C.; Saavedra-Leos, M.Z. Application of differential scanning calorimetry (DSC) and modulated differential scanning calorimetry (MDSC) in food and drug industries. Polymers. 2020, 12, 5.
|
[74] |
Jendrzejewska, I.; Goryczka, T.; Pietrasik, E.; Klimontko, J.; Jampilek, J. X-ray and thermal analysis of selected drugs containing acetaminophen. Molecules. 2020, 25, 5909.
|
[75] |
Liu, H.W.; Ke, L. Measuring low-level porosity structures by using a non-destructive terahertz inspection system. Opt. Laser Technol. 2017, 94, 240–243.
|
[76] |
Lu, X.X.; Sun, H.H.; Chang, T.Y.; Zhang, J.; Cui, H.L. Terahertz detection of porosity and porous microstructure in pharmaceutical tablets: a review. Int. J. Pharm. 2020, 591, 120006.
|
[77] |
Anuschek, M.; Bawuah, P.; Zeitler, J.A. Terahertz time-domain spectroscopy for powder compact porosity and pore shape measurements: an error analysis of the anisotropic bruggeman model. Int. J. Pharm. X. 2021, 3, 100079.
|
[78] |
Slouf, M.; Skoupy, R.; Pavlova, E.; Krzyzanek, V. Powder nano-beam diffraction in scanning electron microscope: fast and simple method for analysis of nanoparticle crystal structure. Nanomaterials. 2021, 11, 962.
|
[79] |
Slouf, M.; Skoupy, R.; Pavlova, E.; Krzyzanek, V. High resolution powder electron diffraction in scanning electron microscopy. Materials. 2021, 14, 7550.
|
[80] |
Sun, C.; Lux, S.; Müller, E.; Meffert, M.; Gerthsen, D. Versatile application of a modern scanning electron microscope for materials characterization. J. Mater. Sci. 2020, 55, 13824–13835.
|
[81] |
Venkateshaiah, A.; Padil, V.V.T.; Nagalakshmaiah, M.; Waclawek, S.; Černík, M.; Varma, R.S. Microscopic techniques for the analysis of micro and nanostructures of biopolymers and their derivatives. Polymers. 2020, 12, 512.
|
[82] |
Sharma, S.; Jaiswal, S.; Duffy, B.; Jaiswal, A.K. Nanostructured materials for food applications: spectroscopy, microscopy and physical properties. Bioengineering. 2019, 6, 26.
|
[83] |
Chen, J.H.; Wang, Y.X.; Liu, J.; Xu, X.L. Preparation, characterization, physicochemical property and potential application of porous starch: a review. Int. J. Biol. Macromol. 2020, 148, 1169–1181.
|
[84] |
Ge, M.; Su, F.; Zhao, Z.; Su, D. Deep learning analysis on microscopic imaging in materials science. Mater. Today Nano. 2020, 11, 100087.
|
[85] |
Rauwel, P.; Küünal, S.; Ferdov, S.; Rauwel, E. A review on the green synthesis of silver nanoparticles and their morphologies studied via TEM. Adv. Mater. Sci. Eng. 2015, 2015, 682749.
|
[86] |
Obinu, A.; Gavini, E.; Rassu, G.; Riva, F.; Calligaro, A.; Bonferoni, M.C.; Maestri, M.; Giunchedi, P. Indocyanine green loaded polymeric nanoparticles: physicochemical characterization and interaction studies with caco-2 cell line by light and transmission electron microscopy. Nanomaterials. 2020, 10, 133.
|
[87] |
Oliyaei, N.; Moosavi-Nasab, M.; Tamaddon, A.M.; Fazaeli, M. Preparation and characterization of porous starch reinforced with halloysite nanotube by solvent exchange method. Int. J. Biol. Macromol. 2019, 123, 682–690.
|
[88] |
Ningsih, H.S.; Bakare, F.F.; Liu, Y.C.; Chou, Y.J. Preparation and characterization of spray-pyrolyzed porous SiO2 nanoparticles for low dielectric constant applications. J. Aust. Ceram. Soc. 2021, 57, 1301–1307.
|
[89] |
Song, W.D.; Zhang, X. The preparation and characteristics of febuxostat SiO2 solid dispersions. J. Chin. Pharm. Sci. 2014, 23, 463–470.
|
[90] |
Bunaciu, A.A.; Udriştioiu, E.G.; Aboul-Enein, H.Y. X-ray diffraction: instrumentation and applications. Crit. Rev. Anal. Chem. 2015, 45, 289–299.
|
[91] |
Takeuchi, I.; Shimakura, K.; Kuroda, H.; Nakajima, T.; Goto, S.; Makino, K. Estimation of crystallinity of nifedipine-polyvinylpyrrolidone solid dispersion by usage of terahertz time-domain spectroscopy and of X-ray powder diffractometer. J. Pharm. Sci. 2015, 104, 4307–4313.
|
[92] |
Cano-Chauca, M.; Stringheta, P.C.; Ramos, A.M.; Cal-Vidal, J. Effect of the carriers on the microstructure of mango powder obtained by spray drying and its functional characterization. Innov. Food Sci. Emerg. Technol. 2005, 6, 420–428.
|
[93] |
Dankar, I.; Haddarah, A.; Omar, F.E.L.; Pujolà, M.; Sepulcre, F. Characterization of food additive-potato starch complexes by FTIR and X-ray diffraction. Food Chem. 2018, 260, 7–12.
|
[94] |
Tishmack, P.A.; Bugay, D.E.; Byrn, S.R. Solid-state nuclear magnetic resonance spectroscopy-pharmaceutical applications. J. Pharm. Sci. 2003, 92, 441–474.
|
[95] |
Sulzer, D.; Cassidy, C.; Horga, G.; Kang, U.J.; Fahn, S.; Casella, L.; Pezzoli, G.; Langley, J.; Hu, X.P.; Zucca, F.A.; Isaias, I.U.; Zecca, L. Neuromelanin detection by magnetic resonance imaging (MRI) and its promise as a biomarker for Parkinson’s disease. NPJ Parkinsons Dis. 2018, 4, 11.
|
[96] |
Gaeta, M.; Cavallaro, M.; Vinci, S.L.; Mormina, E.; Blandino, A.; Marino, M.A.; Granata, F.; Tessitore, A.; Galletta, K.; D’Angelo, T.; Visalli, C. Magnetism of materials: theory and practice in magnetic resonance imaging. Insights Imaging. 2021, 12, 179.
|
[97] |
Dave, V.S.; Shahin, H.I.; Youngren-Ortiz, S.R.; Chougule, M.B.; Haware, R.V. Emerging technologies for the non-invasive characterization of physical-mechanical properties of tablets. Int. J. Pharm. 2017, 532, 299–312.
|
[98] |
Thrane, L.W.; Berglund, E.A.; Wilking, J.N.; Vodak, D.; Seymour, J.D. NMR relaxometry to characterize the drug structural phase in a porous construct. Mol. Pharm. 2018, 15, 2614–2620.
|
[99] |
Yang, F.Y.; Su, Y.C.; Zhu, L.; Brown, C.D.; Rosen, L.A.; Rosenberg, K.J. Rheological and solid-state NMR assessments of copovidone/clotrimazole model solid dispersions. Int. J. Pharm. 2016, 500, 20–31.
|
[100] |
Dahlberg, C.; Millqvist-Fureby, A.; Schuleit, M.; Furó, I. Relationships between solid dispersion preparation process, particle size and drug release: an NMR and NMR microimaging study. Eur. J. Pharm. Biopharm. 2010, 76, 311–319.
|
[101] |
Liu, L.; He, Z.; Cai, X.H.; Fu, S.J. Application of low-field NMR to the pore structure of concrete. Appl. Magn. Reson. 2021, 52, 15–31.
|
[102] |
Mao, Y.Q.; Xia, W.C.; Xie, G.Y.; Peng, Y.L. Rapid detection of the total moisture content of coal fine by low-field nuclear magnetic resonance. Measurement. 2020, 155, 107564.
|
[103] |
Xu, H.; Tang, D.Z.; Chen, Y.P.; Ming, Y.; Chen, X.Y.; Qu, H.X.; Yuan, Y.X.; Li, S.; Tao, S. Effective porosity in lignite using kerosene with low-field nuclear magnetic resonance. Fuel. 2018, 213, 158–163.
|
[104] |
Zhu, W.R.; Wang, X.; Chen, L.H. Rapid detection of peanut oil adulteration using low-field nuclear magnetic resonance and chemometrics. Food Chem. 2017, 216, 268–274.
|
[105] |
Cheng, S.S.; Wang, X.H.; Yang, H.M.; Lin, R.; Wang, H.T.; Tan, M.Q. Characterization of moisture migration of beef during refrigeration storage by low-field NMR and its relationship to beef quality. J. Sci. Food Agric. 2020, 100, 1940–1948.
|
[106] |
Ji, X.F.; Song, D.Y.; Zhao, H.T.; Li, Y.B.; He, K.K. Experimental analysis of pore and permeability characteristics of coal by low-field NMR. Appl. Sci. 2018, 8, 1374.
|
[107] |
Liang, Y.; Tan, Y.; Wang, F.; Luo, Y.; Zhao, Z. Improving permeability of coal seams by freeze-fracturing method: The characterization of pore structure changes under low-field NMR. Energy Rep. 2020, 6, 550–561.
|
[108] |
Lin, S.Y.; Yang, S.L.; Li, X.F.; Chen, F.; Zhang, M.D. Dynamics of water mobility and distribution in soybean antioxidant peptide powders monitored by LF-NMR. Food Chem. 2016, 199, 280–286.
|
[109] |
Vinod, K.R. Tailoring active compounds across biological membranes by cubosomal technology: an updated review. J. Chin. Pharm. Sci. 2013, 22, 303–313.
|
[110] |
Gao, M.; Wu, J.; Zhu, W.; Zhang, X.; Fan, W. The preparation and characterization of sustained-release solid dispersion of resveratrol by hot-melt extrusion technology. J. Chin. Pharm. Sci. 2023, 32, 165.
|
[111] |
Ibraheem, B.; Wagner, K.G. Influence of high pressure compaction on solubility and intrinsic dissolution of ibuprofen binary mixtures employing standard excipients. Int. J. Pharm. X. 2021, 3, 100075.
|
[112] |
Stofella, N.C.F.; Veiga, A.; Oliveira, L.J.; Montin, E.F.; Andreazza, I.F.; Carvalho Filho, M.A.S.; Bernardi, L.S.; Oliveira, P.R.; Murakami, F.S. Solid-state characterization of different crystalline forms of sitagliptin. Materials. 2019, 12, 2351.
|
[113] |
Xing, C.; Zhang, G.S.; Gong, N.B.; Du, G.H.; Lu, Y. New crystal forms and amorphous phase of sophoricoside: X-ray structures and characterization. R. Soc. Open Sci. 2019, 6, 181905.
|
[114] |
Markl, D.; Wang, P.; Ridgway, C.; Karttunen, A.P.; Chakraborty, M.; Bawuah, P.; Pääkkönen, P.; Gane, P.; Ketolainen, J.; Peiponen, K.E.; Zeitler, J.A. Characterization of the pore structure of functionalized calcium carbonate tablets by terahertz time-domain spectroscopy and X-ray computed microtomography. J. Pharm. Sci. 2017, 106, 1586–1595.
|
[115] |
Wang, J.; Zhang, J.; Chang, T.Y.; Cui, H.L. A comparative study of non-destructive evaluation of glass fiber reinforced polymer composites using terahertz, X-ray, and ultrasound imaging. Int. J. Precis. Eng. Manuf. 2019, 20, 963–972.
|
[116] |
Parrott, E.P.J.; Sun, Y.W.; Pickwell-MacPherson, E. Terahertz spectroscopy: its future role in medical diagnoses. J. Mol. Struct. 2011, 1006, 66–76.
|
[117] |
Yang, L.; Guo, T.X.; Zhang, X.; Cao, S.Y.; Ding, X.Q. Toxic chemical compound detection by terahertz spectroscopy: a review. Rev. Anal. Chem. 2018, 37, 20170021.
|
[118] |
Bawuah, P.; Zeitler, J.A. Advances in terahertz time-domain spectroscopy of pharmaceutical solids: A review. TrAC-Trend Anal. Chem. 2021, 139, 116272.
|
[119] |
Al-Sharabi, M.; Markl, D.; Mudley, T.; Bawuah, P.; Karttunen, A.P.; Ridgway, C.; Gane, P.; Ketolainen, J.; Peiponen, K.E.; Rades, T.; Zeitler, J.A. Simultaneous investigation of the liquid transport and swelling performance during tablet disintegration. Int. J. Pharm. 2020, 584, 119380.
|
[120] |
Moradikouchi, A.; Sparén, A.; Folestad, S.; Stake, J.; Rodilla, H. Terahertz frequency domain sensing for fast porosity measurement of pharmaceutical tablets. Int. J. Pharm. 2022, 618, 121579.
|
[1] | 卢晓静, 贾雪冬, 司方莹, 杨晰, 张婉, 尹钊. 药师主导的老年患者干预研究: 一项文献计量学分析[J]. 中国药学(英文版), 2024, 33(8): 751-765. |
[2] | 王可欣, 田胜男, 王佳, 靳瑾, 王婷婷, 张丽藏, 刘焕龙. 基于KAP理论的石家庄市区居民用药风险调查研究[J]. 中国药学(英文版), 2023, 32(9): 755-763. |
[3] | 刘文夏, 马俊, 杨照, 江滨. 中国仿制药替代影响因素分析——基于"4 + 7"带量采购精神科用药患者角度[J]. 中国药学(英文版), 2023, 32(4): 317-321. |
[4] | 彭词艳, 陈景, 李斯妮, 李健和, 彭六保. 后疫情时代中南地区脑卒中患者经济负担及影响因素研究[J]. 中国药学(英文版), 2022, 31(7): 545-555. |
[5] | 李佳乐, 杨艳, 黄兆耆, 莫小兰. 结合雌激素治疗幼女阴唇粘连的效果评价及影响因素分析[J]. 中国药学(英文版), 2021, 30(12): 976-985. |
[6] | 王壮飞, 管晓东, 周越, 韩晟, 姚鹏, 史录文. 中国中老年人自我药疗发生率及影响因素研究:基于CHARLS 2011年, 2013年和2015年的面板数据[J]. 中国药学(英文版), 2019, 28(6): 430-438. |
[7] | 刘疆燕, 李秀男, 张晓雪, 黄豪雁, 陈利清, 崔京浩, 曹青日. 改善双氯芬酸钾颗粒及胶囊剂稳定性的工艺优化研究[J]. 中国药学(英文版), 2018, 27(2): 82-91. |
[8] | 管晓东, 马莉莉, 王国英, 海沙尔江·吾守尔, 满春霞, 韩晟, 史录文. 中国2型糖尿病患者胰岛素注射笔用针头重复使用的影响因素研究[J]. 中国药学(英文版), 2018, 27(1): 51-58. |
[9] | 施亮, 王增, 俞婷婷, 夏亮. 慢性病及其治疗药物可能会影响肺癌患者术后5年生存率[J]. 中国药学(英文版), 2017, 26(2): 147-155. |
[10] | 侯甜甜, 王岩青, 田蕊, 张光鹏. 县级公立医院医生薪酬现状及其影响因素研究[J]. 中国药学(英文版), 2015, 24(7): 482-486. |
[11] | 潘妍*, 李英剑, 赵会英, 郝劲松, 郑俊民. 胰岛素壳聚糖纳米粒的制备及影响包封率因素的考察[J]. , 2002, 11(3): 97-100. |
阅读次数 | ||||||
全文 |
|
|||||
摘要 |
|
|||||