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Research Article

Characterization of Calcium Alginate Beads Containing Structurally Similar Drugs

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Pages 623-633 | Published online: 25 Sep 2008

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Huseyin Demircan & Rasim Alper Oral. (2023) Parameters affecting calcium-alginate bead characteristics: Viscosity of hydrocolloids and water solubility of core material. International Journal of Biological Macromolecules 236, pages 124011.
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Sumayha Muhammed Abbas, Muhammed Emad Abood & Rebwar Omar Hassan. (2022) Synthesis, characterization, and application of external gelation of sodium alginate nanoparticles in molecular imprinting for separation and drug delivery of tenoxicam. Chemical Papers 77:5, pages 2483-2494.
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Parneet Kaur Deol, Mandeep Singh, Garima Sharma & Indu Pal Kaur. 2023. Microbiome Therapeutics. Microbiome Therapeutics 477 499 .
Qiuyi Mao, Bowen Zhu, Hai Zhuang & Shoushan Bu. (2022) 3D-Printing Assisted SF-SA Based MgP Hybrid Hydrogel Scaffold for Bone Tissue Engineering. Frontiers in Materials 9.
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Abhishek Saxena, Bharti Mishra & Archana Tiwari. (2021) Development of diatom entrapped alginate beads and application of immobilized cells in aquaculture. Environmental Technology & Innovation 23, pages 101736.
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Setareh Gholamian, Moloud Nourani & Nafiseh Bakhshi. (2021) Formation and characterization of calcium alginate hydrogel beads filled with cumin seeds essential oil. Food Chemistry 338, pages 128143.
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Yiyu Wang, Sisi Fan, Yuwei Li, Chunqing Niu, Xiang Li, Yajin Guo, Junhua Zhang, Jian Shi & Xinyu Wang. (2020) Silk fibroin/sodium alginate composite porous materials with controllable degradation. International Journal of Biological Macromolecules 150, pages 1314-1322.
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Jordan Gulli, Peter Yunker & Frank Rosenzweig. (2019) Matrices (re)loaded: Durability, viability, and fermentative capacity of yeast encapsulated in beads of different composition during long‐term fed‐batch culture. Biotechnology Progress 36:1.
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F. Karp, L.N. Turino, D. Estenoz, G.R. Castro & G.A. Islan. (2019) Encapsulation of florfenicol by in situ crystallization into novel alginate-Eudragit RS® blended matrix for pH modulated release. Journal of Drug Delivery Science and Technology 54, pages 101241.
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Negar Mansouri, Said F. Al-Sarawi, Jagan Mazumdar & Dusan Losic. (2019) Advancing fabrication and properties of three-dimensional graphene–alginate scaffolds for application in neural tissue engineering. RSC Advances 9:63, pages 36838-36848.
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N. Ashammakhi, S. Ahadian, C. Xu, H. Montazerian, H. Ko, R. Nasiri, N. Barros & A. Khademhosseini. (2019) Bioinks and bioprinting technologies to make heterogeneous and biomimetic tissue constructs. Materials Today Bio 1, pages 100008.
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Ju Hun Yeon, Sung Hee Chung, Changyoon Baek, Hyundoo Hwang & Junhong Min. (2018) A Simple Pipetting-based Method for Encapsulating Live Cells into Multi-layered Hydrogel Droplets. BioChip Journal 12:3, pages 184-192.
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Houzhu Ding, Filippos Tourlomousis & Robert C. Chang. (2018) A Methodology for Quantifying Cell Density and Distribution in Multidimensional Bioprinted Gelatin–Alginate Constructs. Journal of Manufacturing Science and Engineering 140:5.
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Houzhu Ding, Filippos Tourlomousis & Robert C Chang. (2017) Bioprinting multidimensional constructs: a quantitative approach to understanding printed cell density and redistribution phenomena. Biomedical Physics & Engineering Express 3:3, pages 035016.
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Shu-Ling Huang & Yung-Sheng Lin. (2017) The Size Stability of Alginate Beads by Different Ionic Crosslinkers. Advances in Materials Science and Engineering 2017, pages 1-7.
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Mitulkumar A. Patel, Mohamed H.H. AbouGhaly, Jacqueline V. Schryer-Praga & Keith Chadwick. (2017) The effect of ionotropic gelation residence time on alginate cross-linking and properties. Carbohydrate Polymers 155, pages 362-371.
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Zhengjie Wu, Xin Su, Yuanyuan Xu, Bin Kong, Wei Sun & Shengli Mi. (2016) Bioprinting three-dimensional cell-laden tissue constructs with controllable degradation. Scientific Reports 6:1.
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Xiaohong Wang, Emad Tolba, Heinz C. Schröder, Meik Neufurth, Qingling Feng, Bärbel Diehl-Seifert & Werner E. G. Müller. (2014) Effect of Bioglass on Growth and Biomineralization of SaOS-2 Cells in Hydrogel after 3D Cell Bioprinting. PLoS ONE 9:11, pages e112497.
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Meik Neufurth, Xiaohong Wang, Heinz C. Schröder, Qingling Feng, Bärbel Diehl-Seifert, Thomas Ziebart, Renate Steffen, Shunfeng Wang & Werner E.G. Müller. (2014) Engineering a morphogenetically active hydrogel for bioprinting of bioartificial tissue derived from human osteoblast-like SaOS-2 cells. Biomaterials 35:31, pages 8810-8819.
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Ana P. Gomes, João F. Mano, João A. Queiroz & Isabel C. Gouveia. (2014) New biomaterial based on cotton with incorporated Biomolecules. Journal of Applied Polymer Science 131:15, pages n/a-n/a.
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Patricio Román Santagapita, María Florencia Mazzobre & María del Pilar Buera. (2012) Invertase stability in alginate beads. Food Research International 47:2, pages 321-330.
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A.K. Hussein & G. Fetih. (2011) Novel optimization of shape, swelling and release behaviors of tolmetin sodium loaded alginate microbeads. Journal of Drug Delivery Science and Technology 21:2, pages 165-174.
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P. Ferreira Almeida, J. Moita & A.J. Almeida. (2010) Electron microscope characterization of drug release from methacrylic acid-ethyl acrylate copolymer-coated cross-linked alginate-gelatine beads. Journal of Drug Delivery Science and Technology 20:3, pages 201-205.
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Zsófia Fenyvesi, Alíz Auner, Dirk Schmalz, Eszter Pásztor, Gabriella Csóka, Klára Gyires, Sylvia Marton, Imre Klebovich & István Antal. (2009) Preparation of pH-sensitive beads for NSAID using three-component gel systems. Journal of Pharmaceutical Sciences 98:11, pages 4285-4295.
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A. Bani-Jaber, K. Aideh, I. Hamdan & R. Maraqa. (2009) Drug-loaded casein beads: influence of different metal-types as cross-linkers and oleic acid as a plasticizer on some properties of the beads. Journal of Drug Delivery Science and Technology 19:2, pages 125-131.
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Jie Zhang, Xiaohui Li, Daijia Zhang & Zhilong Xiu. (2008) Encapsulation efficiency and release behaviors of bovine serum albumin loaded in alginate microspheres prepared by spraying. Journal of Applied Polymer Science 110:4, pages 2488-2497.
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