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Original Articles

Study of Different Delivery Modes of Chondroitin Sulfate Using Microspheres and Cryogel Scaffold for Application in Cartilage Tissue Engineering

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Pages 859-872 | Received 09 Sep 2013, Accepted 19 Jan 2014, Published online: 30 Jun 2014

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Zohreh Hadi Derakhshan, Behrad Shaghaghi, Mahta Padash Asl, Mohammad Majidi, Leila Ghazizadeh, Arash Chegini & Shahin Bonakdar. (2015) In Situ Forming Hydrogel Based on Chondroitin Sulfate–Hydroxyapatite for Bone Tissue Engineering. International Journal of Polymeric Materials and Polymeric Biomaterials 64:17, pages 919-926.
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Articles from other publishers (15)

Akanksha Pandey, Pramod Kumar Sharma, Rishabha Malviya & Kalpana Rahate. (2023) Pectin/Pectin Derivatives as Potential Scaffolds for the Tissue Engineering Applications. The Natural Products Journal 13:6.
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Aman Nikhil & Ashok Kumar. (2021) Evaluating potential of tissue‐engineered cryogels and chondrocyte derived exosomes in articular cartilage repair. Biotechnology and Bioengineering 119:2, pages 605-625.
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Gulshakhar Kudaibergen, Madina Zhunussova, Ellina A. Mun, Anar Arinova & Vyacheslav Ogay. (2021) Studying the Effect of Chondroitin Sulfate on the Physicochemical Properties of Novel Gelatin/Chitosan Biopolymer-Based Cryogels. Applied Sciences 11:21, pages 10056.
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Yujing He, Chunhua Wang, Chenzhi Wang, Yuanhang Xiao & Wei Lin. (2021) An Overview on Collagen and Gelatin-Based Cryogels: Fabrication, Classification, Properties and Biomedical Applications. Polymers 13:14, pages 2299.
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Irina N. Savina, Mohamed Zoughaib & Abdulla A. Yergeshov. (2021) Design and Assessment of Biodegradable Macroporous Cryogels as Advanced Tissue Engineering and Drug Carrying Materials. Gels 7:3, pages 79.
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Sarita Mishra & Munia Ganguli. (2021) Functions of, and replenishment strategies for, chondroitin sulfate in the human body. Drug Discovery Today 26:5, pages 1185-1199.
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Sarita Mishra, Betsy Reshma G, Simanti Pal, Subia Bano, Aanchal Gupta, Anupama Kumari & Munia Ganguli. (2021) Topical Application of Peptide–Chondroitin Sulfate Nanoparticles Allows Efficient Photoprotection in Skin. ACS Applied Materials & Interfaces 13:2, pages 2382-2398.
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Lihua Gu, Jinxia Zhang, Lei Li, Zhiyun Du, Qing Cai & Xiaoping Yang. (2019) Hydroxyapatite nanowire composited gelatin cryogel with improved mechanical properties and cell migration for bone regeneration. Biomedical Materials 14:4, pages 045001.
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Monireh Bakhshpour, Neslihan Idil, Işık Perçin & Adil Denizli. (2019) Biomedical Applications of Polymeric Cryogels. Applied Sciences 9:3, pages 553.
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María Puertas-Bartolomé, Lorena Benito-Garzón & Marta Olmeda-Lozano. 2018. Osteochondral Tissue Engineering. Osteochondral Tissue Engineering 327 355 .
Katherine R. Hixon, Tracy Lu & Scott A. Sell. (2017) A comprehensive review of cryogels and their roles in tissue engineering applications. Acta Biomaterialia 62, pages 29-41.
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Mei Liu, Xin Zeng, Chao Ma, Huan Yi, Zeeshan Ali, Xianbo Mou, Song Li, Yan Deng & Nongyue He. (2017) Injectable hydrogels for cartilage and bone tissue engineering. Bone Research 5:1.
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Sílvia Vieira, Alain da Silva Morais, Joana Silva‐Correia, J. Miguel Oliveira & Rui L. Reis. 2002. Encyclopedia of Polymer Science and Technology. Encyclopedia of Polymer Science and Technology 1 27 .
Ruchi Mishra, Sumrita Bhat & Ashok Kumar. 2016. Supermacroporous Cryogels. Supermacroporous Cryogels 219 254 .
Priyanka Dwivedi, Vijayashree Nayak & Meenal Kowshik. (2015) Role of gold nanoparticles as drug delivery vehicles for chondroitin sulfate in the treatment of osteoarthritis. Biotechnology Progress 31:5, pages 1416-1422.
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