238
Views
49
CrossRef citations to date
0
Altmetric
Articles

Novel biodegradable films and scaffolds of chitosan blended with poly(3-hydroxybutyrate)

Pages 1379-1394 | Published online: 02 Apr 2012

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (5)

Mohsen Asghari-Vostakolaei, Hamid Bahramian, Saeed Karbasi & Mohsen Setayeshmehr. (2023) Effects of decellularized extracellular matrix on Polyhydroxybutyrate electrospun scaffolds for cartilage tissue engineering. Polymer-Plastics Technology and Materials 62:6, pages 771-789.
Read now
Nupur Kumar, Dayananda Desagani, Girish Chandran, Narendra Nath Ghosh, Ganesh Karthikeyan, Sachin Waigaonkar & Anasuya Ganguly. (2018) Biocompatible agarose-chitosan coated silver nanoparticle composite for soft tissue engineering applications. Artificial Cells, Nanomedicine, and Biotechnology 46:3, pages 637-649.
Read now
M.I. Artsis, A.P. Bonartsev, A.L. Iordanskii, G.A. Bonartseva & G.E. Zaikov. (2012) Biodegradation and Medical Application of Microbial Poly(3-Hydroxybutyrate). Molecular Crystals and Liquid Crystals 555:1, pages 232-262.
Read now
M. I. Artsis, A. P. Bonartsev, A. L. Iordanskii, G. A. Bonartseva & G. E. Zaikov. (2010) Biodegradation and Medical Application of Microbial Poly(3-hydroxybutyrate). Molecular Crystals and Liquid Crystals 523:1, pages 21/[593]-49/[621].
Read now
GeorgeV. Franks, Belinda Moss & David Phelan. (2006) Chitosan tissue scaffolds by emulsion templating. Journal of Biomaterials Science, Polymer Edition 17:12, pages 1439-1450.
Read now

Articles from other publishers (44)

Samaneh Ghazal, Mahdi Mirzaee, Majid Darroudi, Zahra Sabouri & Sara Khadempir. (2024) Chitosan-based synthesis of silver-doped tungsten oxide nanoparticles and assessment of its cytotoxicity and photocatalytic performance. Journal of Photochemistry and Photobiology A: Chemistry 448, pages 115323.
Crossref
Joana Lobato Barbosa, Mariane Izabella Abreu de Melo, Pricila da Silva Cunha, Marcelo Coutinho de Miranda, Breno Rocha Barrioni, Cheisy Daiana Freitas Moreira, Andrea da Fonseca Ferreira, Rosa Maria Esteves Arantes, Marcos Augusto de Sá, Marivalda de Magalhães Pereira, Michele Angela Rodrigues, Silviene Novikoff, Dawidson Assis Gomes & Alfredo Miranda de Goes. (2023) Development of a membrane and a bilayer of chitosan, gelatin, and polyhydroxybutyrate to be used as wound dressing for the regeneration of rat excisional wounds. Journal of Biomedical Materials Research Part A 112:1, pages 82-98.
Crossref
C. Uitz Toalá, E. Prokhorov, G. Luna Barcenas, M.A. Hernández Landaverde, J.M. Yáñez Limón, J.J. Gervacio-Arciniega, O. Arias de Fuentes & A.M. Garay Tapia. (2023) Electrostrictive and piezoelectrical properties of chitosan-poly(3-hydroxybutyrate) blend films. International Journal of Biological Macromolecules 250, pages 126251.
Crossref
Yasamin Alikhasi Amnieh, Sepideh Ghadirian, Nayereh Mohammadi, Mohammad Shadkhast & Saeed Karbasi. (2023) Evaluation of the effects of chitosan nanoparticles on polyhydroxy butyrate electrospun scaffolds for cartilage tissue engineering applications. International Journal of Biological Macromolecules 249, pages 126064.
Crossref
Yulia V. Zhuikova, Vsevolod A. Zhuikov, Tatiana K. Makhina, Yuri M. Efremov, Nadezhda A. Aksenova, Peter S. Timashev, Garina A. Bonartseva & Valery P. Varlamov. (2023) Preparation and characterization of poly(3-hydroxybutyrate)/chitosan composite films using acetic acid as a solvent. International Journal of Biological Macromolecules, pages 125970.
Crossref
Anatoly Aleksandrovich Olkhov, Elena Evgenyevna Mastalygina, Vasily Andreevich Ovchinnikov, Alexander Sergeevich Kurnosov, Anatoly Anatolyevich Popov & Alexey Leonidovich Iordanskii. (2023) Biological and Oxidative Degradation of Ultrathin-Fibrous Nonwovens Based on Poly(lactic Acid)/Poly(3-Hydroxybutyrate) Blends. International Journal of Molecular Sciences 24:9, pages 7979.
Crossref
P. A. Povernov, L. S. Shibryaeva, L. R. Lusova & A. A. Popov. (2023) Modern polymer composite materials for bone surgery: Problems and prospects. Fine Chemical Technologies 17:6, pages 514-536.
Crossref
Yuliya Zhuikova, Vsevolod Zhuikov & Valery Varlamov. (2022) Biocomposite Materials Based on Poly(3-hydroxybutyrate) and Chitosan: A Review. Polymers 14:24, pages 5549.
Crossref
Marius Stelian Popa, Adriana Nicoleta Frone & Denis Mihaela Panaitescu. (2022) Polyhydroxybutyrate blends: A solution for biodegradable packaging?. International Journal of Biological Macromolecules 207, pages 263-277.
Crossref
Jiseon Kang & Seok Il Yun. (2022) Chitosan-reinforced PHB hydrogel and aerogel monoliths fabricated by phase separation with the solvent-exchange method. Carbohydrate Polymers 284, pages 119184.
Crossref
Demetres Briassoulis, Philippos Tserotas & Ioanna-Georgia Athanasoulia. (2021) Alternative optimization routes for improving the performance of poly(3-hydroxybutyrate) (PHB) based plastics. Journal of Cleaner Production 318, pages 128555.
Crossref
Emad M. Ahmed. (2021) Enhancing thermal, viscoelastic, and optical properties of biodegradable fullerene(C60)/agarose/chitosan composite films for biotechnology. Applied Physics A 127:6.
Crossref
Sundus Nida, J.A. Moses & C. Anandharamakrishnan. 2021. Advanced Green Materials. Advanced Green Materials 279 295 .
S. I. Magagula, M. Mohapi, J. S. Sefadi & M. J. Mochane. 2021. Microbial Polymers. Microbial Polymers 3 43 .
A.A. Sukhanova, A.E. Murzova, A.N. Boyandin, E.G. Kiselev, A.G. Sukovatyi, A.P. Kuzmin & A.V. Shabanov. (2020) Poly-3-hydroxybutyrate/chitosan composite films and nonwoven mats. International Journal of Biological Macromolecules 165, pages 2947-2956.
Crossref
Zulfiqar Ali Raza, Shanza Khalil & Sharjeel Abid. (2020) Recent progress in development and chemical modification of poly(hydroxybutyrate)-based blends for potential medical applications. International Journal of Biological Macromolecules 160, pages 77-100.
Crossref
Nagarajan Sakthiguru & Mohamed Aboobucker Sithique. (2020) Fabrication of bioinspired chitosan/gelatin/allantoin biocomposite film for wound dressing application. International Journal of Biological Macromolecules 152, pages 873-883.
Crossref
Russell A. Banta, Timothy W. Collins, Ricky Curley, John O'Connell, Paul W. Young, Justin D. Holmes & Eoin J. Flynn. (2020) Regulated phase separation in nanopatterned protein-polysaccharide thin films by spin coating. Colloids and Surfaces B: Biointerfaces 190, pages 110967.
Crossref
Larisa T. Volova, Evgeni I. Pugachev, Tatyana K. Riazanova, Irina F. Nefedova, Violetta V. Boltovskaya & Natalya A. Maksimenko. (2019) New approaches to the study of cell vital activity cultivated in different growing conditions with analysis of oxygen in the medium. Science and Innovations in Medicine 4:4, pages 68-72.
Crossref
Zulfiqar Ali Raza, Safa Noor & Shanza Khalil. (2019) Recent developments in the synthesis of poly(hydroxybutyrate) based biocomposites. Biotechnology Progress 35:5.
Crossref
Soruba Evangeline & T.B. Sridharan. (2019) Biosynthesis and statistical optimization of polyhydroxyalkanoate (PHA) produced by Bacillus cereus VIT-SSR1 and fabrication of biopolymer films for sustained drug release. International Journal of Biological Macromolecules 135, pages 945-958.
Crossref
Mohammad Hossein Mirmusavi, Parisa Zadehnajar, Dariush Semnani, Saeed Karbasi, Farnoosh Fekrat & Fariba Heidari. (2019) Evaluation of physical, mechanical and biological properties of poly 3-hydroxybutyrate-chitosan-multiwalled carbon nanotube/silk nano-micro composite scaffold for cartilage tissue engineering applications. International Journal of Biological Macromolecules 132, pages 822-835.
Crossref
Talita Goulart da Silva, Vinícius Guedes Gobbi, Bruna Nunes Teixeira, Tiago dos Santos Mendonça, Thassio Brandão Cubiça, Layla Ferraz Aquino, Jean Araújo das Neves Silva, Rossana Mara da Silva Moreira Thiré & Roberta Helena Mendonça. (2019) Mass Variation Rate, in Acidic Environment, of Polyhydroxybutyrate and Chitosan matrices with Potential Application as Controlled Drug Delivery System. Materials Research 22:suppl 1.
Crossref
Mudasir Ahmad, Kaiser Manzoor & Saiqa Ikram. 2019. Applications of Nanocomposite Materials in Dentistry. Applications of Nanocomposite Materials in Dentistry 307 317 .
Jayven Chee Chuan Yeo, Joseph K. Muiruri, Warintorn Thitsartarn, Zibiao Li & Chaobin He. (2018) Recent advances in the development of biodegradable PHB-based toughening materials: Approaches, advantages and applications. Materials Science and Engineering: C 92, pages 1092-1116.
Crossref
Daniele Silvestri, Stanisław Wacławek, Bartłomiej Sobel, Rafael Torres-Mendieta, Vít Novotný, Nhung H. A. Nguyen, Alena Ševců, Vinod V. T. Padil, Jana Müllerová, Martin Stuchlík, Marco Petrangeli PapiniMiroslav Černík & Rajender S. Varma. (2018) A poly(3-hydroxybutyrate)–chitosan polymer conjugate for the synthesis of safer gold nanoparticles and their applications. Green Chemistry 20:21, pages 4975-4982.
Crossref
Mohammad H. Mirmusavi, Saeed Karbasi, Dariush Semnani, Mohammad Rafienia & Anousheh Zargar Kharazi. (2018) Assessing the physical and mechanical properties of poly 3‐hydroxybutyrate‐chitosan‐multi‐walled carbon nanotube/silk nano–micro composite scaffold for long‐term healing tissue engineering applications. Micro & Nano Letters 13:6, pages 829-834.
Crossref
Priscilla B.S. Albuquerque & Carolina B. Malafaia. (2018) Perspectives on the production, structural characteristics and potential applications of bioplastics derived from polyhydroxyalkanoates. International Journal of Biological Macromolecules 107, pages 615-625.
Crossref
Nowsheen Goonoo, Archana Bhaw-Luximon, Pearl Passanha, Sandra Esteves, Holger Schönherr & Dhanjay Jhurry. (2017) Biomineralization potential and cellular response of PHB and PHBV blends with natural anionic polysaccharides. Materials Science and Engineering: C 76, pages 13-24.
Crossref
Maraolina Domínguez-Díaz, Angélica Meneses-Acosta, Angel Romo-Uribe, Carlos Peña, Daniel Segura & Guadalupe Espin. (2015) Thermo-mechanical properties, microstructure and biocompatibility in poly-β-hydroxybutyrates (PHB) produced by OP and OPN strains of Azotobacter vinelandii. European Polymer Journal 63, pages 101-112.
Crossref
E. Ten, L. Jiang, J. Zhang & M.P. Wolcott. 2015. Biocomposites. Biocomposites 39 52 .
C. Peña, T. Castillo, A. García, M. Millán & D. Segura. (2014) Biotechnological strategies to improve production of microbial poly‐(3‐hydroxybutyrate): a review of recent research work. Microbial Biotechnology 7:4, pages 278-293.
Crossref
Catherine Anne Woolnough, Lachlan Hartley Yee, Timothy Stuart Charlton & Leslie John Ray Foster. (2013) A Tuneable Switch for Controlling Environmental Degradation of Bioplastics: Addition of Isothiazolinone to Polyhydroxyalkanoates. PLoS ONE 8:10, pages e75817.
Crossref
Roberta Helena Mendonça, Taíla de Oliveira Meiga, Marysilvia Ferreira da Costa & Rossana Mara da Silva Moreira Thiré. (2013) Production of 3D scaffolds applied to tissue engineering using chitosan swelling as a porogenic agent. Journal of Applied Polymer Science 129:2, pages 614-625.
Crossref
M. Rennukka & A. A. Amirul. (2013) Fabrication of poly(3-hydroxybutyrate-co-4-hydroxybutyrate)/chitosan blend material: synergistic effects on physical, chemical, thermal and biological properties. Polymer Bulletin 70:6, pages 1937-1957.
Crossref
Yujung LeeJeongil KwonGilson KhangDongwon Lee. (2012) Reduction of Inflammatory Responses and Enhancement of Extracellular Matrix Formation by Vanillin-Incorporated Poly(Lactic- co -Glycolic Acid) Scaffolds . Tissue Engineering Part A 18:19-20, pages 1967-1978.
Crossref
Sujin Kim, Yujung Lee, Hyunjin Park, Donghyun Hong, Gilson Khang & Dongwon Lee. (2011) Reduced inflammatory responses to poly(lactic-co-glycolic acid) by the incorporation of hydroxybenzyl alcohol releasing polyoxalate. Macromolecular Research 19:12, pages 1242-1249.
Crossref
Yiseul Song, Jungil Kwon, Byungkuk Kim, Yuyong Jeon, Gilson Khang & Dongwon Lee. (2011) Physicobiological properties and biocompatibility of biodegradable poly(oxalate‐co‐oxamide). Journal of Biomedical Materials Research Part A 98A:4, pages 517-526.
Crossref
Svetlana Z. Rogovina, Christine V. Alexanyan & Eduard V. Prut. (2011) Biodegradable blends based on chitin and chitosan: Production, structure, and properties. Journal of Applied Polymer Science 121:3, pages 1850-1859.
Crossref
Jun Yang, Zhiwen Yao, Changyu Tang, B.W. Darvell, Hualin Zhang, Lingzhan Pan, Jingsong Liu & Zhiqing Chen. (2009) Growth of apatite on chitosan-multiwall carbon nanotube composite membranes. Applied Surface Science 255:20, pages 8551-8555.
Crossref
Cheng Chen & Lisong Dong. 2008. Biodegradable Polymer Blends and Composites from Renewable Resources. Biodegradable Polymer Blends and Composites from Renewable Resources 227 237 .
Gundela Peschel, Hans-Martin Dahse, Anke Konrad, Gerhard Dieter Wieland, Peter-Juergen Mueller, David P. Martin & Martin Roth. (2008) Growth of keratinocytes on porous films of poly(3-hydroxybutyrate) and poly(4-hydroxybutyrate) blended with hyaluronic acid and chitosan. Journal of Biomedical Materials Research Part A 85A:4, pages 1072-1081.
Crossref
Marguerite Rinaudo. (2008) Main properties and current applications of some polysaccharides as biomaterials. Polymer International 57:3, pages 397-430.
Crossref
Lijun Kong, Yuan Gao, Guangyuan Lu, Yandao Gong, Nanming Zhao & Xiufang Zhang. (2006) A study on the bioactivity of chitosan/nano-hydroxyapatite composite scaffolds for bone tissue engineering. European Polymer Journal 42:12, pages 3171-3179.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.