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Articles

Response of Human Mesenchymal Stem Cells (hMSCs) to the Topographic Variation of Poly(3-Hydroxybutyrate-co-3-Hydroxyhexanoate) (PHBHHx) Films

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Pages 1-26 | Published online: 13 Apr 2012

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Tatiana G. Volova, Aleksey V. Demidenko, Anastasiya V. Murueva, Alexey E. Dudaev, Ivan Nemtsev & Ekaterina I. Shishatskaya. (2023) Biodegradable Polyhydroxyalkanoates Formed by 3- and 4-Hydroxybutyrate Monomers to Produce Nanomembranes Suitable for Drug Delivery and Cell Culture. Technologies 11:4, pages 106.
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Luisa Nathalia Fonseca, Santiago Bolívar-Moná, Tatiana Agudelo, Liz Daniela Beltrán, Daniel Camargo, Nestor Correa, María Alexandra Del Castillo, Sebastián Fernández de Castro, Valeria Fula, Gabriela García, Natalia Guarnizo, Valentina Lugo, Liz Mariana Martínez, Verónica Melgar, María Clara Peña, Wilfran Arbey Pérez, Nicolás Rodríguez, Andrés Pinzón, Sonia Luz Albarracín, Mercedes Olaya & María Lucía Gutiérrez-Gómez. (2023) Cell surface markers for mesenchymal stem cells related to the skeletal system: A scoping review. Heliyon 9:2, pages e13464.
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Hui Jia Tang, Soon Zher Neoh & Kumar Sudesh. (2022) A review on poly(3-hydroxybutyrate-co-3-hydroxyhexanoate) [P(3HB-co-3HHx)] and genetic modifications that affect its production. Frontiers in Bioengineering and Biotechnology 10.
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Ekaterina I. Shishatskaya, Alexey E. Dudaev & Tatiana G. Volova. (2022) Resorbable Nanomatrices from Microbial Polyhydroxyalkanoates: Design Strategy and Characterization. Nanomaterials 12:21, pages 3843.
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Valentina Volpini, Alberto Giubilini, Lorenzo Corsi, Andrea Nobili & Federica Bondioli. (2022) Characterization of biocompatible scaffolds manufactured by fused filament fabrication of poly(3-hydroxybutyrate- co -3-hydroxyhexanoate) . Royal Society Open Science 9:4.
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Alberto Giubilini, Federica Bondioli, Massimo Messori, Gustav Nyström & Gilberto Siqueira. (2021) Advantages of Additive Manufacturing for Biomedical Applications of Polyhydroxyalkanoates. Bioengineering 8:2, pages 29.
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Shaik Ling Ang, Ramamoorthi Sivashankari, Bakiah Shaharuddin, Jo-Ann Chuah, Takeharu Tsuge, Hideki Abe & Kumar Sudesh. (2020) Potential Applications of Polyhydroxyalkanoates as a Biomaterial for the Aging Population. Polymer Degradation and Stability 181, pages 109371.
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Shaik Ling Ang, Bakiah Shaharuddin, Jo-Ann Chuah & Kumar Sudesh. (2020) Electrospun poly(3-hydroxybutyrate-co-3-hydroxyhexanoate)/silk fibroin film is a promising scaffold for bone tissue engineering. International Journal of Biological Macromolecules 145, pages 173-188.
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Dario Puppi, Gianni Pecorini & Federica Chiellini. (2019) Biomedical Processing of Polyhydroxyalkanoates. Bioengineering 6:4, pages 108.
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Vera Voinova, Garina Bonartseva & Anton Bonartsev. (2019) Effect of poly(3-hydroxyalkanoates) as natural polymers on mesenchymal stem cells. World J Stem Cells 11:10, pages 764-786.
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Mohamed A. A. Mahdy. (2018) Skeletal muscle fibrosis: an overview. Cell and Tissue Research 375:3, pages 575-588.
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Kajal Ghosal, Christian Agatemor, Zdenko Špitálsky, Sabu Thomas & Erich Kny. (2019) Electrospinning tissue engineering and wound dressing scaffolds from polymer-titanium dioxide nanocomposites. Chemical Engineering Journal 358, pages 1262-1278.
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TianDing Shen, Kai Gao, Yong Miao & ZhiQi Hu. (2017) Exogenous growth factors enhance the expression of cola1, cola3, and Elastin in fibroblasts via activating MAPK signaling pathway. Molecular and Cellular Biochemistry 442:1-2, pages 203-210.
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Chao-Ling Yao, Jian-Haw Chen & Cheng-Hung Lee. (2017) Effects of various monomers and micro-structure of polyhydroxyalkanoates on the behavior of endothelial progenitor cells and endothelial cells for vascular tissue engineering. Journal of Polymer Research 25:3.
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Kayla Belanger, Tony M. Dinis, Sami Taourirt, Guillaume Vidal, David L. Kaplan & Christopher Egles. (2016) Recent Strategies in Tissue Engineering for Guided Peripheral Nerve Regeneration. Macromolecular Bioscience 16:4, pages 472-481.
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Qian Wang, Yaqi Luan, Xuelian Cheng, Qianqian Zhuang & Qingsheng Qi. (2015) Engineering of Escherichia coli for the biosynthesis of poly(3-hydroxybutyrate-co-3-hydroxyhexanoate) from glucose. Applied Microbiology and Biotechnology 99:6, pages 2593-2602.
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H.M. Chang, Z.H. Wang, H.N. Luo, M. Xu, X.Y. Ren, G.X. Zheng, B.J. Wu, X.H. Zhang, X.Y. Lu, F. Chen, X.H. Jing & L. Wang. (2014) Poly(3-hydroxybutyrate-co-3-hydroxyhexanoate)-based scaffolds for tissue engineering. Brazilian Journal of Medical and Biological Research 47:7, pages 533-539.
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Michel Klein Gunnewiek, Edmondo M. Benetti, Andrea Di Luca, Clemens A. van Blitterswijk, Lorenzo Moroni & G. Julius Vancso. (2013) Thin Polymer Brush Decouples Biomaterial’s Micro-/Nanotopology and Stem Cell Adhesion. Langmuir 29:45, pages 13843-13852.
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Yuchun Liu, Jing Lim & Swee-Hin Teoh. (2013) Review: Development of clinically relevant scaffolds for vascularised bone tissue engineering. Biotechnology Advances 31:5, pages 688-705.
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Elena Korina, Olya Stoilova, Nevena Manolova & Iliya Rashkov. (2013) Multifunctional Hybrid Materials From Poly(3‐Hydroxybutyrate), TiO 2 Nanoparticles, and Chitosan Oligomers by Combining Electrospinning/Electrospraying and Impregnation . Macromolecular Bioscience 13:6, pages 707-716.
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Qiang Peng, Yong-Jie Yang, Ting Zhang, Cheng-Yu Wu, Qin Yang, Xun Sun, Tao Gong, Ling Zhang & Zhi-Rong Zhang. (2012) The Implantable and Biodegradable PHBHHx 3D Scaffolds Loaded with Protein-Phospholipid Complex for Sustained Delivery of Proteins. Pharmaceutical Research 30:4, pages 1077-1085.
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