Preparation and characterization of electrospun polylactic acid/sodium alginate/orange oyster shell composite nanofiber for biomedical application

Sümeyye Cesur1, Faik N. Oktar2, Nazmi Ekren3, Osman Kılıç4, Dilek Bilğiç Alkaya5, Serap Ayaz Seyhan5, Zeynep Ruya Ege6, Chun‐Cheng Lin7, Serap Erdem Kuruca8, Gökçe Erdemir9, Oğuzhan Gündüz1
1Center for Nanotechnology & Biomaterials Application and Research (NBUAM) at Marmara University and Faculty of Technology, Department of Metallurgical and Materials Engineering, Marmara University, Istanbul, Turkey
2Center for NBUAM and Department of Bioengineering, Faculty of Engineering, Marmara University, Istanbul, Turkey
3Center for NBUAM and Department of Electrical and Electronic Engineering, Faculty of Technology, Marmara University, Istanbul, Turkey
4Center for NBUAM and Department of Electrical and Electronics Engineering, Faculty of Engineering, Marmara University, Istanbul, Turkey
5Center for NBUAM and Department of Analytical Chemistry, Faculty of Pharmacy, Marmara University, Istanbul, Turkey
6Center for NBUAM and Department Biomedical Engineering, Faculty of Engineering, Istanbul University, Istanbul, Turkey
7Department of Chemical and Materials Engineering, Tunghai University, Taichung, Taiwan
8School of Medicine and Department of Physiology, Istanbul University, Istanbul, Turkey
9Department of Molecular Medicine, Aziz Sancar İnstitute of Experimental Medicine, İstanbul University, İstanbul, Turkey

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Balagangadharan, K., Dhivya, S., Selvamurugan, N.: Chitosan based nanofibers in bone tissue engineering. Int. J. Biol. Macromol. 104, 1372–1382 (2017)

Ferrone, M.L., Raut, C.P.: Modern surgical therapy: limb salvage and the role of amputation for extremity soft-tissue sarcomas. Surg. Oncol. Clin. N. Am. 21, 201–213 (2012)

Santoro, M., Shah, S.R., Walker, J.L., Mikos, A.G.: Poly (lactic acid) nano fibrous scaffolds for tissue engineering. Adv.Drug Deliv. Rev. 107, 206–212 (2016)

Liu, X., Holzwarth, J.M., Ma, P.X.: Functionalized synthetic biodegradable polymer scaffolds for tissue engineering. Macromol. Biosci. 12, 911–919 (2012)

Martinez, E., Engel, E., Planell, J.A., Samitier, J.: Effects of artificial micro- and nano-structured surfaces on cell behaviour. Ann. Anat. 191, 126–135 (2009)

Shelke, N., James, R., Laurencin, C., Kumbar, S.: Polysaccharide biomaterials for drug delivery and regenerative engineering. Polym. Adv. Technol. 25(5), 448–460 (2014)

Yang, J.M., Wang, N.C., Chiu, H.C.: Preparation and characterization of poly (vinyl alcohol)/sodium alginate blended membrane for alkaline solidpolymer electrolytes membrane. J. Membr. Sci. 457, 139–148 (2014)

Zhang, Y., Liu, J., Huang, L., Wang, Z., Wang, L.: Design and performance of a sericin-alginate interpenetrating network hydrogel for cell and drug delivery. Sci. Rep. 5, 12374 (2015)

Xua, W., Shenc, R., Yana, Y., Gao, J.: Preparation and characterization of electrospun alginate/PLA nanofibers as tissue engineering material by emulsion eletrospinning. J. Mech. Behav. Biomed. Mater. 65, 428–438 (2017)

Ginzberg, M.D., Bonshtein, I.G., Agbaria, R., Cohen, S.: Tissue Eng. 9, 757–763 (2003)

Paul, W., Sharma, C.P.: Trends. Biomater. Artif. Organ. 18, 18–23 (2004)

Nie, H., He, A., Zheng, J., Xu, S., Li, J., Han, C.: Effects of chain conformation and entanglement on the electrospinning of pure alginate. Biomacromolecules. 9(5), 1362–1365 (2008)

Safi, S., Morshed, M., Hosseini Ravandi, S.A., Ghiaci, M.: Study of electrospinning of sodium alginate, blended solutions of sodium alginate/poly (vinyl alcohol) and sodium alginate/poly (ethylene oxide). J. Appl. Polym. Sci. 104, 3245–3255 (2007)

Rasal, R.M., Janorkar, A.V., Hirt, D.E.: Poly(lacticacid) modifications. Prog. Polym. Sci. 35, 338–356 (2010)

Montjovent, M.O., Mathieu, L., Hinz, B.: Biocompatibility of bioresorbable poly (L-lactic acid) composite scaffolds obtained by supercritical gas foaming with human fetal bone cells. Tissue Eng. 11, 1640–1649 (2005)

Zhou, C.J., Shi, Q.F., Guo, W.H., Terrell, L., Qureshi, A.T., Hayes, D.J., Wu, Q.L.: Electrospun bionano composites caffolds for bone tissue engineering by cellulose nano crystals reinforcing malei can hydride grafted PLA. ACS Appl. Mater. Interfaces. 5, 3847–3854 (2013)

Casasola, R., Thomas, N.L., Trybala, A., Georgiadou, S.: Electrospun polylacticacid (PLA) fibres: effect of different solvent systems on fibremorphology and diameter. Polymer. 55, 4728–4737 (2014)

Kikuchi, M., Koyama, Y., Takakuda, K., Miyairi, H., Shirahama, N., Tanaka, J.: In vitro change in mechanical strength of β-tricalcium phosphate/copolymerized poly-Llactide composites and their application for guided bone regeneration. J. Biomed. Mater. Res. 62, 265–272 (2002)

Sionkowska, A.: Current research on the blends of natural and synthetic polymers as new biomaterials: review. Prog Polym Scı. 36, 1254–1276 (2011)

Macha, I.J., Ozyegin, L., Chou, J., Samur, R., Oktar, F., Ben- Nissan, B.: An alternative synthesis method for di calcium phosphate (monetite) powders from Mediterranean mussel (Mytilus galloprovincialis) shells. J. Aust. Ceram. Soc. 49(2), 122–128 (2013)

Kel, D., Gökçe, H., Bilgiç, D., Agaogulları, D., Duman, I., Öveçoğlu, M.L., Kayalı, E.S., Kıyıcı, I.A., Agathopoulos, S., Oktar, F.N.: Production of natural bioceramic from land snails. Key Eng. Mater. 493–494, 287–292 (2012). www.scientific.net/KEM.493-494.287

Macha, I.J., Ozyegin, L.S., Oktar, F.N., Ben-Nissan, B.: Conversion of ostrich eggshells (Struthio camelus) to calcium phosphates. J. Aust. Ceram. Soc. 51(1), 125–133 (2015)

Gunduz, O., Sahin, Y.M., Agathopoulos, S., Ben-Nissan, B., Oktar, F.N.: A new method for fabrication of nanohydroxyapatite and TCP from the sea snail Cerithium vulgatum. J. Nanomater. 6(2014). https://doi.org/10.1155/2014/382861

Woo, K.M., Jun, J.H., Chen, V.J., Seo, J., Baek, J.H., Ryoo, H.M., Kim, G.S.: Nano-fibrous scaffolding promotes osteoblast differentiation and biomineralization. Biomaterials. 28, 335–343 (2007)

Desai, K., Kit, K., Li, J. J., Davidson, P. M., Zivanovic, S., & Meyer, HNanofibrous chitosan non-wovens for filtration applications. Polymer. 50, 3661–3669 (2009)

Sambaer, W., Zatloukal, M., Kimmer, D.: 3D modeling of filtration process via polyurethane nanofiber based nonwoven filters prepared by electrospinning process. Chem. Eng. Sci. 66, 613–623 (2011)

Zhu, Y.C., Bando, Y., Xue, D.F., Sekiguchi, T., Golberg, D., Xu, F.F., Liu, Q.L.: New boron nitride whiskers: showing strong ultraviolet and visible light luminescence. J. Phys. Chem. B. 108(20), 6193–6196 (2004)

Bhardwaj, N., Kundu, S.C.: Electrospinning: a fascinating fiber fabrication technique. Biotechnol. Adv. 28, 325–347 (2010)

Mosmann, T.: Rapid colorimetric assay for cellular growth and survival: application to proliferation and cytotoxicity assays. J. Immunol. Methods. 65(1–2), 55–63 (1983)

Kalkandelen, C., Suleymanoglu, M., Kuruca, S.E., Akan, A., Oktar, F.N., Gunduz, O.: Part 2: biocompatibility evaluation of hydroxyapatite-based clinoptilolite and Al2O3 composites. J. Aust. Ceram. Soc. 53(1), 217–223 (2017)

Demir, M.M., Yilgor, I., Yilgor, E., Erman, B.: Electrospinning of polyurethanefiber. Polymer. 43, 3303–3309 (2002)

Tana, S.H., Inaia, R., Kotakib, M., Ramakrishna, S.: Systematic parameter study for ultra-fine fiber fabrication via electrospinning process. Polymer. 46, 6128–6134 (2005)

Zong, X.H., Kim, K., Fang, D.F., Ran, S.F., Hsiao, B.S., Chu, B.: Structure and process relationship of electrospun bioabsorbable nanofiber membranes. Polymer. 43, 4403 (2002)

Kim, H.S., Kim, K., Jin, H.J., Chin, I.J.: Morphological characterization of electrospun nano-fibrous membranes of biodegradable poly(L-lactide) and poly (lactideco- glycolide). Macromol. Symp. 224, 145 (2005)

Haghi, A.K., Akbari, M.: Trends in electrospinning of natural nanofibers. Phys. Status Solidi (A) Appl. Mater. Sci. 204, 1830–1834 (2007). https://doi.org/10.1002/pssa

Jiang, H.L., Fang, D.F., Hsiao, B.S., Chu, B., Chen, W.L.: Optimization and characterization of dextran membranes prepared by electrospinning. Biomacromolecules. 5, 326 (2004)

Huang, L., Nagapudi, K., Apkarian, R.P., Chaikof, E.L.: Engineered collagen-PEO nanofibers and fabrics. J. Biomater. Sci. Polym. Ed. 12, 979 (2001)

Shalumon, K.T., Anulekha, K.H., Nair, S.V., Nair, S.V., Chennazhi, K.P., Jayakumar, R.: Sodium alginate/poly (vinyl alcohol)/nano ZnO composite nanofibers for antibacterial wound dressings. Int. J. Biol. Macromol. 49, 247–254 (2011)

Zhang, C., Wang, L., Zhai, T., Wang, X., Dan, Y., Turng, L.S.: The surface grafting of graphene oxide with poly (ethylene glycol) as a reinforcement for poly(lactic acid) nanocomposite scaffolds for potential tissue engineering applications. J. Mech. Behav. Biomed. Mater. 53, 403–413 (2016). https://doi.org/10.1016/j.jmbbm.2015.08.043

Zheng, J., Yu, X., Wang, C., Cao, Z., Yang, H., Ma, D., Xu, X.: Facile synthesis of three-dimensional reinforced Sn@polyaniline/sodium alginate nanofiber hydrogel network for high performance lithium-ion battery. J. Mater. Sci. Mater. Electron. 27, 4457–4464 (2016). https://doi.org/10.1007/s10854-016-4317-8

Moreira, A.P.D., Sader, M.S., Soares, G.D.d.A., Leão, M.H.M.R.: Strontium incorporation on microspheres of alginate/β-tricalcium phosphate as delivery matrices. Mater. Res. 17(4), 967–973 (2014)

Pham, Q.P., Sharma, U., Mikos, A.G.: Electrospinning of polymeric nanofibers for tissue engineering applications: a review. Tissue Eng. 12(5), 1197–1211 (2006)

Fan, H.S., Wen, X.T., Tan, Y.F., Wang, R., Cao, H.D., Zhang, X.D.: Compare of electrospinning PLA and PLA/β-TCP scaffold in vitro. Mater. Sci. Forum. 475-479, 2379–2382 (2005)

Karacan, I., Gunduz, O., Ozyegin, L.S., Gökce, H., Ben-Nissan, B., Akyol, S., Oktar, F.N.: The natural nano-bioceramic powder production from organ pipe red coral (Tubipora musica) by a simple chemical conversion method. J. Aust. Ceram. Soc. 54, 317–329 (2018)

Gunduz, O., Sahin, Y.M., Agathopoulos, S., Ağaoğulları, D., Gökçe, H., Kayali, E.S., Aktas, C., Ben-Nissan, B., Oktar, F.N.: Nano calcium phosphate powder production through chemical agitation from Atlantic deer cowrie shells (Cypraea cervus Linnaeus). Key Eng. Mater. 587, 80–85 (2014)

Munteanu, B.S., Aytac, Z., Pricope, G.M., Uyar, T.: Polylactic acid (PLA)/silver-NP/VitaminE bionanocomposite electrospun nanofibers with antibacterial and antioxidant activity. J. Nanopart. Res. 16(10), 2643 (2014). https://doi.org/10.1007/s11051-014-2643-4

Venkatesan, J., Bhatnagar, I., Manivasagan, P., Kang, K.H., Kim, S.K.: Alginate composites for bone tissue engineering. Int. J. Biol. Macromol. 72, 269–281 (2015)

Hong, Z., Qiu, X., Sun, J., Deng, M., Chen, X., Jing, X.: Grafting polymerization of L-lactide on the surface of hydroxyapatite nanocrystals. Polymer. 45(19), 6699–6706 (2004)

Zhang, C.Y., Lu, H., Zhuang, Z., Wang, X.P., Fang, Q.F.: Nano-hydroxyapatite/poly (L-lactic acid) composite synthesized by a modified in situ precipitation: preparation and properties. J. Mater. Sci. Mater. Med. 21, 3077–3083 (2010). https://doi.org/10.1007/s10856-010-4161-y

Ma, H., Su, W., Tai, Z., Sun, D., Yan, X., Liu, B., Xue, Q.: Preparation and cytocompatibility of polylactic acid/hydroxyapatite/ graphene oxide nanocomposite fibrous membrane. 57(23), 3051–3058 (2012). https://doi.org/10.1007/s11434-012-5336-3

Venkatesan, J., Bhatnagar, I., Manivasagan, P., Kang, K.H., Kim, S.K.: Alginate composites for bone tissue engineering: a review. Int. J. Biol. Macromol. 72, 269–281 (2015)

Tajbakhsh, S., Hajiali, F.: A comprehensive study on the fabrication and properties of biocomposites of poly (lactic acid)/ceramics for bone tissue engineering. Mater. Sci. Eng. 70, 897–912 (2017)