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Volumn 10, Issue 12, 2015, Pages 1847-1861

Bacterial cellulose composites: Synthetic strategies and multiple applications in bio-medical and electro-conductive fields

Author keywords

Bacterial cellulose; Biomedical; Composites; Optoelectronics; Synthetic strategies

Indexed keywords

ARTIFICIAL ORGANS; BIOCOMPATIBILITY; BIOMATERIALS; BIOMEDICAL EQUIPMENT; CELLULOSE; COMPOSITE MATERIALS; NANOMAGNETICS; OPTOELECTRONIC DEVICES;

EID: 84951570654     PISSN: 18606768     EISSN: 18607314     Source Type: Journal    
DOI: 10.1002/biot.201500106     Document Type: Article
Times cited : (150)

References (91)
  • 1
    • 84893077370 scopus 로고    scopus 로고
    • Synthesis of regenerated bacterial cellulose-zinc oxide nanocomposite films for biomedical applications.
    • Ul-Islam, M., Khattak, W. A., Ullah, M. W., Khan, S. et al., Synthesis of regenerated bacterial cellulose-zinc oxide nanocomposite films for biomedical applications. Cellulose 2014, 21, 433-447.
    • (2014) Cellulose , vol.21 , pp. 433-447
    • Ul-Islam, M.1    Khattak, W.A.2    Ullah, M.W.3    Khan, S.4
  • 2
    • 84911385151 scopus 로고    scopus 로고
    • Bacterial cellulose production and its industrial applications.
    • Keshk, S. M. A. S., Bacterial cellulose production and its industrial applications. J. Bioproces Biotechniq. 2014, 4, 1-10.
    • (2014) J. Bioproces Biotechniq. , vol.4 , pp. 1-10
    • Keshk, S.M.A.S.1
  • 3
    • 84921968084 scopus 로고    scopus 로고
    • Bacterial cellulose-titanium dioxide nanocomposites: Nanostructural characteristics, antibacterial mechanism, and biocompatibility.
    • Khan, S., Ul-Islam, M., Khattak, W. A., Ullah, M. W. et al., Bacterial cellulose-titanium dioxide nanocomposites: Nanostructural characteristics, antibacterial mechanism, and biocompatibility. Cellulose 2015, 22, 565-579.
    • (2015) Cellulose , vol.22 , pp. 565-579
    • Khan, S.1    Ul-Islam, M.2    Khattak, W.A.3    Ullah, M.W.4
  • 4
    • 84899429653 scopus 로고    scopus 로고
    • A novel biomaterial: Bacterial cellulose and its new era applications.
    • Mohite, B. V., Patil, S. V., A novel biomaterial: Bacterial cellulose and its new era applications. Biotechnol. Appl. Biochem. 2014, 61, 101-110.
    • (2014) Biotechnol. Appl. Biochem. , vol.61 , pp. 101-110
    • Mohite, B.V.1    Patil, S.V.2
  • 5
    • 84867895010 scopus 로고    scopus 로고
    • Effects of glucuronic acid oligomers on the production, structure and properties of bacterial cellulose.
    • Ul-Islam, M., Jung, H. H., Khan, T., Park, J. K., Effects of glucuronic acid oligomers on the production, structure and properties of bacterial cellulose. Carbohydr. Polym. 2013, 92, 360-366.
    • (2013) Carbohydr. Polym. , vol.92 , pp. 360-366
    • Ul-Islam, M.1    Jung, H.H.2    Khan, T.3    Park, J.K.4
  • 6
    • 84862807722 scopus 로고    scopus 로고
    • Water holding and release properties of bacterial cellulose obtained by in situ and ex situ modification.
    • Ul-Islam, M., Khan, T., Park, J. K., Water holding and release properties of bacterial cellulose obtained by in situ and ex situ modification. Carbohydr. Polym. 2012, 88, 596-603.
    • (2012) Carbohydr. Polym. , vol.88 , pp. 596-603
    • Ul-Islam, M.1    Khan, T.2    Park, J.K.3
  • 7
    • 84861639989 scopus 로고    scopus 로고
    • Nanoreinforced bacterial cellulose-montmorillonite composites for biomedical applications.
    • Ul-Islam, M., Khan, T., Park, J. K., Nanoreinforced bacterial cellulose-montmorillonite composites for biomedical applications. Carbohydr. Polym. 2012, 89, 1189-1197.
    • (2012) Carbohydr. Polym. , vol.89 , pp. 1189-1197
    • Ul-Islam, M.1    Khan, T.2    Park, J.K.3
  • 8
    • 84884696728 scopus 로고    scopus 로고
    • Overview of bacterial cellulose composites: A multipurpose advanced material.
    • Shah, N., Ul-Islam, M., Khattak, W. A., Park, J. K., Overview of bacterial cellulose composites: A multipurpose advanced material. Carbohydr. Polym. 2013, 98, 1585-1598.
    • (2013) Carbohydr. Polym. , vol.98 , pp. 1585-1598
    • Shah, N.1    Ul-Islam, M.2    Khattak, W.A.3    Park, J.K.4
  • 9
    • 84903828542 scopus 로고    scopus 로고
    • Organic solar cells based on conjugated polymers: History and recent advances.
    • Kim, H., Nam, S., Jeong, J., Lee, S. et al., Organic solar cells based on conjugated polymers: History and recent advances. Korean J. Chem. Eng. 2014, 31, 1095-1104.
    • (2014) Korean J. Chem. Eng. , vol.31 , pp. 1095-1104
    • Kim, H.1    Nam, S.2    Jeong, J.3    Lee, S.4
  • 10
    • 84888819665 scopus 로고    scopus 로고
    • Characterization of crystalline cellulose in biomass: Basic principles, applications, and limitations of XRD, NMR, IR, Raman, and SFG.
    • Kim, S. H., Lee, C. M., Kafle, K., Characterization of crystalline cellulose in biomass: Basic principles, applications, and limitations of XRD, NMR, IR, Raman, and SFG. Korean J. Chem. Eng. 2013, 30, 2127-2141.
    • (2013) Korean J. Chem. Eng. , vol.30 , pp. 2127-2141
    • Kim, S.H.1    Lee, C.M.2    Kafle, K.3
  • 11
    • 84897573130 scopus 로고    scopus 로고
    • Synthesis and characterization of polyurethane/bentonite nanoclay based nanocomposites using toluene diisocyanate.
    • Fiayyaz, M., Zia, K. M., Zuber, M., Jamil, T. et al., Synthesis and characterization of polyurethane/bentonite nanoclay based nanocomposites using toluene diisocyanate. Korean J. Chem. Eng. 2014, 31, 644-649.
    • (2014) Korean J. Chem. Eng. , vol.31 , pp. 644-649
    • Fiayyaz, M.1    Zia, K.M.2    Zuber, M.3    Jamil, T.4
  • 12
    • 34250351881 scopus 로고    scopus 로고
    • Effect of addition of sodium alginate on bacterial cellulose production by Acetobacter xylinum.
    • Zhou, L. L., Sun, D. P., Hu, L. Y., Li, Y. W. et al., Effect of addition of sodium alginate on bacterial cellulose production by Acetobacter xylinum. J. Ind. Microbiol. Biotechnol. 2007, 34, 483-489.
    • (2007) J. Ind. Microbiol. Biotechnol. , vol.34 , pp. 483-489
    • Zhou, L.L.1    Sun, D.P.2    Hu, L.Y.3    Li, Y.W.4
  • 13
    • 84859179159 scopus 로고    scopus 로고
    • In situ nano-assembly of bacterial cellulose-polyaniline composites.
    • Shi, Z., Zang, S., Jiang, F., Huang, L. et al., In situ nano-assembly of bacterial cellulose-polyaniline composites. RSC Adv. 2012, 2, 1040-1046.
    • (2012) RSC Adv. , vol.2 , pp. 1040-1046
    • Shi, Z.1    Zang, S.2    Jiang, F.3    Huang, L.4
  • 14
    • 24644517577 scopus 로고    scopus 로고
    • Microbial cellulose - the natural power to heal wounds.
    • Czaja, W., Krystynowicz, A., Bielecki, S., Brown, R. J., Microbial cellulose - the natural power to heal wounds. Biomaterials 2006, 27, 145-151.
    • (2006) Biomaterials , vol.27 , pp. 145-151
    • Czaja, W.1    Krystynowicz, A.2    Bielecki, S.3    Brown, R.J.4
  • 15
    • 33846410643 scopus 로고    scopus 로고
    • The future prospects of microbial cellulose in biomedical applications.
    • Czaja, W., Young, D. J., Kawechi, M., Brown, R. M., The future prospects of microbial cellulose in biomedical applications. Biomacromolecules 2007, 8, 1-12.
    • (2007) Biomacromolecules , vol.8 , pp. 1-12
    • Czaja, W.1    Young, D.J.2    Kawechi, M.3    Brown, R.M.4
  • 16
    • 84879485117 scopus 로고    scopus 로고
    • Electrically conductive bacterial cellulose composite membranes produced by the incorporation of graphite nanoplatelets in pristine bacterial cellulose membranes.
    • Zhou, T., Chen, D., Jiu, J., Nge, T. T. et al., Electrically conductive bacterial cellulose composite membranes produced by the incorporation of graphite nanoplatelets in pristine bacterial cellulose membranes. eXPRESS Polym. Lett. 2013, 7, 756-766.
    • (2013) eXPRESS Polym. Lett. , vol.7 , pp. 756-766
    • Zhou, T.1    Chen, D.2    Jiu, J.3    Nge, T.T.4
  • 17
    • 77954090071 scopus 로고    scopus 로고
    • Physicochemical and mechanical characterization of bacterial cellulose produced with an excellent productivity in static conditions using a simple fed-batch cultivation strategy.
    • Shezad, O., Khan, S., Khan, T., Park, J. K., Physicochemical and mechanical characterization of bacterial cellulose produced with an excellent productivity in static conditions using a simple fed-batch cultivation strategy. Carbohydr. Polym. 2010, 82, 173-180.
    • (2010) Carbohydr. Polym. , vol.82 , pp. 173-180
    • Shezad, O.1    Khan, S.2    Khan, T.3    Park, J.K.4
  • 19
    • 49149128334 scopus 로고    scopus 로고
    • Biosynthesis of bacterial cellulose/multi-walled carbon nanotubes in agitated culture.
    • Yan, Z., Chen, S., Wang, H., Wang, B., Jiang, J., Biosynthesis of bacterial cellulose/multi-walled carbon nanotubes in agitated culture. Carbohydr. Polym. 2008, 74, 659-665.
    • (2008) Carbohydr. Polym. , vol.74 , pp. 659-665
    • Yan, Z.1    Chen, S.2    Wang, H.3    Wang, B.4    Jiang, J.5
  • 20
    • 77955598978 scopus 로고    scopus 로고
    • Observation of symmetrical reflection sidebands in a silica suspended-core fiber Bragg grating.
    • Tse, M. L., Chung, K. M., Dong, L., Thomas, B. K. et al., Observation of symmetrical reflection sidebands in a silica suspended-core fiber Bragg grating. Opt. Express 2010, 18, 17373-17381.
    • (2010) Opt. Express , vol.18 , pp. 17373-17381
    • Tse, M.L.1    Chung, K.M.2    Dong, L.3    Thomas, B.K.4
  • 21
    • 21144467987 scopus 로고
    • Bacterial cellulose I. Two-stage fermentation process for cellulose production by Acetobacter aceti.
    • Okiyama, A., Shirae, H., Kano, H., Yamanaka, S., Bacterial cellulose I. Two-stage fermentation process for cellulose production by Acetobacter aceti. Food Hydrocolloids 1992b, 6, 471-477.
    • (1992) Food Hydrocolloids , vol.6 , pp. 471-477
    • Okiyama, A.1    Shirae, H.2    Kano, H.3    Yamanaka, S.4
  • 22
    • 77955159346 scopus 로고    scopus 로고
    • Formation and characterization of spherelike bacterial cellulose particles produced by Acetobacter xylinum JCM 9730 strain.
    • Hu, Y., Catchmark, J. M., Formation and characterization of spherelike bacterial cellulose particles produced by Acetobacter xylinum JCM 9730 strain. Biomacromolecules 2010, 11, 1727-1734.
    • (2010) Biomacromolecules , vol.11 , pp. 1727-1734
    • Hu, Y.1    Catchmark, J.M.2
  • 23
    • 0347724005 scopus 로고    scopus 로고
    • Cellulose production by Gluconacetobacter hansenii in a medium containing ethanol.
    • Park, J. K., Jung, J. Y., Park, Y. H., Cellulose production by Gluconacetobacter hansenii in a medium containing ethanol. Biotechnol. Lett. 2003, 25, 2055-2059.
    • (2003) Biotechnol. Lett. , vol.25 , pp. 2055-2059
    • Park, J.K.1    Jung, J.Y.2    Park, Y.H.3
  • 24
    • 0036739565 scopus 로고    scopus 로고
    • Influence of broth exchange ratio on bacterial cellulose production by repeated-batch culture.
    • Naritomi, T., Kouda, T., Yano, H., Yoshinaga, F. et al., Influence of broth exchange ratio on bacterial cellulose production by repeated-batch culture. Process Biochem. 2002, 38, 41-47.
    • (2002) Process Biochem. , vol.38 , pp. 41-47
    • Naritomi, T.1    Kouda, T.2    Yano, H.3    Yoshinaga, F.4
  • 25
    • 0030726610 scopus 로고    scopus 로고
    • Production of bacterial cellulose by Acetobacter xylinum with an air-lift reactor.
    • Chao, Y. P., Sugano, Y., Kouda, T., Yoshinaga, F. et al., Production of bacterial cellulose by Acetobacter xylinum with an air-lift reactor. Biotechnol. Tech. 1997, 11, 829-832.
    • (1997) Biotechnol. Tech. , vol.11 , pp. 829-832
    • Chao, Y.P.1    Sugano, Y.2    Kouda, T.3    Yoshinaga, F.4
  • 26
    • 0034607822 scopus 로고    scopus 로고
    • Bacterial cellulose production by Acetobacter xylinum in a 50-L internal-loop airlift reactor.
    • Chao, Y. P., Ishida, T., Sugano, Y., Shoda, M., Bacterial cellulose production by Acetobacter xylinum in a 50-L internal-loop airlift reactor. Biotechnol. Bioeng. 2000, 68, 345-352.
    • (2000) Biotechnol. Bioeng. , vol.68 , pp. 345-352
    • Chao, Y.P.1    Ishida, T.2    Sugano, Y.3    Shoda, M.4
  • 27
    • 34249888171 scopus 로고    scopus 로고
    • Production of bacterial cellulose by Gluconacetobacter hansenii using a novel bioreactor equipped with a spin filter.
    • Jung, J. Y., Khan, T., Park, J. K., Chang, H. N., Production of bacterial cellulose by Gluconacetobacter hansenii using a novel bioreactor equipped with a spin filter. Korean. J. Chem. Eng. 2007, 24, 265-271.
    • (2007) Korean. J. Chem. Eng. , vol.24 , pp. 265-271
    • Jung, J.Y.1    Khan, T.2    Park, J.K.3    Chang, H.N.4
  • 29
    • 84864703427 scopus 로고    scopus 로고
    • Enhanced production of bacterial cellulose by using a biofilm reactor and its material property analysis.
    • Cheng, K. C., Catchmark, J. M., Demirci, A., Enhanced production of bacterial cellulose by using a biofilm reactor and its material property analysis. J. Biol. Eng. 2009, 3, 12-21.
    • (2009) J. Biol. Eng. , vol.3 , pp. 12-21
    • Cheng, K.C.1    Catchmark, J.M.2    Demirci, A.3
  • 30
    • 37849052493 scopus 로고    scopus 로고
    • Impregnation of silver nanoparticles into bacterial cellulose for antimicrobial wound dressing.
    • Maneerung, T., Tokura, S., Rujiravanit, R., Impregnation of silver nanoparticles into bacterial cellulose for antimicrobial wound dressing. Carbohydr. Polym. 2007, 72, 43-51.
    • (2007) Carbohydr. Polym. , vol.72 , pp. 43-51
    • Maneerung, T.1    Tokura, S.2    Rujiravanit, R.3
  • 31
    • 79961029323 scopus 로고    scopus 로고
    • Effect of chitosan penetration on physico-chemical and mechanical properties of bacterial cellulose.
    • Ul-Islam, M., Shah, N., Ha, J. H., Park, J. K., Effect of chitosan penetration on physico-chemical and mechanical properties of bacterial cellulose. Korean. J. Chem. Eng. 2011, 28, 1736-1743.
    • (2011) Korean. J. Chem. Eng. , vol.28 , pp. 1736-1743
    • Ul-Islam, M.1    Shah, N.2    Ha, J.H.3    Park, J.K.4
  • 32
    • 2442516220 scopus 로고    scopus 로고
    • Functional cardiac cell constructs on cellulose-based scaffolding.
    • Entcheva, E., Bien, H., Yin, L., Chun, C. Y. et al., Functional cardiac cell constructs on cellulose-based scaffolding. Biomaterials 2004, 25, 5753-5762.
    • (2004) Biomaterials , vol.25 , pp. 5753-5762
    • Entcheva, E.1    Bien, H.2    Yin, L.3    Chun, C.Y.4
  • 34
    • 79959763877 scopus 로고    scopus 로고
    • Preparation and characterization of a bacterial cellulose/chitosan composite for potential biomedical application.
    • Kim, J., Cai, Z., Lee, H. S., Choi, G. S. et al., Preparation and characterization of a bacterial cellulose/chitosan composite for potential biomedical application. J. Polym. Res. 2011, 18, 739-744.
    • (2011) J. Polym. Res. , vol.18 , pp. 739-744
    • Kim, J.1    Cai, Z.2    Lee, H.S.3    Choi, G.S.4
  • 35
    • 10644224495 scopus 로고    scopus 로고
    • High mechanical strength double network hydrogel with bacterial cellulose.
    • Nakayama, A., Kakugo, A., Gong, J. P., Osada, Y. et al., High mechanical strength double network hydrogel with bacterial cellulose. Adv. Funct. Mater. 2004, 14, 1124-1128.
    • (2004) Adv. Funct. Mater. , vol.14 , pp. 1124-1128
    • Nakayama, A.1    Kakugo, A.2    Gong, J.P.3    Osada, Y.4
  • 36
    • 38049039306 scopus 로고    scopus 로고
    • Preparation and mechanical properties of bacterial cellulose nanocomposites loaded with silica nanoparticles.
    • Yano, S., Maeda, H., Nakajima, M., Hagiwara, T. et al., Preparation and mechanical properties of bacterial cellulose nanocomposites loaded with silica nanoparticles. Cellulose 2008, 15, 111-120.
    • (2008) Cellulose , vol.15 , pp. 111-120
    • Yano, S.1    Maeda, H.2    Nakajima, M.3    Hagiwara, T.4
  • 37
    • 33646354156 scopus 로고    scopus 로고
    • Electrically conductive bacterial cellulose by incorporation of carbon nanotubes.
    • Yoon, S. H., Jin, H. J., Kook, M. C., Pyun, Y. R., Electrically conductive bacterial cellulose by incorporation of carbon nanotubes. Biomacromolecules 2006, 7, 1280-1284.
    • (2006) Biomacromolecules , vol.7 , pp. 1280-1284
    • Yoon, S.H.1    Jin, H.J.2    Kook, M.C.3    Pyun, Y.R.4
  • 38
    • 77957897798 scopus 로고    scopus 로고
    • On the mechanism of dissolution of cellulose.
    • Lindman, B., Karlström, G., Stigsson, L., On the mechanism of dissolution of cellulose. J. Mol. Liq. 2010, 156, 76-81.
    • (2010) J. Mol. Liq. , vol.156 , pp. 76-81
    • Lindman, B.1    Karlström, G.2    Stigsson, L.3
  • 41
    • 33947704741 scopus 로고    scopus 로고
    • Honeycomb-like architecture produced by living bacteria Gluconacetobacter xylinus
    • Uraki, Y., Nemoto, J., Otsuka, H., Tamai, Y. et al., Honeycomb-like architecture produced by living bacteria Gluconacetobacter xylinus, Carbohydr. Polym. 2007, 69, 1-6.
    • (2007) Carbohydr. Polym. , vol.69 , pp. 1-6
    • Uraki, Y.1    Nemoto, J.2    Otsuka, H.3    Tamai, Y.4
  • 42
    • 33747064167 scopus 로고    scopus 로고
    • Biomimetic synthesis of calcium-deficient hydroxyapatite in a natural hydrogel.
    • Hutchens, S. A., Benson, R. S., Evans, B. R., O'Neill, H. M. et al., Biomimetic synthesis of calcium-deficient hydroxyapatite in a natural hydrogel. Biomaterials 2006, 27, 4661-4670.
    • (2006) Biomaterials , vol.27 , pp. 4661-4670
    • Hutchens, S.A.1    Benson, R.S.2    Evans, B.R.3    O'Neill, H.M.4
  • 43
    • 70349160820 scopus 로고    scopus 로고
    • Artificial vascular implants from bacterial cellulose: Preliminary results of small arterial substitutes.
    • Schumann, D. A., Wippermann, J., Klemm, D. O., Karmer, F. et al., Artificial vascular implants from bacterial cellulose: Preliminary results of small arterial substitutes. Cellulose 2008, 16, 877-885.
    • (2008) Cellulose , vol.16 , pp. 877-885
    • Schumann, D.A.1    Wippermann, J.2    Klemm, D.O.3    Karmer, F.4
  • 44
    • 0035505468 scopus 로고    scopus 로고
    • Bacterial synthesized cellulose - artificial blood vessels for microsurgery.
    • Klemm, D., Schumann, D., Udhardt, U., Marsch, S., Bacterial synthesized cellulose - artificial blood vessels for microsurgery. Prog. Polym. Sci. 2001, 26, 1561-1603.
    • (2001) Prog. Polym. Sci. , vol.26 , pp. 1561-1603
    • Klemm, D.1    Schumann, D.2    Udhardt, U.3    Marsch, S.4
  • 46
    • 67349138209 scopus 로고    scopus 로고
    • Preparation and characterization of 2, 3-dialdehyde bacterial cellulose for potential biodegradable tissue engineering scaffolds
    • Li, J., Wan, Y., Li, L., Liang, H. et al., Preparation and characterization of 2, 3-dialdehyde bacterial cellulose for potential biodegradable tissue engineering scaffolds. Mater. Sci. Eng., C 2009, 29, 1635-1642.
    • (2009) Mater. Sci. Eng. , vol.29 , pp. 1635-1642
    • Li, J.1    Wan, Y.2    Li, L.3    Liang, H.4
  • 48
    • 70350575246 scopus 로고    scopus 로고
    • Novo Aloe vera-bacterial cellulose composite film from biosynthesis.
    • Saibuatong, O., Philsalaphong, M., Novo Aloe vera-bacterial cellulose composite film from biosynthesis. Carbohydr. Polym. 2010, 79, 455-460.
    • (2010) Carbohydr. Polym. , vol.79 , pp. 455-460
    • Saibuatong, O.1    Philsalaphong, M.2
  • 49
    • 13444258720 scopus 로고    scopus 로고
    • Multifunctional bacterial cellulose/chitosan composite materials for medical applications.
    • Ciechanska, D., Multifunctional bacterial cellulose/chitosan composite materials for medical applications. Fibres Text. East. Eur. 2004, 12, 69-72.
    • (2004) Fibres Text. East. Eur. , vol.12 , pp. 69-72
    • Ciechanska, D.1
  • 50
    • 47949093099 scopus 로고    scopus 로고
    • Anisotropic polyvinyl alcohol-bacterial cellulose nanocomposite for biomedical applications.
    • Millon, L. E., Guhados, G., Wan, W., Anisotropic polyvinyl alcohol-bacterial cellulose nanocomposite for biomedical applications. J. Biomed. Mater. Res. Part B 2008, 86, 444-452.
    • (2008) J. Biomed. Mater. Res. Part B , vol.86 , pp. 444-452
    • Millon, L.E.1    Guhados, G.2    Wan, W.3
  • 51
    • 42949147002 scopus 로고    scopus 로고
    • Preparation and characterization of a novel COL/BC composite for potential tissue engineering scaffolds.
    • Luo, H., Xiong, G., Huang, Y., He, F. et al., Preparation and characterization of a novel COL/BC composite for potential tissue engineering scaffolds. Mater. Chem. Phys. 2008, 110, 193-196.
    • (2008) Mater. Chem. Phys. , vol.110 , pp. 193-196
    • Luo, H.1    Xiong, G.2    Huang, Y.3    He, F.4
  • 53
    • 84874519742 scopus 로고    scopus 로고
    • Bacterial cellulose-MMTs nanoreinforced composite films: Novel wound dressing material with antibacterial properties.
    • Ul-Islam, M., Khan, T., Khattak, W. A., Park, J. K., Bacterial cellulose-MMTs nanoreinforced composite films: Novel wound dressing material with antibacterial properties. Cellulose 2013, 20, 589-596.
    • (2013) Cellulose , vol.20 , pp. 589-596
    • Ul-Islam, M.1    Khan, T.2    Khattak, W.A.3    Park, J.K.4
  • 54
    • 84911385151 scopus 로고    scopus 로고
    • Bacterial cellulose production and its industrial applications.
    • Keshk, S. M. A. S., Bacterial cellulose production and its industrial applications. J. Bioproces Biotechniq. 2014, 4, 2.
    • (2014) J. Bioproces Biotechniq. , vol.4 , pp. 2
    • Keshk, S.M.A.S.1
  • 55
    • 0032162623 scopus 로고    scopus 로고
    • Structural features and properties of bacterial cellulose produced in agitated culture.
    • Watanabe, K., Tabuchi, M., Morinaga, Y., Yoshinaga, F., Structural features and properties of bacterial cellulose produced in agitated culture. Cellulose 1998, 5, 187-200.
    • (1998) Cellulose , vol.5 , pp. 187-200
    • Watanabe, K.1    Tabuchi, M.2    Morinaga, Y.3    Yoshinaga, F.4
  • 56
    • 78049247564 scopus 로고    scopus 로고
    • Fabrication of bienzymatic glucose biosensor based on novel gold nanoparticles-bacteria cellulose nanofibers nanocomposite.
    • Wang, W., Li, H. Y., Zhang, D. W., Jiang, J. et al., Fabrication of bienzymatic glucose biosensor based on novel gold nanoparticles-bacteria cellulose nanofibers nanocomposite. Electroanalysis 2010, 22, 2543-2550.
    • (2010) Electroanalysis , vol.22 , pp. 2543-2550
    • Wang, W.1    Li, H.Y.2    Zhang, D.W.3    Jiang, J.4
  • 57
    • 80051834454 scopus 로고    scopus 로고
    • Nanocomposite biomaterial mimicking aortic heart valve leaflet mechanical behaviour.
    • Mohammadi, H., Nanocomposite biomaterial mimicking aortic heart valve leaflet mechanical behaviour. Proc. Inst. Mech. Eng. H 2011, 225, 718-722.
    • (2011) Proc. Inst. Mech. Eng. H , vol.225 , pp. 718-722
    • Mohammadi, H.1
  • 58
    • 75149145404 scopus 로고    scopus 로고
    • Real-time measurements of coagulation on bacterial cellulose and conventional vascular graft materials.
    • Fink, H., Faxälv, L., Molnár, G. F., Drotz, K. et al., Real-time measurements of coagulation on bacterial cellulose and conventional vascular graft materials. Acta Biomater. 2010, 6, 1125-1130.
    • (2010) Acta Biomater. , vol.6 , pp. 1125-1130
    • Fink, H.1    Faxälv, L.2    Molnár, G.F.3    Drotz, K.4
  • 59
    • 77956182803 scopus 로고    scopus 로고
    • Improving bacterial cellulose for blood vessel replacement: Functionalization with a chimeric protein containing a cellulose-binding module and an adhesion peptide.
    • Andrade, F. K., Costa, R., Domingues, L., Soares, R. et al., Improving bacterial cellulose for blood vessel replacement: Functionalization with a chimeric protein containing a cellulose-binding module and an adhesion peptide. Acta Biomater. 2010, 6, 4034-4041.
    • (2010) Acta Biomater. , vol.6 , pp. 4034-4041
    • Andrade, F.K.1    Costa, R.2    Domingues, L.3    Soares, R.4
  • 60
    • 3242655507 scopus 로고    scopus 로고
    • Bacterial cellulose as a potential scaffold for tissue engineering of cartilage.
    • Svensson, A., Nicklasson, E., Harrah, T., Panilaitis, B. et al., Bacterial cellulose as a potential scaffold for tissue engineering of cartilage. Biomaterials 2005, 4, 419-431.
    • (2005) Biomaterials , vol.4 , pp. 419-431
    • Svensson, A.1    Nicklasson, E.2    Harrah, T.3    Panilaitis, B.4
  • 61
    • 34247597900 scopus 로고    scopus 로고
    • Biodegradation of high-toughness double network hydrogels as potential materials for artificial cartilage.
    • Azuma, C., Yasuda, K., Tanabe, Y., Taniguro, H. et al., Biodegradation of high-toughness double network hydrogels as potential materials for artificial cartilage. J. Biomed. Mater. Res. A 2007, 81, 373-380.
    • (2007) J. Biomed. Mater. Res. A , vol.81 , pp. 373-380
    • Azuma, C.1    Yasuda, K.2    Tanabe, Y.3    Taniguro, H.4
  • 62
    • 28744448243 scopus 로고    scopus 로고
    • Mechanical properties of bacterial cellulose and interactions with smooth muscle cells.
    • Bäckdahl, H., Helenius, G., Bodin, A., Nannmark, U. et al., Mechanical properties of bacterial cellulose and interactions with smooth muscle cells. Biomaterials 2006, 27, 2141-2149.
    • (2006) Biomaterials , vol.27 , pp. 2141-2149
    • Bäckdahl, H.1    Helenius, G.2    Bodin, A.3    Nannmark, U.4
  • 63
    • 78650891115 scopus 로고    scopus 로고
    • Chemical in situ polymerization of polypyrrole on bacterial cellulose nanofibers.
    • Muller, D., Rambo, C. R., Recouvreux, D. O. S., Porto, L. M. et al., Chemical in situ polymerization of polypyrrole on bacterial cellulose nanofibers. Synth. Met. 2011, 161, 106-111.
    • (2011) Synth. Met. , vol.161 , pp. 106-111
    • Muller, D.1    Rambo, C.R.2    Recouvreux, D.O.S.3    Porto, L.M.4
  • 64
    • 84865420923 scopus 로고    scopus 로고
    • Electrically conducting nanocomposites: Preparation and properties of polyaniline (PAni)-coated bacterial cellulose nanofibers (BC).
    • Muller, D., Mandelli, J. S., Marins, J. A., Soares, B. G., Electrically conducting nanocomposites: Preparation and properties of polyaniline (PAni)-coated bacterial cellulose nanofibers (BC). Cellulose 2012, 19, 1645-1654.
    • (2012) Cellulose , vol.19 , pp. 1645-1654
    • Muller, D.1    Mandelli, J.S.2    Marins, J.A.3    Soares, B.G.4
  • 65
    • 80054805626 scopus 로고    scopus 로고
    • Polymerization of aniline on bacterial cellulose and characterization of bacterial cellulose/polyaniline nanocomposite films.
    • Lee, B. H., Kim, H. J., Yang, H. S., Polymerization of aniline on bacterial cellulose and characterization of bacterial cellulose/polyaniline nanocomposite films. Curr. Appl. Phys. 2012, 12, 75-80.
    • (2012) Curr. Appl. Phys. , vol.12 , pp. 75-80
    • Lee, B.H.1    Kim, H.J.2    Yang, H.S.3
  • 66
    • 79961209506 scopus 로고    scopus 로고
    • Structure and properties of conducting bacterial cellulose-polyaniline nanocomposites.
    • Marins, J. A., Soares, B. G., Dahmouche, K., Ribeiro, S. J. L. et al., Structure and properties of conducting bacterial cellulose-polyaniline nanocomposites. Cellulose 2011, 18, 1285-1294.
    • (2011) Cellulose , vol.18 , pp. 1285-1294
    • Marins, J.A.1    Soares, B.G.2    Dahmouche, K.3    Ribeiro, S.J.L.4
  • 67
    • 79959943236 scopus 로고    scopus 로고
    • Flexible electrically conductive nanocomposite membrane based on bacterial cellulose and polyaniline.
    • Hu, W., Chen, S., Yang, Z., Liu, L., Flexible electrically conductive nanocomposite membrane based on bacterial cellulose and polyaniline. J. Phys. Chem. B 2011, 115, 8453-8457.
    • (2011) J. Phys. Chem. B , vol.115 , pp. 8453-8457
    • Hu, W.1    Chen, S.2    Yang, Z.3    Liu, L.4
  • 68
    • 33646354156 scopus 로고    scopus 로고
    • Electrically conductive bacterial cellulose by incorporation of carbon nanotubes.
    • Yoon, S. H., Jin, H. J., Kook, M. C., Pyun, Y. R., Electrically conductive bacterial cellulose by incorporation of carbon nanotubes. Biomacromolecules 2006, 7, 1280-1284.
    • (2006) Biomacromolecules , vol.7 , pp. 1280-1284
    • Yoon, S.H.1    Jin, H.J.2    Kook, M.C.3    Pyun, Y.R.4
  • 69
    • 80054766169 scopus 로고    scopus 로고
    • A mechanically strong, flexible and conductive film based on bacterial cellulose/graphene nanocomposite.
    • Feng, Y., Zhanga, X., Shena, Y., Yoshinoc et al., A mechanically strong, flexible and conductive film based on bacterial cellulose/graphene nanocomposite. Carbohydr. Polym. 2012, 87, 644-649.
    • (2012) Carbohydr. Polym. , vol.87 , pp. 644-649
    • Feng, Y.1    Zhanga, X.2    Shena, Y.3    Yoshinoc4
  • 70
    • 84879485117 scopus 로고    scopus 로고
    • Electrically conductive bacterial cellulose composite membranes produced by the incorporation of graphite nanoplatelets in pristine bacterial cellulose membranes.
    • Zhou, T., Chen, D., Jiu, J., Nge, T. T. et al., Electrically conductive bacterial cellulose composite membranes produced by the incorporation of graphite nanoplatelets in pristine bacterial cellulose membranes. eXPRESS. Polymer. Lett. 2013, 7, 756-766.
    • (2013) eXPRESS. Polymer. Lett. , vol.7 , pp. 756-766
    • Zhou, T.1    Chen, D.2    Jiu, J.3    Nge, T.T.4
  • 71
    • 84862250813 scopus 로고    scopus 로고
    • Fabrication and evaluation of bacterial cellulose-polyaniline composites by interfacial polymerization.
    • Lee, H. J., Chung, T. J., Kwon, H. J. et al., Fabrication and evaluation of bacterial cellulose-polyaniline composites by interfacial polymerization. Cellulose 2012, 19, 1251-1258.
    • (2012) Cellulose , vol.19 , pp. 1251-1258
    • Lee, H.J.1    Chung, T.J.2    Kwon, H.J.3
  • 72
    • 56649120581 scopus 로고    scopus 로고
    • Bacterial cellulose membrane as flexible substrate for organic light emitting devices.
    • Legnani, C., Vilani, C., Calil, V. L., Barud, H. S. et al., Bacterial cellulose membrane as flexible substrate for organic light emitting devices. Thin Solid Films 2008, 517, 1016-1020.
    • (2008) Thin Solid Films , vol.517 , pp. 1016-1020
    • Legnani, C.1    Vilani, C.2    Calil, V.L.3    Barud, H.S.4
  • 73
    • 34347329332 scopus 로고    scopus 로고
    • Surface modification of bacterial cellulose nanofibers for property enhancement of optically transparent composites: Dependence on acetyl-group DS.
    • Ifuku, S., Nogi, M., Abe, K., Handa, K. et al., Surface modification of bacterial cellulose nanofibers for property enhancement of optically transparent composites: Dependence on acetyl-group DS. Biomacromolecules 2007, 8, 1973-1978.
    • (2007) Biomacromolecules , vol.8 , pp. 1973-1978
    • Ifuku, S.1    Nogi, M.2    Abe, K.3    Handa, K.4
  • 74
    • 55049132800 scopus 로고    scopus 로고
    • Transparent nanocomposites based on cellulose produced by bacteria offer potential innovation in the electronics device industry.
    • Nogi, M., Yano, H., Transparent nanocomposites based on cellulose produced by bacteria offer potential innovation in the electronics device industry. Adv. Mater. 2008, 20, 1849-1852.
    • (2008) Adv. Mater. , vol.20 , pp. 1849-1852
    • Nogi, M.1    Yano, H.2
  • 75
    • 84877144270 scopus 로고    scopus 로고
    • Optically transparent membrane based on bacterial cellulose/polycaprolactone.
    • Barud, H. S., Ribeiro, S. J. L., Carone, C. L. P., Ligabue, R. et al., Optically transparent membrane based on bacterial cellulose/polycaprolactone. Polimeros 2013, 23, 135-138.
    • (2013) Polimeros , vol.23 , pp. 135-138
    • Barud, H.S.1    Ribeiro, S.J.L.2    Carone, C.L.P.3    Ligabue, R.4
  • 76
    • 80051930804 scopus 로고    scopus 로고
    • Development of transparent bacterial cellulose nanocomposite film as substrate for flexible organic light emitting diode (OLED) display.
    • Ummartyotin, S., Juntaro, J., Sain, M., Manuspiya, H., Development of transparent bacterial cellulose nanocomposite film as substrate for flexible organic light emitting diode (OLED) display. Ind. Crop. Prod. 2012, 35, 92-97.
    • (2012) Ind. Crop. Prod. , vol.35 , pp. 92-97
    • Ummartyotin, S.1    Juntaro, J.2    Sain, M.3    Manuspiya, H.4
  • 77
    • 79959329657 scopus 로고    scopus 로고
    • Si-O barrier technology for bacterial cellulose nanocomposite flexible displays.
    • Ummartyotin, S., Juntaro, J., Sain, M., Manuspiya, H., Si-O barrier technology for bacterial cellulose nanocomposite flexible displays. Carbohydr. Polym. 2011, 86, 337-342.
    • (2011) Carbohydr. Polym. , vol.86 , pp. 337-342
    • Ummartyotin, S.1    Juntaro, J.2    Sain, M.3    Manuspiya, H.4
  • 78
    • 84862550964 scopus 로고    scopus 로고
    • The role of ferrofluid on surface smoothness of bacterial cellulose nanocomposite flexible display.
    • Ummartyotin, S., Juntaro, J., Sain, M., Manuspiya, H., The role of ferrofluid on surface smoothness of bacterial cellulose nanocomposite flexible display., Chem. Eng. J. 2012, 193-194, 16-20.
    • (2012) Chem. Eng. J. , vol.193-194 , pp. 16-20
    • Ummartyotin, S.1    Juntaro, J.2    Sain, M.3    Manuspiya, H.4
  • 79
    • 77953128409 scopus 로고    scopus 로고
    • Facile synthesis of ZnO nanoparticles based on bacterial cellulose
    • Hu, W., Chen, S., Zhou, B., Wang, H., Facile synthesis of ZnO nanoparticles based on bacterial cellulose. Mater. Sci. Eng., B 2010, 170, 88-92.
    • (2010) Mater. Sci. Eng. , vol.170 , pp. 88-92
    • Hu, W.1    Chen, S.2    Zhou, B.3    Wang, H.4
  • 80
    • 79959652793 scopus 로고    scopus 로고
    • Formaldehyde sensors based on nanofibrous polyethyleneimine/bacterial cellulose membranes coated quartz crystal microbalance.
    • Hu, W. L., Chen, S. Y., Liu, L. T., Ding, B. et al., Formaldehyde sensors based on nanofibrous polyethyleneimine/bacterial cellulose membranes coated quartz crystal microbalance. Sens. Actuators, B 2011, 157, 554-559.
    • (2011) Sens. Actuators, B , vol.157 , pp. 554-559
    • Hu, W.L.1    Chen, S.Y.2    Liu, L.T.3    Ding, B.4
  • 81
    • 77950252730 scopus 로고    scopus 로고
    • Biotemplated synthesis ofgold nanoparticle-bacteria cellulose nanofiber nanocomposites and their application in biosensing.
    • Zhang, T. J., Wang, W., Zhang, D. Y., Zhang, X. X. et al., Biotemplated synthesis ofgold nanoparticle-bacteria cellulose nanofiber nanocomposites and their application in biosensing. Adv. Funct. Mater. 2010, 20, 1152-1160.
    • (2010) Adv. Funct. Mater. , vol.20 , pp. 1152-1160
    • Zhang, T.J.1    Wang, W.2    Zhang, D.Y.3    Zhang, X.X.4
  • 82
    • 79959351776 scopus 로고    scopus 로고
    • Synthesis of magnetic nanoparticle into bacterial cellulose matrix by ammonia gas-enhancing in situ co-precipitation method.
    • Katepetch, C., Rujiravanita, R., Synthesis of magnetic nanoparticle into bacterial cellulose matrix by ammonia gas-enhancing in situ co-precipitation method. Carbohydr. Polym. 2011, 86, 162-170.
    • (2011) Carbohydr. Polym. , vol.86 , pp. 162-170
    • Katepetch, C.1    Rujiravanita, R.2
  • 83
    • 84875214787 scopus 로고    scopus 로고
    • Synthesis of flexible magnetic nanohybrid based on bacterial cellulose under ultrasonic irradiation
    • Zheng, Y., Yang, J., Zheng, W., Wang, X. et al., Synthesis of flexible magnetic nanohybrid based on bacterial cellulose under ultrasonic irradiation. Mater. Sci. Eng., C 2013, 33, 2407-2412.
    • (2013) Mater. Sci. Eng. , vol.33 , pp. 2407-2412
    • Zheng, Y.1    Yang, J.2    Zheng, W.3    Wang, X.4
  • 84
    • 84881122296 scopus 로고    scopus 로고
    • Flexible magnetic membranes based on bacterial cellulose and its evaluation as electromagnetic interference shielding material
    • Marins, J. A., Soares, B. G., Barud, H. S., Ribeiro, S. J. L., Flexible magnetic membranes based on bacterial cellulose and its evaluation as electromagnetic interference shielding material. Mater. Sci. Eng., C 2013, 33, 3994-4001.
    • (2013) Mater. Sci. Eng. , vol.33 , pp. 3994-4001
    • Marins, J.A.1    Soares, B.G.2    Barud, H.S.3    Ribeiro, S.J.L.4
  • 85
    • 84880532238 scopus 로고    scopus 로고
    • Ni-bacterial cellulose nanocomposite; a magnetically active inorganic-organic hybrid gel.
    • Thiruvengadam, V., Vitta, S., Ni-bacterial cellulose nanocomposite; a magnetically active inorganic-organic hybrid gel. RSC Adv. 2013, 3, 12765.
    • (2013) RSC Adv. , vol.3 , pp. 12765
    • Thiruvengadam, V.1    Vitta, S.2
  • 86
    • 80052036511 scopus 로고    scopus 로고
    • Facile fabrication of flexible magnetic nanohybrid membrane with amphiphobic surface based on bacterial cellulose.
    • Zhang, W., Chen, S. Y., Hu, W. L., Zhou, B. H. et al., Facile fabrication of flexible magnetic nanohybrid membrane with amphiphobic surface based on bacterial cellulose. Carbohydr. Polym. 2011, 86, 1760-1767.
    • (2011) Carbohydr. Polym. , vol.86 , pp. 1760-1767
    • Zhang, W.1    Chen, S.Y.2    Hu, W.L.3    Zhou, B.H.4
  • 87
    • 77956421847 scopus 로고    scopus 로고
    • Making flexible magnetic aerogels and stiff magnetic nanopaper using cellulose nanofibrils as templates.
    • Olsson, R. T., Samir, M. A. S. A., Salazar-Alvarez, G., Belova, L. et al., Making flexible magnetic aerogels and stiff magnetic nanopaper using cellulose nanofibrils as templates. Nat. Nanotechnol. 2010, 5, 584-588.
    • (2010) Nat. Nanotechnol. , vol.5 , pp. 584-588
    • Olsson, R.T.1    Samir, M.A.S.A.2    Salazar-Alvarez, G.3    Belova, L.4
  • 88
    • 33746253257 scopus 로고    scopus 로고
    • Surface modification of polyester to produce a bacterial cellulose-based vascular prosthetic device.
    • Charpentier, P. A., Maguire, A., Wan, W. K., Surface modification of polyester to produce a bacterial cellulose-based vascular prosthetic device. Appl. Surf. Sci. 2006, 252, 6360-6367.
    • (2006) Appl. Surf. Sci. , vol.252 , pp. 6360-6367
    • Charpentier, P.A.1    Maguire, A.2    Wan, W.K.3
  • 89
    • 14544298005 scopus 로고    scopus 로고
    • Effects of new wound dressings on healing of thermal burns of the skin in acute radiation disease.
    • Legeza, V. I., Galenko-Yaroshevskii, V. P., Zinov'ev, E. V., Paramonov, B. A. et al., Effects of new wound dressings on healing of thermal burns of the skin in acute radiation disease. Bull. Exp. Biol. Med. 2004, 138, 311-315.
    • (2004) Bull. Exp. Biol. Med. , vol.138 , pp. 311-315
    • Legeza, V.I.1    Galenko-Yaroshevskii, V.P.2    Zinov'ev, E.V.3    Paramonov, B.A.4
  • 90
    • 33645226113 scopus 로고    scopus 로고
    • Hydroxyapatite/bacterial cellulose composites synthesized via a biomimetic route.
    • Hong, L., Wang, Y. L., Jia, S. R., Huang, Y., Gao, C. et al., Hydroxyapatite/bacterial cellulose composites synthesized via a biomimetic route. Mater. Lett. 2006, 60, 1710-1713.
    • (2006) Mater. Lett. , vol.60 , pp. 1710-1713
    • Hong, L.1    Wang, Y.L.2    Jia, S.R.3    Huang, Y.4    Gao, C.5


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