164
S. Riaz and M. Ashraf
70. Ranganath AS, Sarkar AK (2014) Evaluation of durability to laundering of triclosan and
chitosan on a textile substrate. J Text 2014:1–5
71. Kari C, Nagy Z, Kovacs P, Hernadi F (2009) Mechanism of the growth inhibitory effect of
cysteine on Escherichia coli. J Gen Microbiol 68(3):349–356
72. Caldeira E, Piskin E, Granadeiro L, Silva F, Gouveia IC (2013) Biofunctionalization of cellulosic fibres with l-cysteine: assessment of antibacterial properties and mechanism of action
against Staphylococcus aureus and Klebsiella pneumoniae. J Biotechnol 168(4):426–435
73. Xu Q, Duan P, Zhang Y, Fu F, Liu X (2018) Double protect copper nanoparticles loaded
on L-cysteine modified cotton fabric with durable antibacterial properties. Fibers Polym
19(11):2324–2334
74. Perni S, Hakala V, Prokopovich P (2013) Biogenic synthesis of antimicrobial silver
nanoparticles capped with L-cysteine. Colloids Surf A Physicochem Eng Asp 460:219–224
75. Xu QB, Gu JY, Zhao Y, Ke XT, Liu XD (2017) Antibacterial cotton fabric with enhanced
durability prepared using L-cysteine and silver nanoparticles. Fibers Polym 18(11):2204–2211
76. Gouveia IC, Sá D, Henriques M (2012) Functionalization of wool with L-cysteine: process
characterization and assessment of antimicrobial activity and cytotoxicity. J Appl Polym Sci
124(2):1352–1358
77. Kelleher SM, Habimana O, Lawler J, Reilly BO’, Daniels S, Casey E, Cowley A (2015) Cicada
wing surface topography: an investigation into the bactericidal properties of nanostructural
features. ACS Appl Mater Interfaces, acsami.5b08309
78. Bazaka K, Jacob MV, Chrzanowski W, Ostrikov K (2015) Anti-bacterial surfaces: natural
agents, mechanisms of action, and plasma surface modification. RSC Adv 5(60):48739–48759
79. Kim SS, Park JE, Lee J (2011) Properties and antimicrobial efficacy of cellulose fiber coated
with silver nanoparticles and 3-mercaptopropyltrimethoxysilane (3-MPTMS). J Appl Polym
Sci 119(4):2261–2267
80. Liston EM, Martinu L, Wertheimer MR (1993) Plasma surface modification of polymers for
improved adhesion: a critical review. J Adhes Sci Technol 7(10):1091–1127
81. Xu W, Liu X (2003) Surface modification of polyester fabric by corona discharge irradiation.
Eur Polym J 39(1):199–202
82. Vertommen MAME, Nierstrasz VA, van der Veer M, Warmoeskerken MMCG (2005)
Enzymatic surface modification of poly(ethylene terephthalate). J Biotechnol 120(4):376–386
83. Son WK, Youk JH, Lee TS, Park WH (2004) Preparation of antimicrobial ultrafine cellulose
acetate fibers with silver nanoparticles. Macromol Rapid Commun 25(18):1632–1637
84. Ifuku S, Tsuji M, Morimoto M, Saimoto H, Yano H (2009) Synthesis of silver nanoparticles templated by TEMPO-mediated oxidized bacterial cellulose nanofibers. Biomacromol
10(9):2714–2717
85. Gray JE, Norton PR, Alnouno R, Marolda CL, Valvano MA, Griffiths K (2003) Biological efficacy of electroless-deposited silver on plasma activated polyurethane. Biomaterials
24(16):2759–2765
86. Zhang G, Liu Y, Gao X, Chen Y (2014) Synthesis of silver nanoparticles and antibacterial
property of silk fabrics treated by silver nanoparticles. Nanoscale Res Lett 9(1):216
87. Maria LCS, Santos ALC, Oliveira PC, Valle ASS, Barud HS, Messaddeq Y, Ribeiro SJL
(2010) Preparation and antibacterial activity of silver nanoparticles impregnated in bacterial
cellulose. Polímeros 20(1):72–77
88. Tam KH, Djuriši´ c AB, Chan CMN, Xi YY, Tse CW, Leung YH, Chan WK, Leung FCC,
Au DWT (2008) Antibacterial activity of ZnO nanorods prepared by a hydrothermal method.
Thin Solid Films 516(18):6167–6174
89. Yazdanshenas ME, Shateri-Khalilabad M (2012) In situ synthesis of silver nanoparticles on
alkali-treated cotton fabrics. J Ind Text 42(4):459–474
90. Duan Y, Jia J, Wang S, Yan W, Jin L, Wang Z (2007) Preparation of antimicrobial
poly(ε-caprolactone) electrospun nanofibers containing silver-loaded zirconium phosphate
nanoparticles. J Appl Polym Sci 106(2):1208–1214
91. Rangari VK, Mohammad GM, Jeelani S, Hundley A, Vig K, Singh SR, Pillai S (2010) Synthesis of Ag/CNT hybrid nanoparticles and fabrication of their nylon-6 polymer nanocomposite
fibers for antimicrobial applications. Nanotechnology 21(9):095102
S. Riaz and M. Ashraf
70. Ranganath AS, Sarkar AK (2014) Evaluation of durability to laundering of triclosan and
chitosan on a textile substrate. J Text 2014:1–5
71. Kari C, Nagy Z, Kovacs P, Hernadi F (2009) Mechanism of the growth inhibitory effect of
cysteine on Escherichia coli. J Gen Microbiol 68(3):349–356
72. Caldeira E, Piskin E, Granadeiro L, Silva F, Gouveia IC (2013) Biofunctionalization of cellulosic fibres with l-cysteine: assessment of antibacterial properties and mechanism of action
against Staphylococcus aureus and Klebsiella pneumoniae. J Biotechnol 168(4):426–435
73. Xu Q, Duan P, Zhang Y, Fu F, Liu X (2018) Double protect copper nanoparticles loaded
on L-cysteine modified cotton fabric with durable antibacterial properties. Fibers Polym
19(11):2324–2334
74. Perni S, Hakala V, Prokopovich P (2013) Biogenic synthesis of antimicrobial silver
nanoparticles capped with L-cysteine. Colloids Surf A Physicochem Eng Asp 460:219–224
75. Xu QB, Gu JY, Zhao Y, Ke XT, Liu XD (2017) Antibacterial cotton fabric with enhanced
durability prepared using L-cysteine and silver nanoparticles. Fibers Polym 18(11):2204–2211
76. Gouveia IC, Sá D, Henriques M (2012) Functionalization of wool with L-cysteine: process
characterization and assessment of antimicrobial activity and cytotoxicity. J Appl Polym Sci
124(2):1352–1358
77. Kelleher SM, Habimana O, Lawler J, Reilly BO’, Daniels S, Casey E, Cowley A (2015) Cicada
wing surface topography: an investigation into the bactericidal properties of nanostructural
features. ACS Appl Mater Interfaces, acsami.5b08309
78. Bazaka K, Jacob MV, Chrzanowski W, Ostrikov K (2015) Anti-bacterial surfaces: natural
agents, mechanisms of action, and plasma surface modification. RSC Adv 5(60):48739–48759
79. Kim SS, Park JE, Lee J (2011) Properties and antimicrobial efficacy of cellulose fiber coated
with silver nanoparticles and 3-mercaptopropyltrimethoxysilane (3-MPTMS). J Appl Polym
Sci 119(4):2261–2267
80. Liston EM, Martinu L, Wertheimer MR (1993) Plasma surface modification of polymers for
improved adhesion: a critical review. J Adhes Sci Technol 7(10):1091–1127
81. Xu W, Liu X (2003) Surface modification of polyester fabric by corona discharge irradiation.
Eur Polym J 39(1):199–202
82. Vertommen MAME, Nierstrasz VA, van der Veer M, Warmoeskerken MMCG (2005)
Enzymatic surface modification of poly(ethylene terephthalate). J Biotechnol 120(4):376–386
83. Son WK, Youk JH, Lee TS, Park WH (2004) Preparation of antimicrobial ultrafine cellulose
acetate fibers with silver nanoparticles. Macromol Rapid Commun 25(18):1632–1637
84. Ifuku S, Tsuji M, Morimoto M, Saimoto H, Yano H (2009) Synthesis of silver nanoparticles templated by TEMPO-mediated oxidized bacterial cellulose nanofibers. Biomacromol
10(9):2714–2717
85. Gray JE, Norton PR, Alnouno R, Marolda CL, Valvano MA, Griffiths K (2003) Biological efficacy of electroless-deposited silver on plasma activated polyurethane. Biomaterials
24(16):2759–2765
86. Zhang G, Liu Y, Gao X, Chen Y (2014) Synthesis of silver nanoparticles and antibacterial
property of silk fabrics treated by silver nanoparticles. Nanoscale Res Lett 9(1):216
87. Maria LCS, Santos ALC, Oliveira PC, Valle ASS, Barud HS, Messaddeq Y, Ribeiro SJL
(2010) Preparation and antibacterial activity of silver nanoparticles impregnated in bacterial
cellulose. Polímeros 20(1):72–77
88. Tam KH, Djuriši´ c AB, Chan CMN, Xi YY, Tse CW, Leung YH, Chan WK, Leung FCC,
Au DWT (2008) Antibacterial activity of ZnO nanorods prepared by a hydrothermal method.
Thin Solid Films 516(18):6167–6174
89. Yazdanshenas ME, Shateri-Khalilabad M (2012) In situ synthesis of silver nanoparticles on
alkali-treated cotton fabrics. J Ind Text 42(4):459–474
90. Duan Y, Jia J, Wang S, Yan W, Jin L, Wang Z (2007) Preparation of antimicrobial
poly(ε-caprolactone) electrospun nanofibers containing silver-loaded zirconium phosphate
nanoparticles. J Appl Polym Sci 106(2):1208–1214
91. Rangari VK, Mohammad GM, Jeelani S, Hundley A, Vig K, Singh SR, Pillai S (2010) Synthesis of Ag/CNT hybrid nanoparticles and fabrication of their nylon-6 polymer nanocomposite
fibers for antimicrobial applications. Nanotechnology 21(9):095102
