292
A. S. Shinde et al.
96. Gil-Tomás JJ, Dekker L, Nair S, Gil-Tomás J, Tubby S, Parkin IP, Narband N, Nair SP, Wilson
M, Street C (2007) Lethal photosensitisation of Staphylococcus aureus using a toluidine blue
O-tiopronin-gold nanoparticle conjugate Lethal photosensitisation of Staphylococcus aureus
using a toluidine blue O-tiopronin-gold nanoparticle conjugate. J Mater Chem 17:3739–3746.
https://doi.org/10.1039/b706615e
97. Volkova N, Yukhta M, Pavlovich O, Goltsev A (2016) Application of cryopreserved fibroblast
culture with Au nanoparticles to treat burns. Nanoscale Res Lett 11:1–6. https://doi.org/10.
1186/s11671-016-1242-y
98. Michael GC, Darrin JP, Joel SP (2011) Controlled biodegradation of self-assembling β-hairpin
peptide hydrogels by proteolysis with matrix metalloproteinase-13. Biomaterials 32:6471–
6477
99. Haines-Butterick L, Rajagopal K, Branco M, Salick D, Rughani R, Pilarz M, Lamm MS,
Pochan DJ, Schneider JP (2007) Controlling hydrogelation kinetics by peptide design
for three-dimensional encapsulation and injectable delivery of cells. Proc Natl Acad Sci
104:7791–7796
100. Wang S, Nagrath D, Chen PC, Berthiaume O, Yarmush ML (2008) Three-dimensional primary
hepatocyte culture in synthetic self-assembling peptide hydrogel. Tissue Eng Part A 14:227–
236. https://doi.org/10.1089/tea.2007.0143
101. Webber MJ, Tongers J, Renault MA, Roncalli JG, Losordo DW, Stupp SI (2010) Development
of bioactive peptide amphiphiles for therapeutic cell delivery. Acta Biomater 6:3–11
102. Webber MJ, Kessler JA, Stupp SI (2010) Emerging peptide nanomedicine to regenerate tissues
and organs. J Intern Med 71–88
103. Jayawarna V, Smith A, Gough JE, Ulijn RV (2007) Three-dimensional cell culture of
chondrocytes on modified di-phenylalanine scaffolds. Biochem Soc Trans 35:535–537
104. Smith AM, Williams RJ, Tang C, Coppo P, Collins RF, Turner ML, Saiani A, Ulijn RV (2008)
Fmoc-diphenylalanine self assembles to a hydrogel via a novel architecture based on π-π
interlocked β-sheets. Adv Mater 20:37–41. https://doi.org/10.1002/adma.200701221
105. Mohamed A, Xing MM (2012) Nanomaterials and nanotechnology for skin tissue engineering.
Int J Burns Trauma 2:29
106. Heit YI, Dastouri P, Helm DL, Pietramaggiori G, Younan G, Erba P, Münster S, Orgill DP,
Scherer SS (2012) Foam pore size is a critical interface parameter of suction-based wound
healing devices. Plast Reconstr Surg 129:589–597. https://doi.org/10.1097/PRS.0b013e318
2402c89
107. Jiang B, Larson JC, Drapala PW, Pérez-Luna VH, Kang-Mieler JJ, Brey EM (2012) Investigation of lysine acrylate containing poly(N-isopropylacrylamide) hydrogels as wound dressings
in normal and infected wounds. J Biomed Mater Res Part B Appl Biomater 100:668–676.
https://doi.org/10.1002/jbm.b.31991
108. Powell HM, Boyce ST (2008) Fiber density of electrospun gelatin scaffolds regulates morphogenesis of dermal-epidermal skin substitutes. J Biomed Mater Res Part A 84:1078–1086.
https://doi.org/10.1002/jbm.a.31498
109. Bilgic H, Demiriz M, Ozler M, Ide T, Dogan N, Gumus S, Kiziltay A, Endogan T, Hasirci
V, Hasirci N (2013) Gelatin based scaffolds and effect of EGF dose on wound healing. J
Biomater Tissue Eng 3:205–211
110. Patel H, Bonde M, Srinivasan G (2011) Biodegradable polymer scaffold for tissue engineering
111. Ehrlich HP, Hunt TK (2012) Collagen organization critical role in wound contraction. Adv
Wound Care 1:3–9. https://doi.org/10.1089/wound.2011.0311
112. Kawaguchi H, Jingushi S, Izumi T, Fukunaga M, Matsushita T, Nakamura T, Mizuno K,
Nakamura T, Nakamura K (2007) Local application of recombinant human fibroblast growth
factor-2 on bone repair: a dose-escalation prospective trial on patients with osteotomy. J
Orthop Res 25:480–487. https://doi.org/10.1002/jor.20315
113. Wu JC, Huang WC, Chen YC, Tu TH, Tsai YA, Huang SF, Huang HC, Cheng H (2011) Acidic
fibroblast growth factor for repair of human spinal cord injury: a clinical trial. J Neurosurg
Spine 15:216–227
A. S. Shinde et al.
96. Gil-Tomás JJ, Dekker L, Nair S, Gil-Tomás J, Tubby S, Parkin IP, Narband N, Nair SP, Wilson
M, Street C (2007) Lethal photosensitisation of Staphylococcus aureus using a toluidine blue
O-tiopronin-gold nanoparticle conjugate Lethal photosensitisation of Staphylococcus aureus
using a toluidine blue O-tiopronin-gold nanoparticle conjugate. J Mater Chem 17:3739–3746.
https://doi.org/10.1039/b706615e
97. Volkova N, Yukhta M, Pavlovich O, Goltsev A (2016) Application of cryopreserved fibroblast
culture with Au nanoparticles to treat burns. Nanoscale Res Lett 11:1–6. https://doi.org/10.
1186/s11671-016-1242-y
98. Michael GC, Darrin JP, Joel SP (2011) Controlled biodegradation of self-assembling β-hairpin
peptide hydrogels by proteolysis with matrix metalloproteinase-13. Biomaterials 32:6471–
6477
99. Haines-Butterick L, Rajagopal K, Branco M, Salick D, Rughani R, Pilarz M, Lamm MS,
Pochan DJ, Schneider JP (2007) Controlling hydrogelation kinetics by peptide design
for three-dimensional encapsulation and injectable delivery of cells. Proc Natl Acad Sci
104:7791–7796
100. Wang S, Nagrath D, Chen PC, Berthiaume O, Yarmush ML (2008) Three-dimensional primary
hepatocyte culture in synthetic self-assembling peptide hydrogel. Tissue Eng Part A 14:227–
236. https://doi.org/10.1089/tea.2007.0143
101. Webber MJ, Tongers J, Renault MA, Roncalli JG, Losordo DW, Stupp SI (2010) Development
of bioactive peptide amphiphiles for therapeutic cell delivery. Acta Biomater 6:3–11
102. Webber MJ, Kessler JA, Stupp SI (2010) Emerging peptide nanomedicine to regenerate tissues
and organs. J Intern Med 71–88
103. Jayawarna V, Smith A, Gough JE, Ulijn RV (2007) Three-dimensional cell culture of
chondrocytes on modified di-phenylalanine scaffolds. Biochem Soc Trans 35:535–537
104. Smith AM, Williams RJ, Tang C, Coppo P, Collins RF, Turner ML, Saiani A, Ulijn RV (2008)
Fmoc-diphenylalanine self assembles to a hydrogel via a novel architecture based on π-π
interlocked β-sheets. Adv Mater 20:37–41. https://doi.org/10.1002/adma.200701221
105. Mohamed A, Xing MM (2012) Nanomaterials and nanotechnology for skin tissue engineering.
Int J Burns Trauma 2:29
106. Heit YI, Dastouri P, Helm DL, Pietramaggiori G, Younan G, Erba P, Münster S, Orgill DP,
Scherer SS (2012) Foam pore size is a critical interface parameter of suction-based wound
healing devices. Plast Reconstr Surg 129:589–597. https://doi.org/10.1097/PRS.0b013e318
2402c89
107. Jiang B, Larson JC, Drapala PW, Pérez-Luna VH, Kang-Mieler JJ, Brey EM (2012) Investigation of lysine acrylate containing poly(N-isopropylacrylamide) hydrogels as wound dressings
in normal and infected wounds. J Biomed Mater Res Part B Appl Biomater 100:668–676.
https://doi.org/10.1002/jbm.b.31991
108. Powell HM, Boyce ST (2008) Fiber density of electrospun gelatin scaffolds regulates morphogenesis of dermal-epidermal skin substitutes. J Biomed Mater Res Part A 84:1078–1086.
https://doi.org/10.1002/jbm.a.31498
109. Bilgic H, Demiriz M, Ozler M, Ide T, Dogan N, Gumus S, Kiziltay A, Endogan T, Hasirci
V, Hasirci N (2013) Gelatin based scaffolds and effect of EGF dose on wound healing. J
Biomater Tissue Eng 3:205–211
110. Patel H, Bonde M, Srinivasan G (2011) Biodegradable polymer scaffold for tissue engineering
111. Ehrlich HP, Hunt TK (2012) Collagen organization critical role in wound contraction. Adv
Wound Care 1:3–9. https://doi.org/10.1089/wound.2011.0311
112. Kawaguchi H, Jingushi S, Izumi T, Fukunaga M, Matsushita T, Nakamura T, Mizuno K,
Nakamura T, Nakamura K (2007) Local application of recombinant human fibroblast growth
factor-2 on bone repair: a dose-escalation prospective trial on patients with osteotomy. J
Orthop Res 25:480–487. https://doi.org/10.1002/jor.20315
113. Wu JC, Huang WC, Chen YC, Tu TH, Tsai YA, Huang SF, Huang HC, Cheng H (2011) Acidic
fibroblast growth factor for repair of human spinal cord injury: a clinical trial. J Neurosurg
Spine 15:216–227
