194
P. Madiwale et al.
61. Biranje S, Madiwale P, Shukla R, Adivarekar R (2015) Textile scaffolds as tissue adhesives
(Chap. 7). J Text Assoc 76(2)
62. Prajapati TK, Patel KS (2017) Natural and synthetic polymers used in bioadhesive delivery
system, Int.J. for Innovative Research in Multidisciplinary Field, 3:9, 76–86
63. Lee EJ et al (2017) Progress in materials science application of materials as medical devices
with localized drug delivery capabilities for enhanced wound repair. Prog Mater Sci 89:392–410
64. Tyson AF et al (2013) Survival after burn in a sub-Saharan burn unit: challenges and
opportunities. Burns 39(8):1619–1625
65. Pei B, Wang W, Fan Y, Wang X, Watari F, Li X (2017) Fiber-reinforced scaffolds in soft tissue
engineering. Regener Biomater 4:257–268
66. Biranje S.S., Madiwale PV, Patankar KC, Chhabra R, Dandekar-Jain P, Adivarekar RV
(2019) Hemostasis and anti-necrotic activity of wound-healing dressing containing chitosan
nanoparticles. Int J Biol Macromol 121
67. Sutar T, Madiwale P, Shukla R, Adivarekar RV (2015) Textile scaffolds as wound healing
bandages (Chap. 9). J Text Assoc 76(4)
68. Biranje S, Madiwale P, Adivarekar RV (2018) Porous electrospun casein/PVA nanofibrous mat
for its potential application as wound dressing material. J Porous Mater
69. Santosh B, Madiwale P, Adivarekar RV (2017) Preparation and characterization of chitosan/PVA polymeric film for its potential application as wound dressing material. Indian J
Sci Res 14(2):250–256
70. Rajendran S, Anand SC (2006) Contribution of textiles to medical and healthcare products and
developing innovative medical devices. Indian J Fibre Text Res 31(1):215–229
71. Yang XB et al (2003) Novel osteoinductive biomimetic scaffolds stimulate human osteoprogenitor activity—implications. Conn Tissue Res 44:312–317
72. Madiwale P, Rachana S, Adivarekar R (2016) Textile scaffolds for bone recovery and
replacement (Chap. 10). J Text Assoc 318–321
73. Breier AC (2015) Embroidery technology for hard-tissue scaffolds. In: Biomedical txtiles for
othopaedic and surgical applications (pp 23–43)
74. Madiwale P, Rachana S, Adivarekar R (2016) Textile scaffolds for vascular tissue recovery
(Chap. 12). J Text Assoc 1:47–51
75. Madiwale P, Shukla R, Adivarekar R (2016) Challenges and further scope for textiles in medical
scaffolds (Chap. 13). 123–126
76. Chandrasekharan M, Yong J, Shyan M (2005) Recent advances and current developments in
tissue scaffolding. Bio-med Mater Eng 15:159–177
77. Pei B, Wang W, Fan Y, Wang X, Watari F, Li X (2017) Fiber-reinforced scaffolds in soft tissue
engineering. Regener Biomater 4(4):257–268
78. Aibibu D, Hild M, Wöltje M, Cherif C (2016) Textile cell-free scaffolds for in situ tissue
engineering applications, J Mater Sci Mater Med. 27(3):63
P. Madiwale et al.
61. Biranje S, Madiwale P, Shukla R, Adivarekar R (2015) Textile scaffolds as tissue adhesives
(Chap. 7). J Text Assoc 76(2)
62. Prajapati TK, Patel KS (2017) Natural and synthetic polymers used in bioadhesive delivery
system, Int.J. for Innovative Research in Multidisciplinary Field, 3:9, 76–86
63. Lee EJ et al (2017) Progress in materials science application of materials as medical devices
with localized drug delivery capabilities for enhanced wound repair. Prog Mater Sci 89:392–410
64. Tyson AF et al (2013) Survival after burn in a sub-Saharan burn unit: challenges and
opportunities. Burns 39(8):1619–1625
65. Pei B, Wang W, Fan Y, Wang X, Watari F, Li X (2017) Fiber-reinforced scaffolds in soft tissue
engineering. Regener Biomater 4:257–268
66. Biranje S.S., Madiwale PV, Patankar KC, Chhabra R, Dandekar-Jain P, Adivarekar RV
(2019) Hemostasis and anti-necrotic activity of wound-healing dressing containing chitosan
nanoparticles. Int J Biol Macromol 121
67. Sutar T, Madiwale P, Shukla R, Adivarekar RV (2015) Textile scaffolds as wound healing
bandages (Chap. 9). J Text Assoc 76(4)
68. Biranje S, Madiwale P, Adivarekar RV (2018) Porous electrospun casein/PVA nanofibrous mat
for its potential application as wound dressing material. J Porous Mater
69. Santosh B, Madiwale P, Adivarekar RV (2017) Preparation and characterization of chitosan/PVA polymeric film for its potential application as wound dressing material. Indian J
Sci Res 14(2):250–256
70. Rajendran S, Anand SC (2006) Contribution of textiles to medical and healthcare products and
developing innovative medical devices. Indian J Fibre Text Res 31(1):215–229
71. Yang XB et al (2003) Novel osteoinductive biomimetic scaffolds stimulate human osteoprogenitor activity—implications. Conn Tissue Res 44:312–317
72. Madiwale P, Rachana S, Adivarekar R (2016) Textile scaffolds for bone recovery and
replacement (Chap. 10). J Text Assoc 318–321
73. Breier AC (2015) Embroidery technology for hard-tissue scaffolds. In: Biomedical txtiles for
othopaedic and surgical applications (pp 23–43)
74. Madiwale P, Rachana S, Adivarekar R (2016) Textile scaffolds for vascular tissue recovery
(Chap. 12). J Text Assoc 1:47–51
75. Madiwale P, Shukla R, Adivarekar R (2016) Challenges and further scope for textiles in medical
scaffolds (Chap. 13). 123–126
76. Chandrasekharan M, Yong J, Shyan M (2005) Recent advances and current developments in
tissue scaffolding. Bio-med Mater Eng 15:159–177
77. Pei B, Wang W, Fan Y, Wang X, Watari F, Li X (2017) Fiber-reinforced scaffolds in soft tissue
engineering. Regener Biomater 4(4):257–268
78. Aibibu D, Hild M, Wöltje M, Cherif C (2016) Textile cell-free scaffolds for in situ tissue
engineering applications, J Mater Sci Mater Med. 27(3):63
