Fabrication of Nanostructured Scaffolds …
331
References
1. Li X, Wang L, Fan Y, Feng Q, Cui FZ, Watari F (2013) Nanostructured scaffolds for bone
tissue engineering. J Biomed Mater Res, Part A 101(8):2424–2435
2. Ramsden J (2011) Nanotechnology: an introduction. William Andrew. https://doi.org/10.1016/
B978-0-08-096447-8.00006-5
3. McMahon RE, Wang L, Skoracki R, Mathur AB (2013) Development of nanomaterials for
bone repair and regeneration. J Biomed Mater Res B Appl Biomater 101(2):387–397
4. Chen CS, Mrksich M, Huang S, Whitesides GM, Ingber DE (1997) Geometric control of cell
life and death. Science 276(5317):1425–1428
5. Liu H, Yazici H, Ergun C, Webster TJ, Bermek H (2008) An in vitro evaluation of the Ca/P
ratio for the cytocompatibility of nano-to-micron particulate calcium phosphates for bone
regeneration. Acta Biomater 4(5):1472–1479
6. Pi¸ skin E (1997) Biomaterials in different forms for tissue engineering: an overview. In:
Materials science forum. Trans Tech Publ, pp 1–14
7. Weber JN, White EW (1972) Carbon-metal graded composites for permanent osseous
attachment of non-porous metals. Mater Res Bull 7(9):1005–1016
8. Freeman JW, Wright LD, Laurencin CT, Bhattacharyya S (2008) Nanofabrication techniques.
Biomedical nanostructures. Wiley, Hoboken, NJ, pp 3–24
9. Chen VJ, Ma PX (2004) Nano-fibrous poly (L-lactic acid) scaffolds with interconnected
spherical macropores. Biomaterials 25(11):2065–2073
10. Sun S, Zeng H, Robinson DB, Raoux S, Rice PM, Wang SX, Li G (2004) Monodisperse mfe2o4
(m = fe, co, mn) nanoparticles. J Am Chem Soc 126(1):273–279
11. Hata K, Futaba DN, Mizuno K, Namai T, Yumura M, Iijima S (2004) Water-assisted highly
efficient synthesis of impurity-free single-walled carbon nanotubes. Science 306(5700):1362–
1364
12. Venugopal JR, Low S, Choon AT, Kumar AB, Ramakrishna S (2008) Nanobioengineered electrospun composite nanofibers and osteoblasts for bone regeneration. Artif Organs 32(5):388–
397
13. Zhang L, Webster TJ (2009) Nanotechnology and nanomaterials: promises for improved tissue
regeneration. Nano today 4(1):66–80
14. Komaki H, Tanaka T, Chazono M, Kikuchi T (2006) Repair of segmental bone defects in
rabbit tibiae using a complex of β-tricalcium phosphate, type I collagen, and fibroblast growth
factor-2. Biomaterials 27(29):5118–5126
15. Gamradt SC, Lieberman JR (2004) Genetic modification of stem cells to enhance bone repair.
Ann Biomed Eng 32(1):136–147
16. Agarwal S, Wendorff JH, Greiner A (2008) Use of electrospinning technique for biomedical
applications. Polymer 49(26):5603–5621
17. Atala A (2008) Bioengineered tissues for urogenital repair in children. Pediatr Res 63(5):569–
575
18. Kim B-S, Mooney DJ (1998) Development of biocompatible synthetic extracellular matrices
for tissue engineering. Trends Biotechnol 16(5):224–230
19. Kim N, Lee S, Atala A (2013) Biomedical nanomaterials in tissue engineering. In: Nanomaterials in tissue engineering. Elsevier, pp 1–25e
20. Namdari M, Eatemadi A (2016) Nanofibrous bioengineered heart valve—application in
paediatric medicine. Biomed Pharmacother 84:1179–1188
21. Ashtikar M, Wacker MG (2018) Nanopharmaceuticals for wound healing–lost in translation?
Adv Drug Deliv Rev 129:194–218
22. Goldberg M, Langer R, Jia X (2007) Nanostructured materials for applications in drug delivery
and tissue engineering. J Biomater Sci Polym Ed 18(3):241–268
23. Smith I, Liu X, Smith L, Ma P (2009) Nanostructured polymer scaffolds for tissue engineering
and regenerative medicine. Wiley Interdiscip Rev: Nanomed Nanobiotechnol 1(2):226–236
24. Sheikh Z, Najeeb S, Khurshid Z, Verma V, Rashid H, Glogauer M (2015) Biodegradable
materials for bone repair and tissue engineering applications. Materials 8(9):5744–5794
331
References
1. Li X, Wang L, Fan Y, Feng Q, Cui FZ, Watari F (2013) Nanostructured scaffolds for bone
tissue engineering. J Biomed Mater Res, Part A 101(8):2424–2435
2. Ramsden J (2011) Nanotechnology: an introduction. William Andrew. https://doi.org/10.1016/
B978-0-08-096447-8.00006-5
3. McMahon RE, Wang L, Skoracki R, Mathur AB (2013) Development of nanomaterials for
bone repair and regeneration. J Biomed Mater Res B Appl Biomater 101(2):387–397
4. Chen CS, Mrksich M, Huang S, Whitesides GM, Ingber DE (1997) Geometric control of cell
life and death. Science 276(5317):1425–1428
5. Liu H, Yazici H, Ergun C, Webster TJ, Bermek H (2008) An in vitro evaluation of the Ca/P
ratio for the cytocompatibility of nano-to-micron particulate calcium phosphates for bone
regeneration. Acta Biomater 4(5):1472–1479
6. Pi¸ skin E (1997) Biomaterials in different forms for tissue engineering: an overview. In:
Materials science forum. Trans Tech Publ, pp 1–14
7. Weber JN, White EW (1972) Carbon-metal graded composites for permanent osseous
attachment of non-porous metals. Mater Res Bull 7(9):1005–1016
8. Freeman JW, Wright LD, Laurencin CT, Bhattacharyya S (2008) Nanofabrication techniques.
Biomedical nanostructures. Wiley, Hoboken, NJ, pp 3–24
9. Chen VJ, Ma PX (2004) Nano-fibrous poly (L-lactic acid) scaffolds with interconnected
spherical macropores. Biomaterials 25(11):2065–2073
10. Sun S, Zeng H, Robinson DB, Raoux S, Rice PM, Wang SX, Li G (2004) Monodisperse mfe2o4
(m = fe, co, mn) nanoparticles. J Am Chem Soc 126(1):273–279
11. Hata K, Futaba DN, Mizuno K, Namai T, Yumura M, Iijima S (2004) Water-assisted highly
efficient synthesis of impurity-free single-walled carbon nanotubes. Science 306(5700):1362–
1364
12. Venugopal JR, Low S, Choon AT, Kumar AB, Ramakrishna S (2008) Nanobioengineered electrospun composite nanofibers and osteoblasts for bone regeneration. Artif Organs 32(5):388–
397
13. Zhang L, Webster TJ (2009) Nanotechnology and nanomaterials: promises for improved tissue
regeneration. Nano today 4(1):66–80
14. Komaki H, Tanaka T, Chazono M, Kikuchi T (2006) Repair of segmental bone defects in
rabbit tibiae using a complex of β-tricalcium phosphate, type I collagen, and fibroblast growth
factor-2. Biomaterials 27(29):5118–5126
15. Gamradt SC, Lieberman JR (2004) Genetic modification of stem cells to enhance bone repair.
Ann Biomed Eng 32(1):136–147
16. Agarwal S, Wendorff JH, Greiner A (2008) Use of electrospinning technique for biomedical
applications. Polymer 49(26):5603–5621
17. Atala A (2008) Bioengineered tissues for urogenital repair in children. Pediatr Res 63(5):569–
575
18. Kim B-S, Mooney DJ (1998) Development of biocompatible synthetic extracellular matrices
for tissue engineering. Trends Biotechnol 16(5):224–230
19. Kim N, Lee S, Atala A (2013) Biomedical nanomaterials in tissue engineering. In: Nanomaterials in tissue engineering. Elsevier, pp 1–25e
20. Namdari M, Eatemadi A (2016) Nanofibrous bioengineered heart valve—application in
paediatric medicine. Biomed Pharmacother 84:1179–1188
21. Ashtikar M, Wacker MG (2018) Nanopharmaceuticals for wound healing–lost in translation?
Adv Drug Deliv Rev 129:194–218
22. Goldberg M, Langer R, Jia X (2007) Nanostructured materials for applications in drug delivery
and tissue engineering. J Biomater Sci Polym Ed 18(3):241–268
23. Smith I, Liu X, Smith L, Ma P (2009) Nanostructured polymer scaffolds for tissue engineering
and regenerative medicine. Wiley Interdiscip Rev: Nanomed Nanobiotechnol 1(2):226–236
24. Sheikh Z, Najeeb S, Khurshid Z, Verma V, Rashid H, Glogauer M (2015) Biodegradable
materials for bone repair and tissue engineering applications. Materials 8(9):5744–5794
