M. Zhang and J. P. Matinlinna, E-glass fiber reinforced composites in dental applications, Silicon, vol.4, issue.1, pp.73-81, 2012.

D. C. Clupper, M. M. Hall, J. E. Gough, and L. L. Hench, Transactions of the Society for Biomaterials, 2002.

F. Baldini, A. Giannetti, A. A. Mencaglia, and C. Trono, Fiber optic sensors for biomedical applications, Curr Anal Chem, vol.4, issue.4, pp.378-90, 2008.

M. E. Bosch, A. Sanchez, F. S. Rojas, and C. B. Ojeda, Recent development in optical fiber biosensors, Sensors, vol.7, issue.6, pp.797-859, 2007.

L. Hench and S. Best, Ceramics, glasses and glass-ceramics, Biomaterials science, 2004.

A. Keirsse, J. Nazabal, V. Hyodo, K. Inoue, S. Boussard-pledel et al., Chalcogenide glass optical waveguide for infrared biosensing, Sensors, vol.9, issue.9, pp.7398-411, 2009.

O. H. Andersson and K. H. Karlsson, Corrosion of bioactive glass under various in vitro conditions, Advance in Biomaterials, issue.8, 1990.

L. L. Hench and O. H. Andersson, Bioactive glasses. In: Wilson J, editor. An introduction to bioceramics, 1993.

J. Massera, S. Fagerlund, L. Hupa, and M. Hupa, Crystallization mechanism of the bioactive glasses, 45S5 and S53P4, J Am Ceram Soc, vol.95, issue.2, pp.607-620, 2012.

M. A. De-diego, N. J. Coleman, and L. L. Hench, Tensile properties of bioactive fibers for tissue engineering applications, J Biomed Mater Res B Appl Biomater, vol.53, issue.3, pp.199-203, 2000.

M. Brink, The influence of alkali and alkaline earths on the working range for bioactive glasses, J Biomed Mater Res, vol.36, issue.1, pp.109-126, 1997.

E. Pirhonen, L. Moimas, and M. Brink, Mechanical properties of bioactive glass 9-93 fibres, Acta Biomater, vol.2, issue.1, pp.103-110, 2006.

E. Pirhonen, H. Niiranen, T. Niemelä, M. Brink, and P. Törmälä, Manufacturing, mechanical characterization, and in vitro performance of bioactive glass 13-93 fibers, J Biomed Mater Res B, vol.77, issue.2, pp.227-260, 2006.

D. C. Clupper, J. E. Gough, M. M. Hall, A. G. Clare, W. C. Lacourse et al., In vitro bioactivity of S520 glass fibers and initial assessment of osteoblast attachment, J Biomed Mater Res A, vol.67, issue.1, pp.285-94, 2003.

J. Clement, J. M. Manero, and J. A. Planell, Analysis of the structural changes of a phosphate glass during its dissolution in simulated body fluid, J Mater Sci Mater Med, vol.10, issue.12, pp.729-761, 1999.

J. Massera, I. Ahmed, L. Petit, V. Aallos, and L. Hupa, Phosphate-based glass fiber vs. bulk glass: change in fiber optical response to probe in vitro glass reactivity, Mater Sci Eng C, vol.37, pp.251-258, 2014.

S. Lee, A. Obata, D. S. Brauer, and T. Kasuga, Dissolution behavior and cell compatibility of alkali-free MgO-CaO-SrO-TiO 2 -P 2 O 5 glasses for biomedical applications, Biomed Glas, vol.1, pp.151-159, 2015.

M. Islam, K. Z. Hossain, N. Sharmin, A. J. Parsons, and I. Ahmed, Effect of magnesium content on bioactivity of near invert phosphate-based glasses, Int J Appl Glass Sci, vol.8, issue.4, pp.391-402, 2017.

R. Colquhoun and K. E. Tanner, Mechanical behaviour of degradable phosphate glass fibres and composites -a review, Biomed Mater, vol.11, issue.1, p.14105, 2015.

N. Sharmin, M. S. Hasan, A. J. Parsons, C. D. Rudd, and I. Ahmed, Cytocompatibility, mechanical and dissolution properties of high strength boron and iron oxide phosphate glass fibre reinforced bioresorbable composites, J Mech Behav Biomed, vol.59, pp.41-56, 2016.

N. Sharmin, A. J. Parsons, C. D. Rudd, and I. Ahmed, Effect of boron oxide addition on fibre drawing, mechanical properties and dissolution behaviour of phosphate-based glass fibres with fixed 40, 45 and 50 mol% P 2 O 5, J Biomater Appl, vol.29, issue.5, pp.639-53, 2014.

P. Haque, I. Ahmed, A. Parsons, R. Felfel, G. Walker et al., Degradation properties and microstructural analysis of 40P 2 O 5 -24MgO-16CaO-16Na 2 O-4Fe 2 O 3 phosphate glass fibres, J Non-Cryst Solids, vol.375, pp.99-109, 2013.

M. S. Hasan, I. Ahmed, A. Parsons, G. Walker, and C. Scotchford, Cytocompatibility and mechanical properties of short phosphate glass fibre reinforced polylactic acid (PLA) composites: effect of coupling agent mediated interface, J Funct Biomater, vol.3, issue.4, pp.706-731, 2012.

I. Ahmed, A. J. Parsons, G. Palmer, J. C. Knowles, G. S. Walker et al., Weight loss, ion release and initial mechanical properties of a binary calcium phosphate glass fibre/PCL composite, Acta Biomater, vol.4, issue.5, pp.1307-1321, 2008.

V. Sglavo, D. Pugliese, F. Sartori, N. G. Boetti, E. Ceci-ginestrelli et al., Mechanical properties of resorbable calcium-phosphate glass optical fiber and capillaries, J Alloys Compd, vol.778, pp.410-417, 2019.

J. Massera, Y. Shpotyuk, F. Sabatier, T. Jouan, C. Boussard-plédel et al., Processing and characterization of novel borophosphate glasses and fibers for medical applications, J Non-Cryst Solids, vol.425, pp.52-60, 2015.
URL : https://hal.archives-ouvertes.fr/hal-01160139

A. Mishra, F. Désévédavy, F. Smektala, and J. Massera, Core-clad phosphate glass fibers for biosensing, Mater Sci Eng C, vol.96, pp.458-65, 2019.

J. Massera, A. Haldeman, D. Milanese, H. Gebavi, M. Ferraris et al., Processing and characterization of core-clad tellurite glass preforms and fibers fabricated by rotational casting, Opt Mater, vol.32, issue.5, pp.582-590, 2010.

T. Kokubo, H. Kushitani, S. Sakka, T. Kitsugi, and T. Yamamuro, Solutions able to reproduce in vivo surface-structure changes in bioactive glass-ceramic A-W 3, J Biomed Mater Res, vol.24, issue.6, pp.721-755, 1990.

D. Carta, D. Qiu, P. Guerry, A. I. Neel, E. Knowles et al., The effect of composition on the structure of sodium borophosphate glasses, J Non-Cryst Solids, vol.354, issue.31, pp.3671-3678, 2008.

N. Sharmin, M. S. Hasan, A. J. Parsons, D. Furniss, C. A. Scotchford et al., Effect of boron addition on the thermal, degradation, and cytocompatibility properties of phosphate-based glasses, Biomed Res Int, p.902427, 2013.

A. Yao, M. N. Rahaman, J. Lin, and W. Huang, Structure and crystallization behavior of borate-based bioactive glass, J Mater Sci, vol.42, pp.9730-9735, 2007.

H. Gao, T. Tan, and D. Wang, Effect of composition on the release kinetics of phosphate controlled release glasses in aqueous medium, J Control Release, vol.96, issue.1, pp.21-29, 2004.

A. Neel, E. A. Chrzanowski, W. Pickup, D. M. O'deel, L. A. Mordan et al., Structure and properties of strontium-doped phosphate-based glasses, J R Soc Interface, vol.6, issue.34, pp.435-481, 2009.

Y. D. Yiannopoulos, G. D. Chryssikos, and E. I. Kamitsos, Structure and properties of alkaline earth borate glasses, Phys Chem Glasses, vol.42, issue.3, pp.164-72, 2001.

D. Ilieva, B. Jivov, G. Bogachev, C. Petkov, I. Penkov et al., Infrared and Raman spectra of Ga 2 O 3 -P 2 O 5 glasses, J Non-Crystal Solids, vol.283, issue.1-3, pp.195-202, 2001.

P. Shih and H. Shiu, Properties and structural investigations of UV-transmitting vitreous strontium zinc metaphosphate, Mater Chem Phys, vol.106, issue.2-3, pp.222-228, 2007.

Y. M. Moustafa and K. El-egili, Infrared spectra of sodium phosphate glasses, J Non-Crystal Solids, vol.240, issue.1-3, pp.144-53, 1998.

H. Jukola, L. Nikkola, E. Gomes, F. Chiellini, M. Tukiainen et al., Development of a bioactive glass fiber reinforced starch-polycaprolactone composite, J Biomed Mater Res B, vol.87, issue.1, pp.197-203, 2008.

N. C. Lindfors, I. Koski, J. T. Heikkilä, K. Mattila, and A. J. Aho, A prospective randomized 14-year follow-up study of bioactive glass and autogenous bone as bone graft substitutes in benign bone tumors, J Biomed Mater Res B, vol.94, issue.1, pp.157-64, 2010.

F. Ramsteiner and R. Theysohn, The influence of fibre diameter on the tensile behaviour of short-glass-fibre reinforced polymers, Compos Sci Technol, vol.24, issue.3, pp.231-271, 1985.

B. J. Ainslie, K. J. Beales, D. M. Cooper, C. R. Day, and J. D. Rush, Drawingdependent transmission loss in germania-doped silica optical fibres, J Non-Crystal Solids, vol.47, issue.2, pp.243-248, 1982.

H. Stockhorst and R. Bruckner, Structure sensitive measurements on phosphate glass fibers, J Non-Crystal Solids, vol.85, issue.1-2, pp.105-131, 1986.

J. Endo, S. Inaba, and S. Ito, Mechanical properties of anisotropic metaphosphate glasses, J Am Ceram Soc, vol.98, issue.9, pp.2767-71, 2015.

S. Cozien-cazuc, A. Parsons, G. S. Walker, I. A. Jones, and C. D. Rudd, Effects of aqueous aging on the mechanical properties of P 40 Na 20 Ca 16 Mg 24 phosphate glass fibres, J Mater Sci, vol.43, pp.4834-4843, 2008.

B. C. Bunker, G. W. Arnold, and J. A. Wilder, Phosphate glass dissolution in aqueous solutions, J Non-Crystal Solids, vol.64, issue.3, pp.291-316, 1984.

S. Fagerlund, L. Hupa, M. Hupa, R. Narayan, J. Mckittrick et al., Comparison of reactions of bioactive glasses in different aqueous solutions, Advances in Bioceramics and Biotechnologies, 2010.

M. Bohner and J. Lemaitre, Can bioactivity be tested in vitro with SBF solution?, Biomaterials, vol.30, issue.12, pp.2175-2184, 2009.

J. Massera, A. Kokkari, T. Närhi, and L. Hupa, The influence of SrO and CaO in silicate and phosphate bioactive glasses on human gingival fibroblasts, J Mater Sci Mater Med, vol.26, issue.6, p.196, 2015.

I. Ahmed, S. S. Shaharuddin, N. Sharmin, D. Furniss, and C. Rudd, Core/ clad phosphate glass fibres containing iron and/or titanium, Biomed Glas, vol.1, pp.20-30, 2015.

C. R. Kurkjian, Mechanical properties of phosphate glasses, J Non-Crystal Solids, pp.207-219, 2000.

V. Pukh, L. Baikova, M. Kireenko, and L. Tikhonova, On the kinetics of crack growth in glass, Glass Phys Chem, vol.35, issue.6, pp.560-566, 2009.

P. Järvelä, Properties of glass fibres and their applications in porous composites, 1983.

M. Goldstein and T. H. Davis, Glass fibers with oriented chain molecules, J Am Chem Soc, vol.38, issue.7, pp.223-229, 1955.

M. E. Milberg and M. C. Daly, Structure of oriented sodium metaphosphate glass fibers, J Chem Phys, vol.39, pp.2966-73, 1963.

E. Mura, J. Lousteau, D. Milanese, S. Abrate, and V. M. Sglavo, Phosphate glasses for optical fibers: synthesis, characterization and mechanical properties, J Non-Crystal Solids, vol.362, issue.1, pp.147-51, 2013.

D. S. Brauer, C. Rüssel, S. Vogt, J. Weisser, and M. Schnabelrauch, Degradable phosphate glass fibers reinforced polymer matrices: mechanical properties and cell response, J Mater Sci Mater Med, vol.19, pp.121-128, 2008.

A. U. Daniels, M. Chang, K. P. Andriano, and J. Heller, Mechanical properties of biodegradable polymers and composites proposed for internal fixation of bone, J Appl Biomater, vol.1, issue.1, pp.57-78, 1990.

A. Schülzgen, L. Li, X. Zhu, J. Albert, and N. Peyghambarian, Recent Advances in Phosphate Glass Fiber Lasers, Conference on Quantum electronics and Laser Science Conference, pp.2-4, 2009.