References
84
42. Pellis, Alessandro, Georg M. Guebitz, et Gibson Stephen Nyanhongo. « Chitosan: Sources,
Processing and Modification Techniques ». Gels 8, n
o 7 (21 juin 2022): 393.
https://doi.org/10.3390/gels8070393.
43. Qi, Lifeng, Zirong Xu, Xia Jiang, Caihong Hu, et Xiangfei Zou. « Preparation and
Antibacterial Activity of Chitosan Nanoparticles ». Carbohydrate Research 339, n
o 16
(novembre 2004) : 2693-2700. https://doi.org/10.1016/j.carres.2004.09.007.
44. Queiroz, Moacir, Karoline Melo, Diego Sabry, Guilherme Sassaki, et Hugo Rocha. « Does
the Use of Chitosan Contribute to Oxalate Kidney Stone Formation? » Marine drugs 13 (29
décembre 2014) : 141-58. https://doi.org/10.3390/md13010141.
45. Rkhaila, Amine, Tarek Chtouki, HassaneErguig, Noureddine El Haloui, et Khadija Ounine.
« Chemical Proprieties of Biopolymers (Chitin/Chitosan) and Their Synergic Effects with
Endophytic Bacillus Species: Unlimited Applications in Agriculture ». Molecules 26, n
o 4
(20 février 2021) : 1117. https://doi.org/10.3390/molecules26041117.
46. Sabnis, Shobhan, et Lawrence H. Block. « Improved Infrared Spectroscopic Method for the
Analysis of Degree of N-Deacetylation of Chitosan ». Polymer Bulletin 39, n
o 1 (juillet
1997): 67-71. https://doi.org/10.1007/s002890050121.
47. Said Al Hoqani, Horiya Ali, Noura AL-Shaqsi, Mohammed Amzad Hossain, et Mohammed
Abdullah Al Sibani. « Isolation and Optimization of the Method for Industrial Production of
Chitin and Chitosan from Omani Shrimp Shell ». Carbohydrate Research 492 (juin 2020):
108001. https://doi.org/10.1016/j.carres.2020.108001.
48. Sami, Diana G., Hana H. Heiba, et Ahmed Abdellatif. « Wound Healing Models: A
Systematic Review of Animal and Non-Animal Models ». WoundMedicine 24, n
o 1 (mars
2019): 8-17. https://doi.org/10.1016/j.wndm.2018.12.001.
49. Santos, Vanessa P., Nathália S. S. Marques, Patrícia C. S. V. Maia, Marcos Antonio Barbosa
de Lima, Luciana de Oliveira Franco, et Galba Maria de Campos-Takaki. « Seafood Waste
as Attractive Source of Chitin and Chitosan Production and Their Applications ».
International Journal of Molecular Sciences 21, n
o 12 (16 juin 2020): 4290.
https://doi.org/10.3390/ijms21124290.
50. Se-Kwon Kim. Chitin, Chitosan, Oligosaccharides and Their Derivatives: Biological
Activities and Applications. Boca Raton: Taylor & Francis, 2011.
51. Şenel, Sevda, et Susan J McClure. « Potential Applications of Chitosan in Veterinary
Medicine ». Advanced Drug Delivery Reviews 56, n
o 10 (juin 2004): 1467-80.
https://doi.org/10.1016/j.addr.2004.02.007.
52. Sikorski, Dominik, Marta Bauer, Justyna Frączyk, et Zbigniew Draczyński. « Antibacterial
and Antifungal Properties of Modified Chitosan Nonwovens ». Polymers 14, n
o 9 (21 avril
2022): 1690. https://doi.org/10.3390/polym14091690.
53. Singh Dhillon, Gurpreet, Surinder Kaur, Saurabh Jyoti Sarma, Satinder Kaur Brar, Mausam
Verma, et Rao YadagiriSurampalli. « Recent Development in Applications of Important
Biopolymer Chitosan in Biomedicine, Pharmaceuticals and Personal Care Products ».
Current
Tissue
Engineering
2,
n
o
1
(1
février
2013):
20-40.
https://doi.org/10.2174/2211542011302010004.
54. Singh, Rita, Kirti Shitiz, et Antaryami Singh. « Chitin and Chitosan: Biopolymers for Wound
Management: Chitin and Chitosan: Biopolymers for Wound Management ». International
Wound Journal 14, n
o 6 (décembre 2017): 1276-89. https://doi.org/10.1111/iwj.12797.
55. Stasińska-Jakubas, Maria, et Barbara Hawrylak-Nowak. « Protective, Biostimulating, and
Eliciting Effects of Chitosan and Its Derivatives on Crop Plants ». Molecules 27, n
o 9 (28
avril 2022): 2801. https://doi.org/10.3390/molecules27092801.
84
42. Pellis, Alessandro, Georg M. Guebitz, et Gibson Stephen Nyanhongo. « Chitosan: Sources,
Processing and Modification Techniques ». Gels 8, n
o 7 (21 juin 2022): 393.
https://doi.org/10.3390/gels8070393.
43. Qi, Lifeng, Zirong Xu, Xia Jiang, Caihong Hu, et Xiangfei Zou. « Preparation and
Antibacterial Activity of Chitosan Nanoparticles ». Carbohydrate Research 339, n
o 16
(novembre 2004) : 2693-2700. https://doi.org/10.1016/j.carres.2004.09.007.
44. Queiroz, Moacir, Karoline Melo, Diego Sabry, Guilherme Sassaki, et Hugo Rocha. « Does
the Use of Chitosan Contribute to Oxalate Kidney Stone Formation? » Marine drugs 13 (29
décembre 2014) : 141-58. https://doi.org/10.3390/md13010141.
45. Rkhaila, Amine, Tarek Chtouki, HassaneErguig, Noureddine El Haloui, et Khadija Ounine.
« Chemical Proprieties of Biopolymers (Chitin/Chitosan) and Their Synergic Effects with
Endophytic Bacillus Species: Unlimited Applications in Agriculture ». Molecules 26, n
o 4
(20 février 2021) : 1117. https://doi.org/10.3390/molecules26041117.
46. Sabnis, Shobhan, et Lawrence H. Block. « Improved Infrared Spectroscopic Method for the
Analysis of Degree of N-Deacetylation of Chitosan ». Polymer Bulletin 39, n
o 1 (juillet
1997): 67-71. https://doi.org/10.1007/s002890050121.
47. Said Al Hoqani, Horiya Ali, Noura AL-Shaqsi, Mohammed Amzad Hossain, et Mohammed
Abdullah Al Sibani. « Isolation and Optimization of the Method for Industrial Production of
Chitin and Chitosan from Omani Shrimp Shell ». Carbohydrate Research 492 (juin 2020):
108001. https://doi.org/10.1016/j.carres.2020.108001.
48. Sami, Diana G., Hana H. Heiba, et Ahmed Abdellatif. « Wound Healing Models: A
Systematic Review of Animal and Non-Animal Models ». WoundMedicine 24, n
o 1 (mars
2019): 8-17. https://doi.org/10.1016/j.wndm.2018.12.001.
49. Santos, Vanessa P., Nathália S. S. Marques, Patrícia C. S. V. Maia, Marcos Antonio Barbosa
de Lima, Luciana de Oliveira Franco, et Galba Maria de Campos-Takaki. « Seafood Waste
as Attractive Source of Chitin and Chitosan Production and Their Applications ».
International Journal of Molecular Sciences 21, n
o 12 (16 juin 2020): 4290.
https://doi.org/10.3390/ijms21124290.
50. Se-Kwon Kim. Chitin, Chitosan, Oligosaccharides and Their Derivatives: Biological
Activities and Applications. Boca Raton: Taylor & Francis, 2011.
51. Şenel, Sevda, et Susan J McClure. « Potential Applications of Chitosan in Veterinary
Medicine ». Advanced Drug Delivery Reviews 56, n
o 10 (juin 2004): 1467-80.
https://doi.org/10.1016/j.addr.2004.02.007.
52. Sikorski, Dominik, Marta Bauer, Justyna Frączyk, et Zbigniew Draczyński. « Antibacterial
and Antifungal Properties of Modified Chitosan Nonwovens ». Polymers 14, n
o 9 (21 avril
2022): 1690. https://doi.org/10.3390/polym14091690.
53. Singh Dhillon, Gurpreet, Surinder Kaur, Saurabh Jyoti Sarma, Satinder Kaur Brar, Mausam
Verma, et Rao YadagiriSurampalli. « Recent Development in Applications of Important
Biopolymer Chitosan in Biomedicine, Pharmaceuticals and Personal Care Products ».
Current
Tissue
Engineering
2,
n
o
1
(1
février
2013):
20-40.
https://doi.org/10.2174/2211542011302010004.
54. Singh, Rita, Kirti Shitiz, et Antaryami Singh. « Chitin and Chitosan: Biopolymers for Wound
Management: Chitin and Chitosan: Biopolymers for Wound Management ». International
Wound Journal 14, n
o 6 (décembre 2017): 1276-89. https://doi.org/10.1111/iwj.12797.
55. Stasińska-Jakubas, Maria, et Barbara Hawrylak-Nowak. « Protective, Biostimulating, and
Eliciting Effects of Chitosan and Its Derivatives on Crop Plants ». Molecules 27, n
o 9 (28
avril 2022): 2801. https://doi.org/10.3390/molecules27092801.
