(en) C. Halperin, S. Mutchnik, A. Agronin et M. Molotskii, « Piezoelectric Effect in Human Bones Studied in Nanometer Scale », Nano Letters, vol. 4, no 7, , p. 1253–1256 (ISSN1530-6984 et 1530-6992, DOI10.1021/nl049453i, lire en ligne, consulté le )
(en) Keiji Sato, Kentaro Yomogida, Takayuki Wada et Tetuya Yorihuzi, « Type XXVI collagen, a new member of the collagen family, is specifically expressed in the testis and ovary », The Journal of Biological Chemistry, vol. 277, no 40, , p. 37678–37684 (ISSN0021-9258, PMID12145293, DOI10.1074/jbc.M205347200, lire en ligne, consulté le )
(en) Kevin Bischof, Anna Maria Moitzi, Savvas Stafilidis et Daniel König, « Impact of Collagen Peptide Supplementation in Combination with Long-Term Physical Training on Strength, Musculotendinous Remodeling, Functional Recovery, and Body Composition in Healthy Adults: A Systematic Review with Meta-analysis », Sports Medicine, (ISSN1179-2035, DOI10.1007/s40279-024-02079-0, lire en ligne, consulté le )
(en) Marius Kirmse, Vanessa Oertzen-Hagemann, Markus de Marées et Wilhelm Bloch, « Prolonged Collagen Peptide Supplementation and Resistance Exercise Training Affects Body Composition in Recreationally Active Men », Nutrients, vol. 11, no 5, , p. 1154 (ISSN2072-6643, PMID31126103, PMCIDPMC6566878, DOI10.3390/nu11051154, lire en ligne, consulté le )
(en) Jeferson L. Jacinto, João P. Nunes, Stefan H. M. Gorissen et Danila M. G. Capel, « Whey Protein Supplementation Is Superior to Leucine-Matched Collagen Peptides to Increase Muscle Thickness During a 10-Week Resistance Training Program in Untrained Young Adults », International Journal of Sport Nutrition and Exercise Metabolism, vol. 32, no 3, , p. 133–143 (ISSN1543-2742 et 1526-484X, DOI10.1123/ijsnem.2021-0265, lire en ligne, consulté le )
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(en) Minna Nokelainen, Hongmin Tu, Annamari Vuorela, Holger Notbohm, Kari I. Kivirikko et Johanna Myllyharju, « High-level production of human type I collagen in the yeast Pichia pastoris », Yeast, vol. 18, no 9, , p. 797–806 (ISSN1097-0061, DOI10.1002/yea.730, lire en ligne, consulté le )
(en) Outi Pakkanen, Asta Pirskanen et Johanna Myllyharju, « Selective expression of nonsecreted triple-helical and secreted single-chain recombinant collagen fragments in the yeast Pichia pastoris », Journal of Biotechnology, vol. 123, no 2, , p. 248–256 (ISSN0168-1656, DOI10.1016/j.jbiotec.2005.11.012, lire en ligne, consulté le )
(en) Chi Zhang, Daidi Fan, Long'an Shang, Xiaoxuan Ma, Yan'e Luo, Wenjiao Xue et Pengfei Gao, « Optimization of fermentation process for human-like collagen production of recombinant escherichia coli using response surface methodology », Chinese Journal of Chemical Engineering, vol. 18, no 1, , p. 137–142 (ISSN1004-9541, DOI10.1016/S1004-9541(08)60334-1, lire en ligne, consulté le )
(en) Bo An, David L. Kaplan et Barbara Brodsky, « Engineered recombinant bacterial collagen as an alternative collagen-based biomaterial for tissue engineering », Frontiers in Chemistry, vol. 2, , p. 40 (ISSN2296-2646, DOI10.3389/fchem.2014.00040, lire en ligne, consulté le )
(en) Tianyi Wang, Jiewei Lew, Jayaraman Premkumar, Chueh Loo Poh et May Win Naing, « Production of recombinant collagen: state of the art and challenges », Engineering Biology, vol. 1, no 1, , p. 18–23 (ISSN2398-6182, DOI10.1049/enb.2017.0003, lire en ligne, consulté le )
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(en) Sujoy Kumar Ghosh et Dipankar Mandal, « Bio-assembled, piezoelectric prawn shell made self-powered wearable sensor for non-invasive physiological signal monitoring », Applied Physics Letters, vol. 110, no 12, , p. 123701 (ISSN0003-6951 et 1077-3118, DOI10.1063/1.4979081, lire en ligne, consulté le )
(en) C. Halperin, S. Mutchnik, A. Agronin et M. Molotskii, « Piezoelectric Effect in Human Bones Studied in Nanometer Scale », Nano Letters, vol. 4, no 7, , p. 1253–1256 (ISSN1530-6984 et 1530-6992, DOI10.1021/nl049453i, lire en ligne, consulté le )
(en) E. Fukada, « History and recent progress in piezoelectric polymers », IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control, vol. 47, no 6, , p. 1277–1290 (ISSN0885-3010, DOI10.1109/58.883516, lire en ligne, consulté le )
(en) Canan Dagdeviren, Yewang Su, Pauline Joe et Raissa Yona, « Conformable amplified lead zirconate titanate sensors with enhanced piezoelectric response for cutaneous pressure monitoring », Nature Communications, vol. 5, no 1, , p. 4496 (ISSN2041-1723, DOI10.1038/ncomms5496, lire en ligne, consulté le )
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(en) Bo An, David L. Kaplan et Barbara Brodsky, « Engineered recombinant bacterial collagen as an alternative collagen-based biomaterial for tissue engineering », Frontiers in Chemistry, vol. 2, , p. 40 (ISSN2296-2646, DOI10.3389/fchem.2014.00040, lire en ligne, consulté le )
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(en) Barbara Ward, « 'Unraveling Collagen' structure to be installed in Orange Memorial Park Sculpture Garden », Expert Rev. Proteomics, vol. 3 (2), no 2, , p. 174 (DOI10.1586/14789450.3.2.169, lire en ligne)
(en) Jeferson L. Jacinto, João P. Nunes, Stefan H. M. Gorissen et Danila M. G. Capel, « Whey Protein Supplementation Is Superior to Leucine-Matched Collagen Peptides to Increase Muscle Thickness During a 10-Week Resistance Training Program in Untrained Young Adults », International Journal of Sport Nutrition and Exercise Metabolism, vol. 32, no 3, , p. 133–143 (ISSN1543-2742 et 1526-484X, DOI10.1123/ijsnem.2021-0265, lire en ligne, consulté le )
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(en) E. Fukada, « History and recent progress in piezoelectric polymers », IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control, vol. 47, no 6, , p. 1277–1290 (ISSN0885-3010, DOI10.1109/58.883516, lire en ligne, consulté le )
(en) Keiji Sato, Kentaro Yomogida, Takayuki Wada et Tetuya Yorihuzi, « Type XXVI collagen, a new member of the collagen family, is specifically expressed in the testis and ovary », The Journal of Biological Chemistry, vol. 277, no 40, , p. 37678–37684 (ISSN0021-9258, PMID12145293, DOI10.1074/jbc.M205347200, lire en ligne, consulté le )
(en) Kevin Bischof, Anna Maria Moitzi, Savvas Stafilidis et Daniel König, « Impact of Collagen Peptide Supplementation in Combination with Long-Term Physical Training on Strength, Musculotendinous Remodeling, Functional Recovery, and Body Composition in Healthy Adults: A Systematic Review with Meta-analysis », Sports Medicine, (ISSN1179-2035, DOI10.1007/s40279-024-02079-0, lire en ligne, consulté le )
(en) Marius Kirmse, Vanessa Oertzen-Hagemann, Markus de Marées et Wilhelm Bloch, « Prolonged Collagen Peptide Supplementation and Resistance Exercise Training Affects Body Composition in Recreationally Active Men », Nutrients, vol. 11, no 5, , p. 1154 (ISSN2072-6643, PMID31126103, PMCIDPMC6566878, DOI10.3390/nu11051154, lire en ligne, consulté le )
(en) Jeferson L. Jacinto, João P. Nunes, Stefan H. M. Gorissen et Danila M. G. Capel, « Whey Protein Supplementation Is Superior to Leucine-Matched Collagen Peptides to Increase Muscle Thickness During a 10-Week Resistance Training Program in Untrained Young Adults », International Journal of Sport Nutrition and Exercise Metabolism, vol. 32, no 3, , p. 133–143 (ISSN1543-2742 et 1526-484X, DOI10.1123/ijsnem.2021-0265, lire en ligne, consulté le )
(en) N. J. Bulleid, D. C. A. John et K. E. Kadler, « Recombinant expression systems for the production of collagen », Biochemical Society Transactions, vol. 28, no 4, , p. 350–353 (ISSN0300-5127, DOI10.1042/bst0280350, lire en ligne, consulté le )
(en) Minna Nokelainen, Hongmin Tu, Annamari Vuorela, Holger Notbohm, Kari I. Kivirikko et Johanna Myllyharju, « High-level production of human type I collagen in the yeast Pichia pastoris », Yeast, vol. 18, no 9, , p. 797–806 (ISSN1097-0061, DOI10.1002/yea.730, lire en ligne, consulté le )
(en) Outi Pakkanen, Asta Pirskanen et Johanna Myllyharju, « Selective expression of nonsecreted triple-helical and secreted single-chain recombinant collagen fragments in the yeast Pichia pastoris », Journal of Biotechnology, vol. 123, no 2, , p. 248–256 (ISSN0168-1656, DOI10.1016/j.jbiotec.2005.11.012, lire en ligne, consulté le )
(en) Chi Zhang, Daidi Fan, Long'an Shang, Xiaoxuan Ma, Yan'e Luo, Wenjiao Xue et Pengfei Gao, « Optimization of fermentation process for human-like collagen production of recombinant escherichia coli using response surface methodology », Chinese Journal of Chemical Engineering, vol. 18, no 1, , p. 137–142 (ISSN1004-9541, DOI10.1016/S1004-9541(08)60334-1, lire en ligne, consulté le )
(en) Bo An, David L. Kaplan et Barbara Brodsky, « Engineered recombinant bacterial collagen as an alternative collagen-based biomaterial for tissue engineering », Frontiers in Chemistry, vol. 2, , p. 40 (ISSN2296-2646, DOI10.3389/fchem.2014.00040, lire en ligne, consulté le )
(en) Tianyi Wang, Jiewei Lew, Jayaraman Premkumar, Chueh Loo Poh et May Win Naing, « Production of recombinant collagen: state of the art and challenges », Engineering Biology, vol. 1, no 1, , p. 18–23 (ISSN2398-6182, DOI10.1049/enb.2017.0003, lire en ligne, consulté le )
(en) Sujoy Kumar Ghosh et Dipankar Mandal, « Bio-assembled, piezoelectric prawn shell made self-powered wearable sensor for non-invasive physiological signal monitoring », Applied Physics Letters, vol. 110, no 12, , p. 123701 (ISSN0003-6951 et 1077-3118, DOI10.1063/1.4979081, lire en ligne, consulté le )
(en) C. Halperin, S. Mutchnik, A. Agronin et M. Molotskii, « Piezoelectric Effect in Human Bones Studied in Nanometer Scale », Nano Letters, vol. 4, no 7, , p. 1253–1256 (ISSN1530-6984 et 1530-6992, DOI10.1021/nl049453i, lire en ligne, consulté le )
(en) E. Fukada, « History and recent progress in piezoelectric polymers », IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control, vol. 47, no 6, , p. 1277–1290 (ISSN0885-3010, DOI10.1109/58.883516, lire en ligne, consulté le )
(en) Canan Dagdeviren, Yewang Su, Pauline Joe et Raissa Yona, « Conformable amplified lead zirconate titanate sensors with enhanced piezoelectric response for cutaneous pressure monitoring », Nature Communications, vol. 5, no 1, , p. 4496 (ISSN2041-1723, DOI10.1038/ncomms5496, lire en ligne, consulté le )
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(en) Andrzej Fertala, « Three decades of research on recombinant collagens: reinventing the wheel or developing new biomedical products? », Bioengineering, vol. 7, no 4, , p. 155 (DOI10.3390/bioengineering7040155, lire en ligne, consulté le )
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(en) Canan Dagdeviren, Yewang Su, Pauline Joe et Raissa Yona, « Conformable amplified lead zirconate titanate sensors with enhanced piezoelectric response for cutaneous pressure monitoring », Nature Communications, vol. 5, no 1, , p. 4496 (ISSN2041-1723, DOI10.1038/ncomms5496, lire en ligne, consulté le )
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(en) Keiji Sato, Kentaro Yomogida, Takayuki Wada et Tetuya Yorihuzi, « Type XXVI collagen, a new member of the collagen family, is specifically expressed in the testis and ovary », The Journal of Biological Chemistry, vol. 277, no 40, , p. 37678–37684 (ISSN0021-9258, PMID12145293, DOI10.1074/jbc.M205347200, lire en ligne, consulté le )
(en) Marius Kirmse, Vanessa Oertzen-Hagemann, Markus de Marées et Wilhelm Bloch, « Prolonged Collagen Peptide Supplementation and Resistance Exercise Training Affects Body Composition in Recreationally Active Men », Nutrients, vol. 11, no 5, , p. 1154 (ISSN2072-6643, PMID31126103, PMCIDPMC6566878, DOI10.3390/nu11051154, lire en ligne, consulté le )
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(en) Keiji Sato, Kentaro Yomogida, Takayuki Wada et Tetuya Yorihuzi, « Type XXVI collagen, a new member of the collagen family, is specifically expressed in the testis and ovary », The Journal of Biological Chemistry, vol. 277, no 40, , p. 37678–37684 (ISSN0021-9258, PMID12145293, DOI10.1074/jbc.M205347200, lire en ligne, consulté le )
(en) N. G. Kjeld et M. A. Karsdal, « Chapter 26 - Type XXVI Collagen », dans Biochemistry of Collagens, Laminins and Elastin, Academic Press, (ISBN978-0-12-809847-9, lire en ligne), p. 151–153
(en) Outi Pakkanen, Asta Pirskanen et Johanna Myllyharju, « Selective expression of nonsecreted triple-helical and secreted single-chain recombinant collagen fragments in the yeast Pichia pastoris », Journal of Biotechnology, vol. 123, no 2, , p. 248–256 (ISSN0168-1656, DOI10.1016/j.jbiotec.2005.11.012, lire en ligne, consulté le )
(en) Chi Zhang, Daidi Fan, Long'an Shang, Xiaoxuan Ma, Yan'e Luo, Wenjiao Xue et Pengfei Gao, « Optimization of fermentation process for human-like collagen production of recombinant escherichia coli using response surface methodology », Chinese Journal of Chemical Engineering, vol. 18, no 1, , p. 137–142 (ISSN1004-9541, DOI10.1016/S1004-9541(08)60334-1, lire en ligne, consulté le )
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(en) Sujoy Kumar Ghosh et Dipankar Mandal, « Bio-assembled, piezoelectric prawn shell made self-powered wearable sensor for non-invasive physiological signal monitoring », Applied Physics Letters, vol. 110, no 12, , p. 123701 (ISSN0003-6951 et 1077-3118, DOI10.1063/1.4979081, lire en ligne, consulté le )
(en) Kevin Bischof, Anna Maria Moitzi, Savvas Stafilidis et Daniel König, « Impact of Collagen Peptide Supplementation in Combination with Long-Term Physical Training on Strength, Musculotendinous Remodeling, Functional Recovery, and Body Composition in Healthy Adults: A Systematic Review with Meta-analysis », Sports Medicine, (ISSN1179-2035, DOI10.1007/s40279-024-02079-0, lire en ligne, consulté le )
(en) Minna Nokelainen, Hongmin Tu, Annamari Vuorela, Holger Notbohm, Kari I. Kivirikko et Johanna Myllyharju, « High-level production of human type I collagen in the yeast Pichia pastoris », Yeast, vol. 18, no 9, , p. 797–806 (ISSN1097-0061, DOI10.1002/yea.730, lire en ligne, consulté le )
(en) Tianyi Wang, Jiewei Lew, Jayaraman Premkumar, Chueh Loo Poh et May Win Naing, « Production of recombinant collagen: state of the art and challenges », Engineering Biology, vol. 1, no 1, , p. 18–23 (ISSN2398-6182, DOI10.1049/enb.2017.0003, lire en ligne, consulté le )