“Glycosaminoglycans mediate the coacervation of human tropoelastin through dominant charge interactions involving lysine side chains”. The Journal of Biological Chemistry274 (31): 21719–24. (July 1999). doi:10.1074/jbc.274.31.21719. PMID10419484.
“Glycosaminoglycan-mediated coacervation of tropoelastin abolishes the critical concentration, accelerates coacervate formation, and facilitates spherule fusion: implications for tropoelastin microassembly”. Biomacromolecules9 (7): 1739–44. (July 2008). doi:10.1021/bm7013153. PMID18547105.
“Lysyl oxidase: an oxidative enzyme and effector of cell function”. Cellular and Molecular Life Sciences63 (19–20): 2304–16. (October 2006). doi:10.1007/s00018-006-6149-9. PMID16909208.
“Heparan sulphate interacts with tropoelastin, with some tropoelastin peptides and is present in human dermis elastic fibers”. Matrix Biology24 (1): 15–25. (February 2005). doi:10.1016/j.matbio.2004.12.001. PMID15748998.
“Glycosaminoglycans mediate the coacervation of human tropoelastin through dominant charge interactions involving lysine side chains”. The Journal of Biological Chemistry274 (31): 21719–24. (July 1999). doi:10.1074/jbc.274.31.21719. PMID10419484.
“Glycosaminoglycan-mediated coacervation of tropoelastin abolishes the critical concentration, accelerates coacervate formation, and facilitates spherule fusion: implications for tropoelastin microassembly”. Biomacromolecules9 (7): 1739–44. (July 2008). doi:10.1021/bm7013153. PMID18547105.
“Lysyl oxidase: an oxidative enzyme and effector of cell function”. Cellular and Molecular Life Sciences63 (19–20): 2304–16. (October 2006). doi:10.1007/s00018-006-6149-9. PMID16909208.
“Heparan sulphate interacts with tropoelastin, with some tropoelastin peptides and is present in human dermis elastic fibers”. Matrix Biology24 (1): 15–25. (February 2005). doi:10.1016/j.matbio.2004.12.001. PMID15748998.