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Cryopreservation: Extending the viability of biological material from sea urchin (Echinometra lucunter) in ecotoxicity tests. , Ribeiro RC, da Silva Veronez AC, Tovar TT, Adams S, Bartolomeu DA, Peronico C, Furley TH., Cryobiology. February 1, 2018; 80 139-143.
Sea urchin (Paracentrotus lividus) cryopreserved embryos survival and growth: effects of cryopreservation parameters and reproductive seasonality. , Paredes P, Bellas J., Cryo Letters. January 1, 2014; 35 (6): 482-94.
Bidirectional Ca²⁺ signaling occurs between the endoplasmic reticulum and acidic organelles. , Morgan AJ, Davis LC, Wagner SK, Lewis AM, Parrington J, Churchill GC, Galione A ., J Cell Biol. March 18, 2013; 200 (6): 789-805.
Chemical fate and biological effects of several endocrine disrupters compounds in two echinoderm species. , Sugni M, Tremolada P, Porte C, Barbaglio A, Bonasoro F, Carnevali MD., Ecotoxicology. March 1, 2010; 19 (3): 538-54.
Steroid levels in crinoid echinoderms are altered by exposure to model endocrine disruptors. , Lavado R, Barbaglio A, Carnevali MD, Porte C., Steroids. June 1, 2006; 71 (6): 489-97.
Expression of tryptophan 5-hydroxylase gene during sea urchin neurogenesis and role of serotonergic nervous system in larval behavior. , Yaguchi S , Katow H., J Comp Neurol. November 10, 2003; 466 (2): 219-29.
Membrane permeability characteristics and osmotic tolerance limits of sea urchin (Evechinus chloroticus) eggs. , Adams SL, Kleinhans FW, Mladenov PV, Hessian PA., Cryobiology. August 1, 2003; 47 (1): 1-13.
[The loss of CpG dinucleotides from DNA. III. Methylation and evolution of histone genes]. , Mazin AL, Vaniushin BF., Mol Biol (Mosk). January 1, 1987; 21 (3): 678-87.
Modification of tubulin by tyrosylation in cells and extracts and its effect on assembly in vitro. , Raybin D, Flavin M., J Cell Biol. May 1, 1977; 73 (2): 492-504.