Fox, S. W., 1974, The proteinoid theory of the origin of life and competing ideas: American Biology Teacher, v. 36, p. 161-172, 181.
Fox, S. W., Jungck, J. R., and Nakashima, T., 1974, From proteinoid microsphere to comtemporary cell: formation of internucleotide and peptide bonds by proteinoid particles: Origins Life, v. 5, p. 227-237.
Fox, S. W., and Krampitz, G., 1964, The catalytic decomposition of glucose in aqueous solution by thermal proteinoids: Nature, v. 203, p. 1362-1364.
Fox, S. W., Nakashima, T., Przyblyski, A., and Syren, R. M., 1982, The updated experimental proteinoid model: International Journal of Quantum Chemistry, v. QBS 9, p. 195-204.
Hardebeck, H. G., Krampitz, G., and Wulf, L., 1968, Decarboxylation of pyruvic acid in aqueous solutions by thermal proteinoids: Archives of Biochemistry and Biophysiology, v. 123, p. 72-81.
Hsu, L. L., Brooke, S., and Fox, S. W., 1971, Conjugation of proteinoid microspheres: a model of primordial communication: Current Models in Biology [Now BioSystems], v. 4, p. 12-25.
Junck, J. R., and Fox, S. W., 1973, Synthesis of oligonucleotides by proteinoid microspheres acting on ATP: Naturwissenschaften, v. 60, p. 425-427.
Nakashima, T., and Fox, S. W., 1980, Synthesis of peptides from amino acids and ATP with lysine-rich protenoid: Journal of Molecular Evolution, v. 15, p. 161-168.
---, 1981, Formulation of peptides by single or multiple additions of ATP to suspensions of nucleoproteinoid microparticles: BioSystems, v. 14, p. 151- 161.
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