Kryndushkin DS, Alexandrov IM, Ter-Avanesyan MD, Kushnirov VV (2003). "Yeast [PSI+] prion aggregates are formed by small Sup35 polymers fragmented by Hsp104". Journal of Biological Chemistry278 (49): 49636–43. PMID14507919. doi:10.1074/jbc.M307996200.
David L. Smisek; David A. Hoagland (1989). "Agarose gel electrophoresis of high molecular weight, synthetic polyelectrolytes". Macromolecules22 (5): 2270–227. doi:10.1021/ma00195a048.
Wraxall, B.G.D.; Culliford, B.J. (1968). "A thin-layer starch gel method for enzyme typing of bloodstains". J. Forensic Sci. Soc.8 (2): 81–82. PMID5738223. doi:10.1016/S0015-7368(68)70449-7.
Kastenholz B (2004). "Preparative native continuous polyacrylamide gel electrophoresis (PNC‐PAGE): an efficient method for isolating cadmium cofactors in biological systems". Anal Lett37 (4): 657–665. doi:10.1081/AL-120029742.
Kryndushkin DS, Alexandrov IM, Ter-Avanesyan MD, Kushnirov VV (2003). "Yeast [PSI+] prion aggregates are formed by small Sup35 polymers fragmented by Hsp104". Journal of Biological Chemistry278 (49): 49636–43. PMID14507919. doi:10.1074/jbc.M307996200.
Wraxall, B.G.D.; Culliford, B.J. (1968). "A thin-layer starch gel method for enzyme typing of bloodstains". J. Forensic Sci. Soc.8 (2): 81–82. PMID5738223. doi:10.1016/S0015-7368(68)70449-7.
Weber, K; Osborn, M (1969). "The reliability of molecular weight determinations by dodecyl sulfate-polyacrylamide gel electrophoresis". The Journal of Biological Chemistry244 (16): 4406–12. PMID5806584.