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Journal of Mass Spectrometry : JMS|July 30, 2004
Borate-nucleotide complex formation depends on charge and phosphorylation stateDanny H Kim, Kym F Faull, Andrew J Norris, et al.Journal of Mass Spectrometry : JMS|June 27, 2003
Esterification of borate with NAD+ and NADH as studied by electrospray ionization mass spectrometry and 11B NMR spectroscopyDanny H Kim, Beth N Marbois, Kym F Faull, et al.Cell Biology and Toxicology|June 3, 2008
Boric acid inhibits stored Ca2+ release in DU-145 prostate cancer cellsWade T Barranco, Danny H Kim, Salvatore L Stella, et al.Journal of Chromatography. A|March 21, 2006
Boric acid inhibits adenosine diphosphate-ribosyl cyclase non-competitivelyDanny H Kim, Shane Que Hee, Andrew J Norris, et al.Cancer Letters|October 27, 2004
Boric acid inhibits human prostate cancer cell proliferationWade T Barranco, Curtis D EckhertBiological Trace Element Research|September 10, 2018
Boric Acid Activation of eIF2α and Nrf2 Is PERK Dependent: a Mechanism that Explains How Boron Prevents DNA Damage and Enhances Antioxidant StatusKristin E Yamada, Curtis D EckhertBiochemical and Biophysical Research Communications|August 1, 2012
Identification of ryanodine receptor isoforms in prostate DU-145, LNCaP, and PWR-1E cellsSarah E Kobylewski, Kimberly A Henderson, Curtis D EckhertCancer Causes & Control : CCC|December 23, 2006
Evaluation of ecological and in vitro effects of boron on prostate cancer risk (United States)Wade T Barranco, Paul F Hudak, Curtis D EckhertPlos One|June 26, 2009
Receptor activated Ca(2+) release is inhibited by boric acid in prostate cancer cellsKimberly Henderson, Salvatore L Stella, Sarah Kobylewski, et al.Biometals : an International Journal on the Role of Metal Ions in Biology, Biochemistry, and Medicine|November 27, 2014
Boric acid induces cytoplasmic stress granule formation, eIF2α phosphorylation, and ATF4 in prostate DU-145 cellsKimberly A Henderson, Sarah E Kobylewski, Kristin E Yamada, et al.Pageof 2