^ abBecnel LB, Darlington YF, Orechsner S, Easton-Marks J, Watkins CA, McOwiti A, et al. "GW 5638". Nuclear Receptor Signaling Atlas. doi:10.1621/B4A9CIQ78V.
^Antiestrogen GW5638 induces a unique structural change in the ER. The biological significance of this conformational change was revealed in studies that demonstrated that tamoxifen-resistant breast tumor explants are not cross-resistant to GW5638. Because of these properties, this drug is currently being developed as a potential therapeutic for tamoxifen-resistant breast cancers.Connor CE, Norris JD, Broadwater G, Willson TM, Gottardis MM, Dewhirst MW, McDonnell DP (April 2001). "Circumventing tamoxifen resistance in breast cancers using antiestrogens that induce unique conformational changes in the estrogen receptor". Cancer Research. 61 (7): 2917–2922. PMID11306468.
^Dardes RC, O'Regan RM, Gajdos C, Robinson SP, Bentrem D, De Los Reyes A, Jordan VC (June 2002). "Effects of a new clinically relevant antiestrogen (GW5638) related to tamoxifen on breast and endometrial cancer growth in vivo". Clinical Cancer Research. 8 (6): 1995–2001. PMID12060645.
^Tong S, Chen Q, Shan SQ, Dewhirst MW, Yuan F (2006). "Quantitative comparison of the inhibitory effects of GW5638 and tamoxifen on angiogenesis in the cornea pocket assay". Angiogenesis. 9 (2): 53–58. doi:10.1007/s10456-006-9029-x. PMID16622786. S2CID35414830.
^Willson TM, Henke BR, Momtahen TM, Charifson PS, Batchelor KW, Lubahn DB, et al. (May 1994). "3-[4-(1,2-Diphenylbut-1-enyl)phenyl]acrylic acid: a non-steroidal estrogen with functional selectivity for bone over uterus in rats". Journal of Medicinal Chemistry. 37 (11): 1550–1552. doi:10.1021/jm00037a002. PMID8201587.