Literature DB >> 9618028

The development of A-ring modified analogues of oestrone-3-O-sulphamate as potent steroid sulphatase inhibitors with reduced oestrogenicity.

A Purohit1, K A Vernon, A E Hummelinck, L W Woo, H A Hejaz, B V Potter, M J Reed.   

Abstract

Steroid sulphatases regulate the formation of oestrogenic steroids which can support the growth of endocrine-dependent breast tumours. The development of potent steroid sulphatase inhibitors could therefore have considerable therapeutic potential. Several such inhibitors have now been developed of which the most potent to date is oestrone-3-O-sulphamate (EMATE). Unexpectedly, this inhibitor proved to be a potent oestrogen. In an attempt to reduce the oestrogenicity, whilst retaining the potent sulphatase inhibitory properties associated with this type of molecule, a number of A-ring modified derivatives were designed and synthesized. A-ring modified compounds included the 2-methoxy, 2/4-nitro, 2/4-n-propyl and 2/4-allyl EMATE analogues. The ability of these derivatives to inhibit oestrone sulphatase activity was examined using placental microsomes. The allyl-substituted EMATE derivatives were more potent inhibitors than the propyl analogues but were all considerably less potent than EMATE. In contrast, the 2-methoxy and 2/4-nitro analogues were potent sulphatase inhibitors with 4-nitro EMATE being 5 times more active than EMATE. The 4-nitro, 2-methoxy, 4-n-propyl and 4-allyl derivatives were also tested in vivo for their oestrogenicity and ability to inhibit sulphatase activity. While both 4-nitro and 2-methoxy EMATE were potent inhibitors in vivo, 2-methoxy EMATE had no stimulatory effect on uterine growth in ovariectomized rats. The identification of a potent steroid sulphatase inhibitor lacking any oestrogenicity, such as 2-methoxy EMATE, should be of considerable value in evaluating the potential of steroid sulphatase inhibition for breast cancer therapy.

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Year:  1998        PMID: 9618028     DOI: 10.1016/s0960-0760(97)00196-9

Source DB:  PubMed          Journal:  J Steroid Biochem Mol Biol        ISSN: 0960-0760            Impact factor:   4.292


  8 in total

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Authors:  Mark P Thomas; Barry V L Potter
Journal:  J Med Chem       Date:  2015-06-12       Impact factor: 7.446

2.  Hybrid dual aromatase-steroid sulfatase inhibitors with exquisite picomolar inhibitory activity.

Authors:  L W Lawrence Woo; Christian Bubert; Atul Purohit; Barry V L Potter
Journal:  ACS Med Chem Lett       Date:  2010-12-29       Impact factor: 4.345

3.  (125)I-Labelled 2-Iodoestrone-3-sulfate: synthesis, characterization and OATP mediated transport studies in hormone dependent and independent breast cancer cells.

Authors:  Nilasha Banerjee; T Robert Wu; Jason Chio; Ryan Kelly; Karin A Stephenson; John Forbes; Christine Allen; John F Valliant; Reina Bendayan
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Review 4.  A review of coumarin derivatives in pharmacotherapy of breast cancer.

Authors:  Musiliyu A Musa; John S Cooperwood; M Omar F Khan
Journal:  Curr Med Chem       Date:  2008       Impact factor: 4.530

5.  Structure-activity relationship for the first-in-class clinical steroid sulfatase inhibitor Irosustat (STX64, BN83495).

Authors:  L W Lawrence Woo; Dharshini Ganeshapillai; Mark P Thomas; Oliver B Sutcliffe; Bindu Malini; Mary F Mahon; Atul Purohit; Barry V L Potter
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6.  Pharmacokinetics and efficacy of 2-methoxyoestradiol and 2-methoxyoestradiol-bis-sulphamate in vivo in rodents.

Authors:  C R Ireson; S K Chander; A Purohit; S Perera; S P Newman; D Parish; M P Leese; A C Smith; B V L Potter; M J Reed
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7.  Targeted NF1 cancer therapeutics with multiple modes of action: small molecule hormone-like agents resembling the natural anticancer metabolite, 2-methoxyoestradiol.

Authors:  Yu-chi Shen; Ravi Upadhyayula; Stephanie Cevallos; Ryan J Messick; Tammy Hsia; Mathew P Leese; Douglas M Jewett; Daysha Ferrer-Torres; Therese M Roth; Wolfgang Dohle; Barry V L Potter; Kate F Barald
Journal:  Br J Cancer       Date:  2015-10-13       Impact factor: 7.640

Review 8.  Steroid Sulphatase and Its Inhibitors: Past, Present, and Future.

Authors:  Paul A Foster
Journal:  Molecules       Date:  2021-05-11       Impact factor: 4.411

  8 in total

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