| Literature DB >> 18208588 |
Petri A Turhanen1, Jouko J Vepsäläinen.
Abstract
Unexpected degradation of the P-C-P bridge from novel bisphosphonate derivative 1a and known etidronate trimethyl ester (1b) has been observed under mild reaction conditions. A proposed reaction mechanism for the unexpected degradation of 1a and 1b is also reported.Entities:
Year: 2008 PMID: 18208588 PMCID: PMC2238746 DOI: 10.1186/1860-5397-4-7
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Figure 1Structures of etidronate, pyrophosphate and general structure of bisphosphonates.
Scheme 1Degradation of trimethyl ester of etidronate (1b) and stability of the tetramethyl ester (1c, R=R`=Me) and P,P`-dimethyl ester (1d, R=Me, R`=Na+) of etidronate. Reagents and conditions: i) 1 drop of 6 M NaOH, H2O, 1 h, rt, (measured pH was ≥ 11); ii) 5 equiv triethylamine, H2O, 1 h, 60 °C; iii) when R=R`=Me (1c), 1 eq, triethylamine, H2O, 10 min. ca. 98% conversion. iv) when R=Me, R`=Na+ (1d), 5 equiv NaOH, H2O, overnight, reflux.
Scheme 2Preparation of BP derivative 1a (R2 = Et, R3 = C(O)OEt) and its degradation to acetate 6 and phosphites 2–4. Reagents and conditions: i) excess ClC(O)OEt, 6 equiv Na2CO3, reflux, overnight, 55%; ii) 4 equiv NaOH (40% NaOH in H2O), MeOH, 30 min, rt.
Scheme 3Proposed reaction mechanism for 1b decomposition.
Scheme 4Proposed reaction mechanism for 1a decomposition.