Mechanism and Processing Parameters Affecting the Formation of Methyl Methanesulfonate from Methanol and Methanesulfonic Acid: An Illustrative Example for Sulfonate Ester Impurity Formation

被引:52
作者
Teasdale, Andrew [1 ]
Eyley, Stephen C. [1 ]
Delaney, Ed [2 ]
Jacq, Karine [3 ]
Taylor-Worth, Karen [4 ]
Lipczynski, Andrew [4 ]
Reif, Van [5 ]
Elder, David P. [6 ]
Facchine, Kevin L. [7 ]
Golec, Simon [8 ]
Oestrich, Rolf Schulte [9 ]
Sandra, Pat [3 ]
David, Frank [3 ]
机构
[1] AstraZeneca, R&D Charnwood, Loughborough LE11 5RH, Leics, England
[2] React Sci Consulting LLC, Monmouth Jct, NJ 08852 USA
[3] Res Inst Chromatog, B-8500 Kortrijk, Belgium
[4] Pfizer Global Res & Dev, Analyt R&D, Sandwich CT13 9NJ, Kent, England
[5] Schering Plough Corp, Summit, NJ 07901 USA
[6] GlaxoSmithKline Inc, Ware SG12 0DP, Herts, England
[7] GlaxoSmithKline Inc, Res Triangle Pk, NC 27709 USA
[8] Wyeth Res, Collegeville, PA 19426 USA
[9] F Hoffmann La Roche Ltd, CH-4070 Basel, Switzerland
关键词
RESIDUES;
D O I
10.1021/op800192a
中图分类号
O69 [应用化学];
学科分类号
070301 [无机化学];
摘要
Sulfonate salts offer useful modification of physicochemical properties of active pharmaceutical ingredients (APIs) containing basic groups, but there are regulatory concerns over the presence of sulfonate esters as potential genotoxic impurities (PGIs). Whilst sulfonate esters could theoretically result from interaction between sulfonic acids and alcohols, literature on their formation is sparse. GC-MS analysis of reactions of methanesulfonic acid (MSA) and isotopically labeled methanol ((18)O-label) confirm methanol C-O bond cleavage in the formation of the methyl methanesulfonate (MMS), consistent with reversal of well-established mechanisms for solvolysis of sulfonate esters. Studies of reaction profiles quantify methyl methanesulfonate formation under a range of conditions relevant to API processing. Maximum conversion to MMS in reaction mixtures was 0.35%, determined by analytical methods developed specifically for reaction mixture analysis. Sulfonate ester formation is dramatically reduced at lower temperatures, in the presence of small amounts of water, or when acid is partially neutralized by substoichiometric amounts of the weak base, 2,6-lutidine, used to mimic conversion of a basic API to a salt in pharmaceutical manufacture. In the presence of a slight excess of base, ester formation was not detected. These findings, particularly those involving an excess of base, are compelling and provide a scientific understanding to allow for the design of processing conditions to minimize and control sulfonate ester formation.
引用
收藏
页码:429 / 433
页数:5
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