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amano lipase ps-c ii The influence of substrate systems on the enantioselective and lipolytic activity of immobilized PS from Burkholderia cepacia (APS-BCL) and (S) Epoxidation of oleic acid catalyzed

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Lombardo M, Aulisa G, Marcon D, et al

amano lipase ps-c ii The influence of substrate systems on the enantioselective and lipolytic activity of immobilized PS from Burkholderia cepacia (APS-BCL) and (S) Epoxidation of oleic acid catalyzed

BMS current limits can reduce actual output, even if the cells themselves support high discharge rates

amano lipase ps-c ii The influence of substrate systems on the enantioselective and lipolytic activity of immobilized PS from Burkholderia cepacia (APS-BCL) and (S) Epoxidation of oleic acid catalyzed

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amano lipase ps-c ii The influence of substrate systems on the enantioselective and lipolytic activity of immobilized PS from Burkholderia cepacia (APS-BCL) and (S) Epoxidation of oleic acid catalyzed

Key enzymes involved in the utilization of fatty acids by Saccharomyces cerevisiae : a review

amano lipase ps-c ii The influence of substrate systems on the enantioselective and lipolytic activity of immobilized PS from Burkholderia cepacia (APS-BCL) and (S) Epoxidation of oleic acid catalyzed

Beyond fat burning, L-Carnitine also supports exercise performance, reduces muscle soreness and lactic acid buildup, promotes brain health, and aids post-workout recovery

amano lipase ps-c ii The influence of substrate systems on the enantioselective and lipolytic activity of immobilized PS from Burkholderia cepacia (APS-BCL) and (S) Epoxidation of oleic acid catalyzed

Lancet 386 , 15371545 (2015)

amano lipase ps-c ii The influence of substrate systems on the enantioselective and lipolytic activity of immobilized PS from Burkholderia cepacia (APS-BCL) and (S) Epoxidation of oleic acid catalyzed

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