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  • Evaluation of the Impact of Esterases and Lipases from the Circulatory System against Substrates of Different Lipophilicity.

Evaluation of the Impact of Esterases and Lipases from the Circulatory System against Substrates of Different Lipophilicity.

International journal of molecular sciences (2022-02-16)
Leslie Lam, Marc A Ilies
摘要

Esterases and lipases can process amphiphilic esters used as drugs and prodrugs and impact their pharmacokinetics and biodistribution. These hydrolases can also process ester components of drug delivery systems (DDSs), thus triggering DDSs destabilization with premature cargo release. In this study we tested and optimized assays that allowed us to quantify and compare individual esterase contributions to the degradation of substrates of increased lipophilicity and to establish limitations in terms of substrates that can be processed by a specific esterase/lipase. We have studied the impact of carbonic anhydrase; phospholipases A1, A2, C and D; lipoprotein lipase; and standard lipase on the hydrolysis of 4-nitrophenyl acetate, 4-nitrophenyl palmitate, DGGR and POPC liposomes, drawing structure-property relationships. We found that the enzymatic activity of these proteins was highly dependent on the lipophilicity of the substrate used to assess them, as expected. The activity observed for classical esterases was diminished when lipophilicity of the substrate increased, while activity observed for lipases generally increased, following the interfacial activation model, and was highly dependent on the type of lipase and its structure. The assays developed allowed us to determine the most sensitive methods for quantifying enzymatic activity against substrates of particular types and lipophilicity.

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Sigma-Aldrich
碳酸酐酶 来源于牛红细胞, ≥95% (SDS-PAGE), specific activity ≥3,500 W-A units/mg protein, lyophilized powder
Sigma-Aldrich
磷脂酶 A2 来源于猪胰腺, ammonium sulfate suspension, ≥600 units/mg protein
Sigma-Aldrich
脂肪酶 来源于洋葱假单胞菌, powder, light beige, ≥30 U/mg
Sigma-Aldrich
磷脂酶A1 来源于米曲霉
Sigma-Aldrich
脂肪酶底物, ≥95% (HPLC)
Sigma-Aldrich
脂蛋白脂酶 来源于伯克霍尔德氏菌 属, lyophilized powder, ≥50,000 units/mg solid