Neutrophil maturation rate determines the effects of dipeptidyl peptidase 1 inhibition on neutrophil serine protease activity

二肽基肽酶 丝氨酸蛋白酶 药效学 丝氨酸 药理学 二肽基肽酶-4 蛋白酵素 蛋白酶抑制剂(药理学) 酶抑制剂 药代动力学 蛋白质周转 化学 内分泌学 内科学 蛋白酶 体外 生物 生物化学 医学 免疫学 蛋白质生物合成 糖尿病 2型糖尿病 人类免疫缺陷病毒(HIV) 抗逆转录病毒疗法 病毒载量
作者
Philip Gardiner,Cecilia Wikell,Steve Clifton,Jennifer A. Shearer,Amanda Benjamin,Sheila Annie Peters
出处
期刊:British Journal of Pharmacology [Wiley]
卷期号:173 (15): 2390-2401 被引量:13
标识
DOI:10.1111/bph.13515
摘要

Background and Purpose Neutrophil serine proteases (NSPs) are activated by dipeptidyl peptidase 1 (DPP1) during neutrophil maturation. The effects of neutrophil turnover rate on NSP activity following DPP1 inhibition was studied in a rat pharmacokinetic/pharmacodynamic model. Experimental Approach Rats were treated with a DPP1 inhibitor twice daily for up to 14 days; NSP activity was measured in onset or recovery studies, and an indirect response model was fitted to the data to estimate the turnover rate of the response. Key Results Maximum NSP inhibition was achieved after 8 days of treatment and a reduction of around 75% NSP activity was achieved at 75% in vitro DPP1 inhibition. Both the rate of inhibition and recovery of NSP activity were consistent with a neutrophil turnover rate of between 4–6 days. Using human neutrophil turnover rate, it is predicted that maximum NSP inhibition following DPP1 inhibition takes around 20 days in human. Conclusions and Implications Following inhibition of DPP1 in the rat, the NSP activity was determined by the amount of DPP1 inhibition and the turnover of neutrophils and is thus supportive of the role of neutrophil maturation in the activation of NSPs. Clinical trials to monitor the effect of a DPP1 inhibitor on NSPs should take into account the delay in maximal response on the one hand as well as the potential delay in a return to baseline NSP levels following cessation of treatment.
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