Mirshahi F, Fowler G, Patel A, Shaw G
School of Health and Sports Science, University of North London, UK.
J Clin Pathol. 1998 Mar;51(3):220-4. doi: 10.1136/jcp.51.3.220.
To assess the potential antibacterial effect of omeprazole, a benzimidazole proton pump inhibitor, on the growth of Helicobacter pylori in vitro and to evaluate the effect of this compound on bacterial urease activity.
The growth of H pylori was observed in liquid culture in the presence and absence of omeprazole (0.8 mg/ml). Urease activity was evaluated in aliquots removed from two hour cultures by monitoring the initial change in absorbency at 560 nm in the presence of 0.02% phenol red.
The minimum inhibitory concentration of omeprazole against H pylori was 0.8 mg/ml. The concentration of omeprazole required to inhibit growth was dependent on inoculum density: omeprazole (0.8 mg/ml) prevented growth from a 1 x 10(6) cfu/ml inoculum, but not from the higher inocula of 10(7) or 10(8) cfu/ml. This is the first study to demonstrate that omeprazole exerts a bacteriocidal effect against low bacterial densities and a bacteriostatic effect when bacterial density is high. When used at the onset of growth, this concentration of omeprazole has a bacteriocidal effect after four hours, although it exerts a bacteriostatic effect when added to cultures after the exponential phase. Bacterial urease activity is competitively inhibited by omeprazole in a dose dependent manner.
The results suggest that omeprazole exerts both a bacteriocidal and a bacteriostatic effect against H pylori and competitively inhibits bacterial extracellular urease activity.
评估苯并咪唑质子泵抑制剂奥美拉唑对幽门螺杆菌体外生长的潜在抗菌作用,并评价该化合物对细菌脲酶活性的影响。
在有和没有奥美拉唑(0.8mg/ml)的情况下,观察幽门螺杆菌在液体培养中的生长情况。通过监测在0.02%酚红存在下560nm处吸光度的初始变化,对从两小时培养物中取出的等分试样中的脲酶活性进行评估。
奥美拉唑对幽门螺杆菌的最低抑菌浓度为0.8mg/ml。抑制生长所需的奥美拉唑浓度取决于接种密度:奥美拉唑(0.8mg/ml)可抑制1×10⁶cfu/ml接种物的生长,但不能抑制10⁷或10⁸cfu/ml的较高接种物的生长。这是第一项证明奥美拉唑对低细菌密度发挥杀菌作用,而对高细菌密度发挥抑菌作用的研究。在生长开始时使用时,该浓度的奥美拉唑在4小时后具有杀菌作用,尽管在指数期后添加到培养物中时它发挥抑菌作用。奥美拉唑以剂量依赖的方式竞争性抑制细菌脲酶活性。
结果表明,奥美拉唑对幽门螺杆菌具有杀菌和抑菌作用,并竞争性抑制细菌细胞外脲酶活性。