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A Mathematical Model for Expected Time to Extinction of Pathogenic Bacteria through Antibiotic

机译:通过抗生素消除病原细菌的预期时间的数学模型

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Application of antibiotics in human system to prevent bacterial diseases like Gastritis, Ulcers, Meningitis, Pneumonia and Gonorrhea are indispensable. Antibiotics saved innumerable lives and continue to be a strong support for therapeutic application against pathogenic bacteria. In human system, bacterial diseases occur when pathogenic bacteria gets into the body and begin to reproduce and crowd out healthy bacteria. In this process, immature bacteria releases enzyme which is essential for bacterial cell-wall biosynthesis. After complete formation of cell wall, immature bacteria are converted to mature or virulent bacteria which are harmful to us during bacterial infections. Use of antibiotics as drug inhibits the bacterial cell wall formation. After application of antibiotics within body, the released bacterial enzyme binds with antibiotic molecule instead of its functional site during the cell wall synthesis in a competitive inhibition approach. As a consequence, the bacterial cell-wall formation as well as maturation process of pathogenic bacteria is halted and the disease is cured with lysis of bacterial cells. With this idea, a mathematical model has been developed in the present research investigation to review the inhibition of biosynthesis of bacterial cell wall by the application of antibiotics as drug in the light of enzyme kinetics. This approach helps to estimate the expected time to extinction of the pathogenic bacteria. Our mathematical approach based on the enzyme kinetic model for finding out expected time to extinction contributes favorable results for understanding of disease dynamics. Analytical and numerical results based on simulated findings validate our mathematical model.
机译:抗生素在人体系统中的应用,以防止胃炎,溃疡,脑膜炎,肺炎和淋病等细菌疾病是必不可少的。抗生素挽救了无数的生活,并继续对致病性细菌进行治疗施用的强大支持。在人体系统中,当病原细菌进入身体并开始繁殖和挤出健康的细菌时,细菌疾病发生。在该过程中,未成熟的细菌释放酶对于细菌细胞壁生物合成至关重要。在完全形成细胞壁后,将未成熟的细菌转化为在细菌感染期间对我们有害的成熟或毒性细菌。用抗生素作为药物抑制细菌细胞壁形成。在在体内施用抗生素之后,释放的细菌酶与抗生素分子结合,而不是竞争抑制方法的细胞壁合成期间其功能部位。因此,已经停止了细菌细胞 - 壁形成以及致病细菌的成熟过程,并且通过裂解细菌细胞来固化疾病。通过这种想法,在本研究调查中已经开发了一种数学模型,以通过酶动力学应用抗生素作为药物来审查细菌细胞壁的生物合成的抑制作用。这种方法有助于估计致病细菌的预期时间。我们基于酶动力学模型的数学方法,寻找预期灭绝的预期时间有助于了解疾病动态的良好结果。基于模拟调查结果的分析和数值结果验证了我们的数学模型。

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