Costa M I, Boldrini J L
Laboratório Nacional de Computação Científica-CNPq, Rio de Janiero, Brazil.
Bull Math Biol. 1997 Jul;59(4):707-24. doi: 10.1007/BF02458426.
A system of differential equations for the control of tumor cells growth in a cycle nonspecific chemotherapy is presented. Spontaneously acquired drug resistance is accounted for, as well as the evolution in time of normal cells. In addition, optimization of conflicting objectives forms the aim of the chemotherapeutic treatment. For general cell growth, some results are given, whereas for the special case of Malthusian (exponential) growth of tumor cells and rather general growth rate for normal cells, the optimal strategy is worked out. The latter, from the clinical standpoint, corresponds to maximum drug concentration throughout the treatment.
提出了一种用于控制周期非特异性化疗中肿瘤细胞生长的微分方程组。该方程组考虑了自发获得性耐药性以及正常细胞随时间的演变。此外,相互冲突目标的优化构成了化疗治疗的目标。对于一般的细胞生长,给出了一些结果,而对于肿瘤细胞的马尔萨斯(指数)生长的特殊情况以及正常细胞相当一般的生长速率,制定了最优策略。从临床角度来看,后者对应于整个治疗过程中的最大药物浓度。