论文标题

细菌蛋白水解活性以大小和结合亲和力依赖性的方式增强了肿瘤中的药物 - 一种机械理解

Drug delivery in tumors is enhanced by bacterial proteolytic activity in a size and binding affinity dependent manner -A mechanistic understanding

论文作者

Shirai, Hiroaki, Tsukada, Kosuke

论文摘要

细菌的使用对癌症研究人员作为药物递送载体具有吸引力,因为动态细菌能够在肿瘤中渗透。特别是,治疗细菌和常规化学疗法的组合导致抗肿瘤效率极高。但是,协同作用的机制部分尚不清楚。为了了解组合疗法协同作用的机制,通过多孔培养基方法对肿瘤中的C. novyi-NT和化学治疗剂的同时递送。多克西尔给药后,有或没有细菌的肿瘤中模拟的阿霉素浓度与实验文献相当一致。在先前的实验文献中观察到的,通过Doxil和C. Novyi-NT的组合,通过Doxil和C. Novyi-NT的组合组合在肿瘤中模拟的阿霉素浓度是两倍以上。这种增强的浓度是由于细菌蛋白水解活性通过细菌蛋白水解活性降解胶原蛋白的细胞外基质,从而通过增加间质的水力传导率来降低肿瘤中的间质流体压力,从而通过容器壁增加对流。另外,胶原蛋白降解引起的固体应激减轻通过解压缩血管来增加血管密度。另一方面,novyi-NT的非脂质体阿霉素的肿瘤中的模拟阿霉素浓度并不能增强,因为自由毒素的血管通透性比多克西尔大,因此,由于跨管中的外观而超过了跨容器壁上的对流,但相对较小的对流会增加。通过灵敏度分析讨论了进一步增强这种组合疗法的策略。

The use of bacteria has been attractive to cancer researchers as drug delivery vehicle because motile bacteria are able to penetrate in tumors. In particular, the combination of therapeutic bacteria and conventional chemotherapy leads to dramatically high anti-tumor efficay. However, the mechanisms of the synergy, in part, remain unclear. To aim for understanding the mechanisms of the synergy of the combination therapy, simultaneous delivery of C. novyi-NT and chemotherapeutic agents in tumors is mathematically modeled from porous media approach. Simulated doxorubicin concentration in tumors after Doxil administration with or without bacteria agreed reasonably well with experimental literature. The simulated doxorubicin concentration in tumors by the combination of Doxil and C. novyi-NT is over twice higher than that of Doxil alone, as observed in previous experimental literature. This enhanced concentration is because of the degradation of extracellular matrix of collagen by bacterial proteolytic activity, which reduced interstitial fluid pressure in tumors by increasing hydraulic conductivity of interstitium, and thus increases convection through vessel walls. Additionally, solid stress alleviation caused by collagen degradation increases vessel density by decompressing blood vessels. On the other hand, the simulated doxorubicin concentration in tumors for non-liposomal doxorubicin is not enhanced by C. novyi-NT because vascular permeability of free-doxorubicin is larger than Doxil, and thus, increased but relatively small convection across vessel walls is outweighed by the efflux due to increased interstitial flow. A strategy to further enhance this combination therapy is discussed with sensitivity analysis.

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