在体内进行细菌溶解的同步循环
M Omar Din1, Tal Danino2, Arthur Prindle1
1Department of Bioengineering, University of California, San Diego, La Jolla, California, USA.
Nature
|July 21, 2016
概括
工程细菌被编程在高密度下自毁, 释放治疗剂在脉动周期. 这种合成生物学方法增强化疗效率,减少瘤活动并改善小鼠模型的存活率.
科学领域:
- 合成生物学
- 微生物学
- 生物技术
背景情况:
- 传统上被认为是致病的细菌, 越来越多地被认为对人体有有益作用.
- 细菌自然殖民疾病的部位,为工程疗法提供了一个潜在的平台.
- 工程细菌可以被编程为受控的自我毁灭和治疗剂的释放.
研究的目的:
- 设计一种临床相关的细菌,用于同步溶解和脉冲性释放.
- 评估这种工程细菌作为药物输送平台的潜力.
- 在结直肠癌模型中评估单独和与化疗结合的工程细菌的有效性.
主要方法:
- 用细菌的基因工程来进行定量感应控制的溶解和货物释放.
- 使用微流体装置对工程细菌进行表征.
- 在体外与人类癌细胞共同培养,并在小鼠结直肠瘤模型中进行体内研究.
主要成果:
- 工程细菌表现出脉动的种群动态和受控的货物释放.
- 实验室研究表明,它具有作为药物输送平台的潜力.
- 在小鼠体内研究显示,结合化疗时,瘤活性降低,存活率提高.
结论:
- 工程细菌可以被编程为脉动治疗.
- 这种合成生物学方法有望提高癌症治疗效率.
- 该方法利用细菌殖民疾病部位进行向治疗.
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