Moreno Víctor M, Baeza Alejandro
Departamento de Química en Ciencias Farmacéuticas, Facultad de Farmacia, Universidad Complutense de Madrid, Instituto de Investigación Sanitaria, Hospital 12 de Octubre i+12, Plaza Ramón y Cajal s/n, 28040 Madrid, Spain.
Departamento Materiales y Producción Aeroespacial, ETSI Aeronáutica y del Espacio, Universidad Politécnica de Madrid, 28040 Madrid, Spain.
Pharmaceutics. 2022 Apr 3;14(4):784. doi: 10.3390/pharmaceutics14040784.
The use of nanocarriers to deliver antitumor agents to solid tumors must overcome biological barriers in order to provide effective clinical responses. Once within the tumor, a nanocarrier should navigate into a dense extracellular matrix, overcoming intratumoral pressure to push it out of the diseased tissue. In recent years, a paradigm change has been proposed, shifting the target of nanomedicine from the tumoral cells to the immune system, in order to exploit the natural ability of this system to capture and interact with nanometric moieties. Thus, nanocarriers have been engineered to interact with immune cells, with the aim of triggering specific antitumor responses. The use of bacteria as nanoparticle carriers has been proposed as a valuable strategy to improve both the accumulation of nanomedicines in solid tumors and their penetration into the malignancy. These microorganisms are capable of propelling themselves into biological environments and navigating through the tumor, guided by the presence of specific molecules secreted by the diseased tissue. These capacities, in addition to the natural immunogenic nature of bacteria, can be exploited to design more effective immunotherapies that yield potent synergistic effects to induce efficient and selective immune responses that lead to the complete eradication of the tumor.
使用纳米载体将抗肿瘤药物递送至实体瘤必须克服生物屏障,以提供有效的临床反应。纳米载体一旦进入肿瘤内部,就应渗透到致密的细胞外基质中,克服肿瘤内压力将其挤出病变组织。近年来,有人提出了一种范式转变,将纳米医学的目标从肿瘤细胞转向免疫系统,以利用该系统捕获纳米级部分并与之相互作用的天然能力。因此,人们设计了纳米载体与免疫细胞相互作用,以触发特定的抗肿瘤反应。有人提出将细菌用作纳米颗粒载体,作为一种有价值的策略,以提高纳米药物在实体瘤中的积累及其对恶性肿瘤的渗透。这些微生物能够自行进入生物环境并在肿瘤中穿行,在病变组织分泌的特定分子的引导下。除了细菌的天然免疫原性外,这些能力还可用于设计更有效的免疫疗法,产生强大的协同效应,诱导高效和选择性的免疫反应,从而彻底根除肿瘤。