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Engineering New Approaches to Cancer Vaccines

机译:工程癌症疫苗的新方法

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Recently, a number of promising approaches have been developed using synthetic chemistry, materials science, and bioengineering-based strategies to address challenges in the design of more effective cancer vaccines. At the stage of initial priming, potency can be improved by maximizing vaccine delivery to lymph nodes. Because lymphatic uptake from peripheral tissues is strongly size dependent, antigens and adjuvants packaged into optimally sized nanoparticles access the lymph node with much greater efficiency than unformu-lated vaccines. Once primed, T cells must home to the tumor site. Because T cells acquire the necessary surface receptors in the local lymph node draining the tissue of interest, vaccines must be engineered that reach organs, such as the lung and gut, which are common sites of tumor lesions but inaccessible by traditional vaccination routes. Paniculate vaccine carriers can improve antigen exposure in these organs, resulting in greater lymphocyte priming. Immunomodulatory agents can also be injected directly into the tumor site to stimulate a systemic response capable of clearing even distal lesions; materials have been designed that entrap or slowly release immunomodula-tors at the tumor site, reducing systemic exposure and improving therapeutic efficacy. Finally, lessons learned from the design of biomaterial-based scaffolds in regenerative medicine have led to the development of implantable vaccines that recruit and activate antigen-presenting cells to drive antitumor immunity. Overall, these engineering strategies represent an expanding toolkit to create safe and effective cancer vaccines.
机译:最近,已经使用合成化学,材料科学和基于生物工程的策略来制定了许多有希望的方法,以解决更有效的癌症疫苗设计中的挑战。在初始引发的阶段,通过将疫苗递送至淋巴结的疫苗输送可以提高效力。因为从外周组织的淋巴摄取是强大的依赖性,抗原和包装成最佳尺寸纳米颗粒的佐剂,而淋巴结与未格式化的疫苗更大的效率。一旦引发,T细胞必须在肿瘤部位回家。因为T细胞在排出感兴趣组织的局部淋巴结中获取必要的表面受体,所以必须设计疫苗,该疫苗可以达到器官,例如肺和肠道,这是肿瘤病变的常见位点,但通过传统的疫苗接种途径无法进入。胰岛素疫苗载体可以改善这些器官中的抗原暴露,导致更大的淋巴细胞引发。免疫调节剂也可以直接注射到肿瘤部位中以刺激能够清除甚至远端病变的全身反应;材料设计成诱捕或缓慢释放肿瘤部位的免疫导液,减少全身暴露并改善治疗效果。最后,从再生医学中的生物材料的支架设计中学到的经验教训导致了植入疫苗的发育,该疫苗募集和激活抗原呈递细胞以驱动抗肿瘤免疫力。总体而言,这些工程策略代表了一个扩展工具包,以创造安全有效的癌症疫苗。

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