Li Junlin, Zhang Ping, Zhou Minglu, Liu Chendong, Huang Yuan, Li Lian
Key Laboratory of Drug-Targeting and Drug Delivery System of the Education Ministry and Sichuan Province, Sichuan Engineering Laboratory for Plant-Sourced Drug and Sichuan Research Center for Drug Precision Industrial Technology, West China School of Pharmacy, Sichuan University, Chengdu 610041, China.
ACS Nano. 2022 Apr 26;16(4):6064-6079. doi: 10.1021/acsnano.1c11562. Epub 2022 Mar 28.
Tumor surgery can create an inflammatory trauma to aggravate residual tumor "seed" to colonize pre-metastatic niches (PMNs) "soil" at secondary sites, thereby promoting post-operative metastasis. However, two-pronged strategies for post-surgical elimination of asynchronous "seeds" and "soil" at different regions are currently lacking. Here, we have designed a hydrogel that can be injected into a resection cavity, where it immediately forms a scaffold and gradually degrades responding to enriched reactive oxygen species at adjacent trauma for local delivery and on-demand release of autologous cancer cells succumbing to oncolysis (ACCO) and anti-inflammatory agent. The autologous cell source self-provides a whole array of tumor-associated antigens, and the oncolysis orchestration of a subcellular cascade confers a self-adjuvanting property, together guaranteeing high immunogenicity of the ACCO vaccine that enables specific antitumor immunization. In parallel, inflammation alleviation exerted bidirectional functions to reshape the local immune landscape and resuscitate ACCO, leading to the eradication of residual tumor "seeds" while simultaneously intercepting the "seed-soil" crosstalk to normalize distant lung leading to regression of pre-existing PMN "soil". As a result, regional and metastatic recurrence were completely thwarted. Together, this framework synchronizing oncolysis immunization and inflammation alleviation provides an effective option for post-operative suppression of metastasis.
肿瘤手术会造成炎症性创伤,加重残留肿瘤“种子”在转移前生态位(PMN)“土壤”的继发性位点上的定植,从而促进术后转移。然而,目前缺乏针对不同区域术后消除异步“种子”和“土壤”的双管齐下策略。在此,我们设计了一种水凝胶,可注入切除腔,在腔内它会立即形成支架,并随着邻近创伤处活性氧的富集而逐渐降解,用于局部递送和按需释放因溶瘤作用而死亡的自体癌细胞(ACCO)以及抗炎剂。自体细胞来源自身提供了一系列肿瘤相关抗原,亚细胞级联反应的溶瘤编排赋予了自我佐剂特性,共同保证了ACCO疫苗的高免疫原性,从而实现特异性抗肿瘤免疫。同时,炎症缓解发挥双向作用,重塑局部免疫格局并复苏ACCO,从而根除残留肿瘤“种子”,同时阻断“种子 - 土壤”的相互作用,使远处肺组织正常化,导致已存在的PMN“土壤”消退。结果,局部和转移复发被完全阻止。总之,这种同步溶瘤免疫和炎症缓解的框架为术后抑制转移提供了一种有效选择。