材料科学
脂质体
利基
调制(音乐)
纳米技术
趋化性
癌症研究
医学
生物
内科学
生物化学
受体
哲学
美学
作者
Ziyan Wang,Longfei Liao,Fengju Wang,Junzhu Shi,Jiaqi Liu,Rui Zhou,Min Liu,Yuan Huang,Lian Li
标识
DOI:10.1002/adfm.202419583
摘要
Abstract Inhalation offers a non‐invasive method to administer drugs to lungs, but achieving selective delivery to pulmonary lesions while sparing normal lung tissues remains challenging. Here, the development of an inhalable chemotactic liposome designed for targeted modulation of pulmonary pre‐metastatic niche (PMN) is reported. The inhaled liposome can migrate along chemokine gradients, preferentially accumulating in chemokine‐secreting PMNs within the lung. Upon localized drug release, the liposome mitigates fibrosis, and disrupts PMN evolution, thereby attenuating the pro‐metastatic role of PMN as a hospitable “soil” for residual tumor cell “seeding” post‐surgery. This approach further complements a sprayable hydrogel developed for immediate post‐surgical application within the tumor resection cavity. While this hydrogel alone reduces the metastatic potential of postoperative tumor residues, it proves insufficient in halting the spread to lungs. However, the integration of the inhalable liposome and sprayable hydrogel into a dual‐pronged strategy presents a patient‐friendly method that simultaneously targets both the pro‐metastatic PMN “soil” and metastatic tumor “seeds”, resulting in significant inhibition of postoperative lung metastasis.
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