Localized Depletion of Macrophages by Abdominal Cavity Retention Nanoparticles as a Potential Therapy for Peritoneal Metastasis

  • ACS Nano. 2026 Jun 16;20(23):16987-17000. doi: 10.1021/acsnano.6c05178.
Rong Li  1  2 Yutao Qiu  3 Xiaoxian Duan  1 Zhongqiang Li  1 Jian Wang  4 Wei Zhuo  5 Bingxiang Zhao  1 Quan Zhou  5 Xuefei Zhou  3 Tianhua Zhou  5  4 Xiangrui Liu  1  6  2  7
Affiliations
  • 1. Department of Pharmacology and Department of Gastroenterology of the Second Affiliated Hospital, Zhejiang University School of Medicine, Hangzhou 310058, China.
  • 2. Innovation Center of Yangtze Delta, Zhejiang University, Jiaxing 314100, China.
  • 3. International Institutes of Medicine, The Fourth Affiliated Hospital of Zhejiang University School of Medicine, Yiwu 322000, China.
  • 4. Department of Colorectal Surgery and Oncology, the Second Affiliated Hospital, Zhejiang University School of Medicine, Hangzhou 310009, China.
  • 5. Department of Cell Biology, Zhejiang University School of Medicine, Hangzhou 310058, China.
  • 6. Center for Medical Research and Innovation in Digestive System Tumors, Hangzhou 310020, China.
  • 7. Zhejiang Key Laboratory of Smart Biomaterials and Key Laboratory of Biomass Chemical Engineering, College of Chemical and Biological Engineering, Zhejiang University, Hangzhou 310027, China.
Abstract

Site-specific drug delivery and minimizing the off-target actions of pharmaceuticals are among the primary pursuits in drug development research with a special emphasis on Anticancer drugs targeting metastatic tumors. Here, we show that large-sized and stiff lipid nanoparticles (LNP-L), fabricated via a modified microfluidic process and composed of clinically approved excipients, exhibit the capability of abdominal cavity retention via intraperitoneal (IP) administration. In addition, the clodronate-loaded lipid nanoparticles (Clodro-LNP-L) enable localized depletion of peritoneal macrophages while sparing blood monocytes and macrophages in Other tissues. The peritoneal-specific removal of macrophages by Clodro-LNP-L preserves the systemic antimicrobial capability, whereas the commercial clodronate liposomes significantly increase the Infection risk of S. aureus-induced pneumonia and sepsis in murine models. Importantly, Clodro-LNP-L effectively inhibits tumor implantation and metastasis in two murine models of peritoneal metastasis (PM) of colon and gastric Cancer, respectively. Meanwhile, the macrophage depletion induced by Clodro-LNP-L synergizes with the first-line chemotherapy drug oxaliplatin (OXP) to prolong the overall survival of mice bearing colorectal PM. Our findings suggest a potential clinically translatable strategy for treating PM via localized depletion of macrophages.

Keywords
drug delivery; lipid nanoparticle; local depletion; macrophage; peritoneal metastasis.
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