Time-staggered chemo-immunotherapy via engineered nanofiber resists postoperative dynamic immunosuppression in glioblastoma

Поэтапная хемо-иммунотерапия с помощью конструируемого нанофибра противостоит постоперационной динамической иммуносупрессии при глиобластоме
Yang Ding, Xi Zhang, Jianping Zhou, Mingjie Song, Ziru Zhang, Ruonan Cheng, Y F Yang, Yi Jin, Qiaofei Du, Huaqing Zhang
2026-07-03

BLZ945doxorubicin (DOX)engineered nanofiberpostoperative immunosuppressiontime-staggered chemo-immunotherapy
Glioblastoma (GBM) almost inevitably recurs after surgical resection owing to residual infiltrative tumor cells and postoperative immunosuppression. However, delayed initiation of adjuvant therapy fails to restrain rapid tumor regrowth during the early postoperative period. Here, we elucidate postoperative dynamic immune pathology characterized by early explosive tumor proliferation (Ki67⁺ > 38.5%) and progressive protumoral macrophage polarization, and provide a time-staggered chemo-immunotherapy strategy to promptly remedy the postoperative therapeutic gap. To implement the adaptive intervention, we design an engineered nanofiber that enables immediate chemotherapy followed by dynamic immune modulation tailored to the evolving postoperative pathology. Structurally, the tunable nanofiber composition enables time-staggered release of doxorubicin (DOX) to induce immunogenic cell death and BLZ945 to suppress protumoral macrophage programs and abundance. After surgical resection of orthotopic GL261 tumors, a single implantation achieves 83.9% tumor inhibition and establishes immune memory. This study explores the evolving GBM relapse process to guide engineered nanofiber design with time-staggered drug therapy against postoperative recurrence. After surgical resection of glioblastoma, the evolution of postoperative tumor proliferation still causes severe progression even death to patients. Here this group reports an engineered nanofibers enabling the time-staggered release of doxorobucin and BLZ945 suppressing post-surgical tumor recurrence.
1
A time-staggered chemo-immunotherapy strategy can promptly address the postoperative therapeutic gap caused by rapid tumor regrowth and dynamic immunosuppression.
2
Engineered nanofibers were designed to enable immediate release of doxorubicin (DOX) followed by delayed release of BLZ945 for dynamic immune modulation.
3
Postoperative GBM shows early explosive tumor proliferation (Ki67+ > 38.5%) and progressive protumoral macrophage polarization.
4
Single implantation of the nanofiber after resection of orthotopic GL261 tumors achieved 83.9% tumor inhibition and established immune memory.
5
Tunable nanofiber composition allows time-staggered release that induces immunogenic cell death (via DOX) and suppresses protumoral macrophage programs and abundance (via BLZ945).

Engineered nanofiber implanted after surgical resection of orthotopic GL261 glioblastoma delivering time-staggered doxorubicin and BLZ945

Time-staggered chemo-immunotherapy efficacy in preventing postoperative glioblastoma recurrence by immediate chemotherapy-induced immunogenic cell death followed by delayed suppression of protumoral macrophage polarization

Publication Details
Publication Date
2026-07-03
Journal
Publisher
ISSN
Cited by
0
Access Type
Author Information
Authors
Yang Ding
Xi Zhang
Jianping Zhou
Mingjie Song
Ziru Zhang
Ruonan Cheng
Y F Yang
Yi Jin
Qiaofei Du
Huaqing Zhang
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%