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Pericyte-targeting prodrug overcomes tumor resistance to vascular disrupting agents
Minfeng Chen, Xueping Lei, Changzheng Shi, Maohua Huang, Xiaobo Li, Baojian Wu, Zhengqiu Li, Weili Han, Bin Du, Jianyang Hu, Qiulin Nie, Weiqian Mai, Nan Ma, Nanhui Xu, Xinyi Zhang, Chunlin Fan, Aihua Hong, Minghan Xia, Liangping Luo, Ande Ma, Hongsheng Li, Qiang Yu, Heru Chen, Dongmei Zhang, Wencai Ye
Minfeng Chen, Xueping Lei, Changzheng Shi, Maohua Huang, Xiaobo Li, Baojian Wu, Zhengqiu Li, Weili Han, Bin Du, Jianyang Hu, Qiulin Nie, Weiqian Mai, Nan Ma, Nanhui Xu, Xinyi Zhang, Chunlin Fan, Aihua Hong, Minghan Xia, Liangping Luo, Ande Ma, Hongsheng Li, Qiang Yu, Heru Chen, Dongmei Zhang, Wencai Ye
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Concise Communication Oncology

Pericyte-targeting prodrug overcomes tumor resistance to vascular disrupting agents

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Abstract

Blood vessels in the tumor periphery have high pericyte coverage and are resistant to vascular disrupting agents (VDAs). VDA treatment resistance leads to a viable peripheral tumor rim that contributes to treatment failure and disease recurrence. Here, we provide evidence to support a hypothesis that shifting the target of VDAs from tumor vessel endothelial cells to pericytes disrupts tumor peripheral vessels and the viable rim, circumventing VDA treatment resistance. Through chemical engineering, we developed Z-GP-DAVLBH (from the tubulin-binding VDA desacetylvinblastine monohydrazide [DAVLBH]) as a prodrug that can be selectively activated by fibroblast activation protein α (FAPα) in tumor pericytes. Z-GP-DAVLBH selectively destroys the cytoskeleton of FAPα-expressing tumor pericytes, disrupting blood vessels both within the core and around the periphery of tumors. As a result, Z-GP-DAVLBH treatment eradicated the otherwise VDA-resistant tumor rim and led to complete regression of tumors in multiple lines of xenografts without producing the drug-related toxicity that is associated with similar doses of DAVLBH. This study demonstrates that targeting tumor pericytes with an FAPα-activated VDA prodrug represents a potential vascular disruption strategy in overcoming tumor resistance to VDA treatments.

Authors

Minfeng Chen, Xueping Lei, Changzheng Shi, Maohua Huang, Xiaobo Li, Baojian Wu, Zhengqiu Li, Weili Han, Bin Du, Jianyang Hu, Qiulin Nie, Weiqian Mai, Nan Ma, Nanhui Xu, Xinyi Zhang, Chunlin Fan, Aihua Hong, Minghan Xia, Liangping Luo, Ande Ma, Hongsheng Li, Qiang Yu, Heru Chen, Dongmei Zhang, Wencai Ye

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Figure 4

Z-GP-DAVLBH targeting pericytes disrupts vessels in both the tumor core and periphery.

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Z-GP-DAVLBH targeting pericytes disrupts vessels in both the tumor core ...
Tumors were harvested at 1 hour or 4 hours after MDA-MB-231 xenografts received i.v. injection of 2.0 μmol/kg Z-GP-DAVLBH (n = 5). (A) H&E staining shows vascular disruption in both the tumor core and the periphery; CD31 staining shows “hole-like” disruptions in the vessels (red arrowheads); FAPα/CD31 staining shows the shrinkage and detachment of pericytes (white arrowheads). Tumors were harvested after 4 hours of treatment. Top row scale bars: 200 μm. Middle row scale bars: 50 μm. Bottom row scale bars: 50 μm. (B) The transmission electron microscope images show the effects of Z-GP-DAVLBH on vessels in the tumor periphery. The green arrowhead indicates the shrinkage and detachment of tumor pericyte; the red arrowhead indicates a “gap” disruption between 2 ECs. Scale bars: 2 μm

Copyright © 2026 American Society for Clinical Investigation
ISSN: 0021-9738 (print), 1558-8238 (online)

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