Stimuli-responsive magnetic black phosphorus-based nanoreactor for chirality-dependent anoikis induction in cancer therapy

Anoikis presents an alternative scheme for suppressing tumor metastasis. While limited by off-target effects, rapid degradation, and reactive oxygen species (ROS) accumulation, anoikis resistance remains a persistent challenge for current tumor therapy. The use of external and endogenous stimuli to trigger ROS bursts, as well as chirality-enhanced tumor microenvironment (TME) penetration, offers a valid solution. We developed a stimuli-responsive nanoreactor by coupling chiral histidine-modified manganese ferrite (MnFe 2 O 4 -PEG) nanoparticles with chiral cysteine-modified black phosphorus (BP) nanosheets via an ROS-sensitive thioketal (TK) bond to form a MnFe 2 O 4 -BP chiral magnetic nanoreactor (CT-MFBP). L-MFBP exhibited superior cellular uptake and intracellular retention due to its enhanced affinity for cell membranes. After entering the TME, the thioketal bond was cleaved by alternating magnetic field (AMF)-induced ROS, leading to the decomposition of the nanoreactor into chiral BP components. Subsequently, ROS accumulation was further amplified using BP-mediated photodynamic therapy (PDT). In addition, the nanoreactor demonstrated catalase (CAT)-like activity, converting endogenous H 2 O 2 into O 2 , thereby effectively alleviating the tumor hypoxic microenvironment and enhancing PDT efficacy. Furthermore, these events activated the mitogen-activated protein kinase (MAPK)-caspase 3 signaling pathway by upregulating p38 protein and Bcl-2-modifying factor (BMF) expression, which together promoted anoikis in tumor cells—a finding further validated by genomic analysis. Both in vitro and in vivo results confirmed that L-MFBP provides a robust regulatory strategy to induce anoikis and suppress tumor metastasis, offering a promising approach for chiral magnetic nanomedicine in clinical antitumor applications.

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Publication Details

Journal
Bio-Design and Manufacturing
Published
2026-09-16
DOI
https://doi.org/10.1631/bdm.2600068
Primary Topic
Nanoplatforms for cancer theranostics
Type
article
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Stimuli-responsive magnetic black phosphorus-based nanoreactor for chirality-dependent anoikis induction in cancer therapy

Yan Wang, Bo Chen, Chang Ming Li, Chengsong Yuan et al.
Bio-Design and Manufacturing
Nanoplatforms for cancer theranostics
article

Stimuli-responsive magnetic black phosphorus-based nanoreactor for chirality-dependent anoikis induction in cancer therapy

Yan Wang, Bo Chen, Chang Ming Li, Chengsong Yuan, Rencai Fan, Yuanyuan Chang, Jin Wu, Zequn Ma, Xin Liu, Chunxian Guo, Mingjun Li, Shicheng Li
article en

Abstract

Anoikis presents an alternative scheme for suppressing tumor metastasis. While limited by off-target effects, rapid degradation, and reactive oxygen species (ROS) accumulation, anoikis resistance remains a persistent challenge for current tumor therapy. The use of external and endogenous stimuli to trigger ROS bursts, as well as chirality-enhanced tumor microenvironment (TME) penetration, offers a valid solution. We developed a stimuli-responsive nanoreactor by coupling chiral histidine-modified manganese ferrite (MnFe 2 O 4 -PEG) nanoparticles with chiral cysteine-modified black phosphorus (BP) nanosheets via an ROS-sensitive thioketal (TK) bond to form a MnFe 2 O 4 -BP chiral magnetic nanoreactor (CT-MFBP). L-MFBP exhibited superior cellular uptake and intracellular retention due to its enhanced affinity for cell membranes. After entering the TME, the thioketal bond was cleaved by alternating magnetic field (AMF)-induced ROS, leading to the decomposition of the nanoreactor into chiral BP components. Subsequently, ROS accumulation was further amplified using BP-mediated photodynamic therapy (PDT). In addition, the nanoreactor demonstrated catalase (CAT)-like activity, converting endogenous H 2 O 2 into O 2 , thereby effectively alleviating the tumor hypoxic microenvironment and enhancing PDT efficacy. Furthermore, these events activated the mitogen-activated protein kinase (MAPK)-caspase 3 signaling pathway by upregulating p38 protein and Bcl-2-modifying factor (BMF) expression, which together promoted anoikis in tumor cells—a finding further validated by genomic analysis. Both in vitro and in vivo results confirmed that L-MFBP provides a robust regulatory strategy to induce anoikis and suppress tumor metastasis, offering a promising approach for chiral magnetic nanomedicine in clinical antitumor applications.

Bio-Design and Manufacturing
Fujian Medical University (CN), Nanjing University of Chinese Medicine (CN), Army Medical University (CN), Suzhou University of Science and Technology (CN), Nanjing Traditional Chinese Medicine Hospital (CN), The Affiliated Yongchuan Hospital of Chongqing Medical University (CN), Southwest Hospital (CN), Union Hospital (CN), Chongqing Medical University (CN)
Clean water and sanitation
Openalex Percentile: Top 21%
Nanoplatforms for cancer theranostics
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