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精准癌症治疗的抗表皮生长因子受体共轭锰核酞菁铋纳米复合材料用于双成像引导的乳腺癌治疗

Precision Cancer Therapy Enabled Anti-Epidermal Growth Factor Receptor-Conjugated Manganese Core Phthalocyanine Bismuth Nanocomposite for Dual Imaging-Guided Breast Cancer Treatment.

作者信息

Mondal Sudip, Park Sumin, Nguyen Van Tu, Doan Vu Hoang Minh, Choi Jaeyeop, Ly Cao Duong, Phan Duc Tri, Truong Thi Thuy, Vo Tan Hung, Nguyen Dinh Tuan, Pal Umapada, Lee Byeongil, Oh Junghwan

机构信息

Digital Healthcare Research Center, Pukyong National University.

Industry 4.0 Convergence Bionics Engineering, Department of Biomedical Engineering, Pukyong National University, Busan 48513, Republic of Korea.

出版信息

Biomater Res. 2024 Nov 7;2024:0092. doi: 10.34133/bmr.0092. eCollection 2024.

Abstract

Cancer remains a formidable global health challenge, demanding the exploration of innovative treatment modalities with minimized side effects. One promising avenue involves the synergistic integration of targeted photothermal/photodynamic therapy (PTT/PDT), utilizing specially designed functional nanomaterials for precise cancer diagnosis and treatment. This study introduces a composite biomaterial, anti-epidermal growth factor receptor-conjugated manganese core phthalocyanine bismuth (anti-EGFR-MPB), synthesized for precise cancer imaging and treatment. The biomaterial, synthesized via a solvothermal process, effectively treats and images breast cancer in mouse models. Its biomimetic design targets cancer cells precisely, with dual imaging for real-time monitoring. The biomimetic design of the composite enables precise targeting of cancer cells, whereas the dual imaging allows for real-time visualization and monitoring of the treatment. In vivo examinations confirm substantial damage to tumor tissues with no recurrence following 808-nm laser irradiation. The composite shows strong fluorescence/photoacoustic imaging (PAI) contrast, aiding malignancy detection. Biological assays and histological analyses confirmed the efficacy of the nanocomposite in inducing apoptosis in cancer cells. The integrated targeted dual image-guided phototherapy offered by this composite substantially enhances the precision and efficacy of cancer therapy, achieving an impressive photothermal efficiency of ~33.8%. Our findings demonstrate the utility of the anti-EGFR-MPB nanocomposite for both in vitro and in vivo photoacoustic image-guided PTT and PDT. The optimal treatment strategy for triple-negative breast cancer is found to be the use of 250 μg/ml of nanocomposite irradiated with 1.0 W/cm 808-nm laser for 7 min.

摘要

癌症仍然是一项严峻的全球健康挑战,需要探索副作用最小化的创新治疗方式。一个有前景的途径是将靶向光热/光动力疗法(PTT/PDT)进行协同整合,利用特殊设计的功能纳米材料进行精确的癌症诊断和治疗。本研究介绍了一种复合生物材料,即抗表皮生长因子受体共轭锰核酞菁铋(anti-EGFR-MPB),其合成用于精确的癌症成像和治疗。该生物材料通过溶剂热法合成,能有效治疗小鼠模型中的乳腺癌并进行成像。其仿生设计可精确靶向癌细胞,具备双重成像功能以实现实时监测。该复合材料的仿生设计能够精确靶向癌细胞,而双重成像则可实现对治疗的实时可视化和监测。体内检查证实,808纳米激光照射后肿瘤组织受到严重损伤且无复发。该复合材料显示出强烈的荧光/光声成像(PAI)对比度,有助于恶性肿瘤检测。生物学检测和组织学分析证实了该纳米复合材料在诱导癌细胞凋亡方面的功效。这种复合材料提供的集成靶向双图像引导光疗大大提高了癌症治疗的精度和疗效,实现了约33.8%的令人印象深刻的光热效率。我们的研究结果证明了anti-EGFR-MPB纳米复合材料在体外和体内光声图像引导的PTT和PDT中的效用。发现三阴性乳腺癌的最佳治疗策略是使用250μg/ml的纳米复合材料,用1.0W/cm的808纳米激光照射7分钟。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/84da/11542904/8680193ac770/bmr.0092.fig.001.jpg

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