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用于有效乳腺癌治疗和促进伤口愈合的多功能生物活性双层纳米纤维基质

Multifunctional Bioactive Dual-Layered Nanofibrous Matrix for Effective Breast Cancer Therapy and Enhanced Wound Healing.

作者信息

Kim Sungyun, Jeong Da In, Karmakar Mrinmoy, Huh Ji-Won, Hong Eun-Hye, Kim Dae-Joon, Ko Hyun-Jeong, Cho Hyun-Jong, Lee Ki-Bum

机构信息

Department of Pharmacy, Kangwon National University, Chuncheon, Gangwon, 24341, Republic of Korea.

Department of Chemistry and Chemical Biology, Rutgers, The State University of New Jersey, 123 Bevier Road, Piscataway, NJ, 08854, USA.

出版信息

Small. 2025 Aug;21(31):e2500717. doi: 10.1002/smll.202500717. Epub 2025 Apr 28.

Abstract

Surgical resection is the primary treatment for triple-negative breast cancer (TNBC). Post-operative complications, including tumor recurrence and bacterial infections, hinder complete remission and long-term recovery. To address these challenges, a multifunctional bioactive dual-layered nanofibrous matrix (MBDL-NanoMat) featuring adaptive shape control, excellent wound adherence, tunable drug release profiles, and superior biocompatibility for post-surgical applications is developed. The MBDL-NanoMat comprises a hydrophilic (HyPhil) layer and a hydrophobic (HyPhob) layer, offering distinct functionalities. The HyPhil layer, electrospun with gelatin and copper peroxide nanoparticles (Cu NPs), rapidly releases Cu NPs to induce anticancer effects through chemodynamic therapy (CDT), ferroptosis, and cuproptosis along with antibacterial action. Near-infrared laser irradiation enhances therapeutic efficacy through photothermal therapy (PTT). The HyPhob layer ensures prolonged therapeutic effects by releasing therapeutic molecules, such as rapamycin, enabling sustained chemotherapy (CT) and antibacterial activity. This synergistic therapeutic system integrates multiple mechanisms-CT, CDT, PTT, ferroptosis, and cuproptosis-suppressing tumor recurrence and accelerating wound healing. Preclinical results demonstrated enhanced angiogenesis, collagen deposition, and dermal regeneration without systemic safety. In short, the MBDL-NanoMat platform offers a unique advantage in post-surgical TNBC care by simultaneously targeting tumor recurrence and facilitating wound healing. Further investigation of this platform can significantly improve oncological and regenerative medicine strategies.

摘要

手术切除是三阴性乳腺癌(TNBC)的主要治疗方法。术后并发症,包括肿瘤复发和细菌感染,阻碍了完全缓解和长期康复。为应对这些挑战,开发了一种多功能生物活性双层纳米纤维基质(MBDL-NanoMat),其具有自适应形状控制、优异的伤口粘附性、可调的药物释放曲线以及用于术后应用的卓越生物相容性。MBDL-NanoMat由亲水(HyPhil)层和疏水(HyPhob)层组成,具有不同的功能。HyPhil层由明胶和过氧化铜纳米颗粒(Cu NPs)静电纺丝而成,可快速释放Cu NPs,通过化学动力学疗法(CDT)、铁死亡和铜死亡诱导抗癌作用以及抗菌作用。近红外激光照射通过光热疗法(PTT)增强治疗效果。HyPhob层通过释放治疗分子(如雷帕霉素)确保延长治疗效果,实现持续化疗(CT)和抗菌活性。这种协同治疗系统整合了多种机制——CT、CDT、PTT、铁死亡和铜死亡——抑制肿瘤复发并加速伤口愈合。临床前结果表明,在没有全身安全性问题的情况下,血管生成、胶原蛋白沉积和皮肤再生得到增强。简而言之,MBDL-NanoMat平台通过同时针对肿瘤复发和促进伤口愈合,在术后TNBC护理中具有独特优势。对该平台的进一步研究可显著改善肿瘤学和再生医学策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0656/12332832/8386990adce3/SMLL-21-2500717-g005.jpg

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