靶向碳酸酐酶ix的纳米囊泡通过重塑细胞内环境来增强铁凋亡,以协同癌症治疗†

IF 6.6 2区 材料科学 Q1 CHEMISTRY, PHYSICAL
Nian Liu, Qian Lin, Wenbao Zuo, Weibin Chen, Shan Huang, Yinshu Han, Xing-Jie Liang, Xuan Zhu and Shuaidong Huo
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引用次数: 1

摘要

铁凋亡是抑制肿瘤的一种重要调控细胞死亡,但由于细胞内碱性和氧化还原状态异常,仍存在效率低下的挑战。在此,我们报道了碳酸酐酶IX (CA IX)靶向纳米囊泡(PAHC NV)通过重塑细胞内环境来增强铁凋亡。将CA IX抑制剂4-(2-氨基乙基)苯磺酰胺(AEBS)固定在装载血红蛋白(Hb)和氯e6 (Ce6)的纳米囊泡上。PAHC到达肿瘤区域后,可通过CA IX靶向和干预被癌细胞特异性内化。随后,AEBS结合可引起细胞内酸化,改变氧化还原稳态,提高脂质过氧化(LPO)水平,从而加重铁沉过程。同时,Hb作为铁储存库,能有效诱导铁下垂,释放O2,改善肿瘤缺氧。在自供氧的帮助下,Ce6产生过多的1O2以增强光动力治疗,这反过来又有利于LPO积累以协同铁下垂。这项研究为设计纳米药物提供了一个有希望的范例,通过重塑细胞内环境来增强基于铁中毒的协同治疗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Carbonic anhydrase IX-targeted nanovesicles potentiated ferroptosis by remodeling the intracellular environment for synergetic cancer therapy†

Carbonic anhydrase IX-targeted nanovesicles potentiated ferroptosis by remodeling the intracellular environment for synergetic cancer therapy†

Ferroptosis is one critical kind of regulated cell death for tumor suppression, yet it still presents challenges of low efficiency due to the intracellular alkaline pH and aberrant redox status. Herein, we reported a carbonic anhydrase IX (CA IX)-targeted nanovesicle (PAHC NV) to potentiate ferroptosis by remodeling the intracellular environment. CA IX inhibitor 4-(2-aminoethyl) benzene sulfonamide (AEBS) was anchored onto nanovesicles loaded with hemoglobin (Hb) and chlorin e6 (Ce6). Upon reaching tumor regions, PAHC could be internalized by cancer cells specifically by means of CA IX targeting and intervention. Afterwards, the binding of AEBS could elicit intracellular acidification and alter redox homeostasis to boost the lipid peroxidation (LPO) level, thus aggravating the ferroptosis process. Meanwhile, Hb served as an iron reservoir that could efficiently evoke ferroptosis and release O2 to ameliorate tumor hypoxia. With the help of self-supplied O2, Ce6 produced a plethora of 1O2 for enhanced photodynamic therapy, which in turn favored LPO accumulation to synergize ferroptosis. This study presents a promising paradigm for designing nanomedicines to heighten ferroptosis-based synergetic therapeutics through remodeling the intracellular environment.

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来源期刊
Nanoscale Horizons
Nanoscale Horizons Materials Science-General Materials Science
CiteScore
16.30
自引率
1.00%
发文量
141
期刊介绍: Nanoscale Horizons stands out as a premier journal for publishing exceptionally high-quality and innovative nanoscience and nanotechnology. The emphasis lies on original research that introduces a new concept or a novel perspective (a conceptual advance), prioritizing this over reporting technological improvements. Nevertheless, outstanding articles showcasing truly groundbreaking developments, including record-breaking performance, may also find a place in the journal. Published work must be of substantial general interest to our broad and diverse readership across the nanoscience and nanotechnology community.
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