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Nano-GoldCorking and Enzymatic Uncorking of CarbonNanotube Cups

机译:纳米金碳的焦化和酶促解焦纳米管杯

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摘要

Because of their unique stacked, cup-shaped, hollow compartments, nitrogen-doped carbon nanotube cups (NCNCs) have promising potential as nanoscale containers. Individual NCNCs are isolated from their stacked structure through acid oxidation and subsequent probe-tip sonication. The NCNCs are then effectively corked with gold nanoparticles (GNPs) by sodium citrate reduction with chloroauric acid, forming graphitic nanocapsules with significant surface-enhanced Raman signature. Mechanistically, the growth of the GNP corks starts from the nucleation and welding of gold seeds on the open rims of NCNCs enriched with nitrogen functionalities, as confirmed by density functional theory calculations. A potent oxidizing enzyme of neutrophils, myeloperoxidase (MPO), can effectively open the corked NCNCs through GNP detachment, with subsequent complete enzymatic degradation of the graphitic shells. This controlled opening and degradation was further carried out in vitro with human neutrophils. Furthermore, the GNP-corked NCNCs were demonstrated to function as novel drug delivery carriers, capableof effective (i) delivery of paclitaxel to tumor-associated myeloid-derivedsuppressor cells (MDSC), (ii) MPO-regulated release, and (iii) blockadeof MDSC immunosuppressive potential.
机译:氮掺杂碳纳米管杯(NCNC)由于其独特的堆叠,杯形,中空隔室,具有作为纳米级容器的广阔潜力。各个NCNC通过酸氧化和随后的探针超声处理从堆叠结构中分离出来。然后,通过用氯金酸将柠檬酸钠还原,将NCNCs与金纳米颗粒(GNP)有效地塞塞在一起,形成具有明显表面增强拉曼特征的石墨纳米胶囊。从机制上讲,GNP软木塞的生长始于金种子在具有氮功能的NCNC的开孔处的成核和焊接,这已通过密度泛函理论计算得到证实。中性粒细胞的一种强力氧化酶,髓过氧化物酶(MPO)可通过GNP分离有效地打开软木塞状NCNC,随后石墨壳的完全酶促降解。用人中性粒细胞进一步在体外进行这种受控的开放和降解。此外,已证明与GNP相连的NCNC具有新型药物输送载体的功能,(i)将紫杉醇递送至肿瘤相关的髓样来源的疗效抑制细胞(MDSC),(ii)MPO调节释放和(iii)阻断MDSC免疫抑制潜力。

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