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NIR-II fluorescence imaging in liver tumor surgery: A narrative review 被引量:1
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作者 Zihao Liu Lifeng Yan +1 位作者 Qingsong Hu dalong yin 《Journal of Innovative Optical Health Sciences》 SCIE EI CSCD 2024年第1期29-44,共16页
In liver tumor surgery,the recognition of tumor margin and radical resection of microcancer focis have always been the crucial points to reduce postoperative recurrence of tumor.However,naked-eye inspection and palpat... In liver tumor surgery,the recognition of tumor margin and radical resection of microcancer focis have always been the crucial points to reduce postoperative recurrence of tumor.However,naked-eye inspection and palpation have limited effectiveness in identifying tumor boundaries,and traditional imaging techniques cannot consistently locate tumors in real time.As an intraoperative real-time navigation imaging method,NIRfluorescence imaging has been extensively studied for its simplicity,reliable safety,and superior sensitivity,and is expected to improve the accuracy of liver tumor surgery.In recent years,the research focus of NIRfluorescence has gradually shifted from the-rst near-infrared window(NIR-I,700–900 nm)to the second near-infrared window(NIR-II,1000–1700 nm).Fluorescence imaging in NIR-II reduces the scattering effect of deep tissue,providing a preferable detection depth and spatial resolution while signi-cantly eliminating liver autofluorescence background to clarify tumor margin.Developingfluorophores combined with tumor antibodies will further improve the precision offluorescence-guided surgical navigation.With the development of a bunch offluorophores with phototherapy ability,NIR-II can integrate tumor detection and treatment to explore a new therapeutic strategy for liver cancer.Here,we review the recent progress of NIR-IIfluorescence technology in liver tumor surgery and discuss its challenges and potential development direction. 展开更多
关键词 Fluorescence guided-surgery liver cancer near infrared-II optical imaging
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由α-氨基酸合成pH响应超分子聚多肽纳米粒用于联合化学和光热治疗
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作者 钱红云 党慧萍 +2 位作者 滕畅畅 尹大龙 闫立峰 《中国科学技术大学学报》 CAS CSCD 北大核心 2023年第3期47-52,I0003,共7页
以α-氨基酸为原料,首先合成了l-谷氨酸和l-赖氨酸的N-硫代羧酸酐单体(NTA),而后聚合制备了聚多肽共聚物P(Glu-co-Lys)。该共聚物可以通过超分子自组装形成聚多肽纳米粒,可以包裹憎水性药物。形成的纳米粒具有pH响应特性,在正常生理环境... 以α-氨基酸为原料,首先合成了l-谷氨酸和l-赖氨酸的N-硫代羧酸酐单体(NTA),而后聚合制备了聚多肽共聚物P(Glu-co-Lys)。该共聚物可以通过超分子自组装形成聚多肽纳米粒,可以包裹憎水性药物。形成的纳米粒具有pH响应特性,在正常生理环境中(pH 7.4)纳米粒稳定存在,但在肿瘤弱酸性环境中(pH 5.5)纳米粒解体并可释放出包裹的药物。采用该超分子纳米粒可同时负载化疗药阿霉素(DOX)和近红外光热染料(HQS-Cy),细胞实验表明,该纳米粒可以实现pH响应的负载药物和染料的递送,并可以实现近红外二区荧光成像引导的化疗-光热治疗的联合治疗。 展开更多
关键词 有机近红外染料 纳米粒 聚多肽 化疗 光热治疗
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