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Photothermal and photoacoustic Raman cytometry in vitro and in vivo

机译:体外和体内光热和光声拉曼细胞仪

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摘要

An integrated Raman-based cytometry was developed with photothermal (PT) and photoacoustic (PA) detection of Raman-induced thermal and acoustic signals in biological samples with Raman-active vibrational modes. The two-frequency, spatially and temporally overlapping pump–Stokes excitation in counterpropagating geometry was provided by a nanosecond tunable (420–2300 nm) optical parametric oscillator and a Raman shifter (639 nm) pumped by a double-pulsed Q-switched Nd:YAG laser using microscopic and fiberoptic delivery of laser radiation. The PA and PT Raman detection and imaging technique was tested in vitro with benzene, acetone, olive oil, carbon nanotubes, chylomicron phantom, and cancer cells, and in vivo in single adipocytes in mouse mesentery model. The integration of linear and nonlinear PA and PT Raman scanning and flow cytometry has the potential to enhance its chemical specificity and sensitivity including nanobubble-based amplification (up to 10- fold) for detection of absorbing and nonabsorbing targets that are important for both basic and clinically relevant studies of lymph and blood biochemistry, cancer, and fat distribution at the single-cell level.
机译:开发了一种集成的基于拉曼的细胞计数法,该方法利用光热(PT)和光声(PA)检测具有拉曼活性振动模式的生物样品中拉曼诱导的热和声信号。纳秒可调(420–2300 nm)光学参量振荡器和拉曼移位器(639 nm)由双脉冲Q开关Nd泵浦提供了反向传播的几何结构中的两个频率,时空重叠的泵浦-斯托克斯激发: YAG激光使用显微镜和光纤传递激光辐射。在体外用苯,丙酮,橄榄油,碳纳米管,乳糜微粒体模和癌细胞对PA和PT拉曼检测和成像技术进行了体外测试,并在小鼠肠系膜模型中对单个脂肪细胞进行了体内测试。线性和非线性PA和PT拉曼扫描和流式细胞仪的集成具有增强其化学特异性和灵敏度的潜力,包括基于纳米气泡的扩增(最高10倍),可检测对碱性和碱性靶点均重要的吸收和非吸收靶标单细胞水平的淋巴和血液生化,癌症和脂肪分布的临床相关研究。

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