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Adipocyte property evaluation with photoacoustic spectrum analysis: a feasibility study on human tissues

机译:利用光声光谱分析评估脂肪细胞特性:在人体组织上的可行性研究

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Photoacoustic spectrum analysis (PASA) offers potential advantages in identifying optically absorbing microstructures in biological tissues. Working at high ultrasound frequency, PASA is capable of identifying the morphological features of cells based on their intrinsic optical absorption. Adipocyte size is correlated with metabolic disease risk in the form of diabetes mellitus, thus it can be adopted as a pathology predictor to evaluate the condition of obese patient, and can be helpful for assessing the patient response to bariatric surgery. In order to acquire adipocyte size, usually adipose tissue biopsy is performed and histopathology analysis is conducted. The whole procedure is not well tolerated by patients, and is also labor and cost intensive. An unmet need is to quantify and predict adipocyte size in a mild and more efficient way. This work aims at studying the feasibility to analyze the adipocyte size of human fat tissue using the method of PASA. PA measurements were performed at the optical wavelength of 1210 nm where lipid has strong optical absorption, enabling the study of adipocyte without need of staining. Both simulation and ex vivo experiments have been completed. Good correlation between the quantified photoacoustic spectral parameter slope and the average adipocyte size obtained by the gold-standard histology has been established. This initial study suggests the potential opportunity of applying PASA to future clinical management of obesity.
机译:光声光谱分析(PASA)在识别生物组织中的光学吸收微结构方面具有潜在的优势。 PASA在高超声频率下工作,能够根据细胞固有的光吸收来鉴定细胞的形态特征。脂肪细胞的大小以糖尿病的形式与代谢疾病的风险相关,因此可以用作评估肥胖患者病情的病理预测指标,并有助于评估患者对减肥手术的反应。为了获得脂肪细胞的大小,通常进行脂肪组织活检并进行组织病理学分析。病人不能很好地忍受整个过程,而且劳动和费用密集。未满足的需求是以温和且更有效的方式量化和预测脂肪细胞的大小。这项工作旨在研究使用PASA方法分析人体脂肪组织的脂肪细胞大小的可行性。 PA测量是在1210 nm的光波长下进行的,其中脂质具有很强的光吸收能力,因此无需染色即可进行脂肪细胞的研究。模拟和离体实验均已完成。已经建立了定量的光声光谱参数斜率与通过金标准组织学获得的平均脂肪细胞大小之间的良好相关性。这项初步研究表明将PASA应用于肥胖症的未来临床治疗的潜在机会。

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