Som Dipasree, Tak Megha, Setia Mohit, Patil Asawari, Sengupta Amit, Chilakapati C Murali Krishna, Srivastava Anurag, Parmar Vani, Nair Nita, Sarin Rajiv, Badwe R
Bioengineering Lab, Office: PS-113, Advanced center for Treatment, Research and Education in Cancer, TATA Memorial Centre, Kharghar, Navi Mumbai, 410210, India.
B. Tech, Dhirubhai Ambani Institute of Information and Communication Technology, Gandhi Nagar, Gujarat, India.
Lasers Med Sci. 2016 Jan;31(1):95-111. doi: 10.1007/s10103-015-1830-6. Epub 2015 Nov 9.
Raman spectroscopy which is based upon inelastic scattering of photons has a potential to emerge as a noninvasive bedside in vivo or ex vivo molecular diagnostic tool. There is a need to improve the sensitivity and predictability of Raman spectroscopy. We developed a grid matrix-based tissue mapping protocol to acquire cellular-specific spectra that also involved digital microscopy for localizing malignant and lymphocytic cells in sentinel lymph node biopsy sample. Biosignals acquired from specific cellular milieu were subjected to an advanced supervised analytical method, i.e., cross-correlation and peak-to-peak ratio in addition to PCA and PC-LDA. We observed decreased spectral intensity as well as shift in the spectral peaks of amides and lipid bands in the completely metastatic (cancer cells) lymph nodes with high cellular density. Spectral library of normal lymphocytes and metastatic cancer cells created using the cellular specific mapping technique can be utilized to create an automated smart diagnostic tool for bench side screening of sampled lymph nodes. Spectral library of normal lymphocytes and metastatic cancer cells created using the cellular specific mapping technique can be utilized to develop an automated smart diagnostic tool for bench side screening of sampled lymph nodes supported by ongoing global research in developing better technology and signal and big data processing algorithms.
基于光子非弹性散射的拉曼光谱法有潜力成为一种无创的床边体内或体外分子诊断工具。提高拉曼光谱法的灵敏度和可预测性很有必要。我们开发了一种基于网格矩阵的组织映射协议,以获取细胞特异性光谱,该协议还涉及数字显微镜,用于在前哨淋巴结活检样本中定位恶性细胞和淋巴细胞。从特定细胞环境中获取的生物信号除了进行主成分分析(PCA)和主成分线性判别分析(PC-LDA)外,还采用了一种先进的监督分析方法,即互相关和峰峰比。我们观察到,在细胞密度高的完全转移(癌细胞)淋巴结中,酰胺和脂质带的光谱强度降低,光谱峰发生了偏移。利用细胞特异性映射技术创建的正常淋巴细胞和转移癌细胞的光谱库,可用于创建一种自动化智能诊断工具,用于对采集的淋巴结进行床边筛查。利用细胞特异性映射技术创建的正常淋巴细胞和转移癌细胞的光谱库,可用于开发一种自动化智能诊断工具,用于对采集的淋巴结进行床边筛查,目前全球正在开展研究,以开发更好 的技术、信号和大数据处理算法,为其提供支持。