Label-free Raman spectroscopy provides early determination and precise localization of breast cancer-colonized bone alterations.
Chi ZhangPaul T WinnardSidarth DasariScott L KominskyMichele DoucetSwaathi JayaramanVenu RamanIshan BarmanPublished in: Chemical science (2017)
Breast neoplasms frequently colonize bone and induce development of osteolytic bone lesions by disrupting the homeostasis of the bone microenvironment. This degenerative process can lead to bone pain and pathological bone fracture, a major cause of cancer morbidity and diminished quality of life, which is exacerbated by our limited ability to monitor early metastatic disease in bone and assess fracture risk. Spurred by its label-free, real-time nature and its exquisite molecular specificity, we employed spontaneous Raman spectroscopy to assess and quantify early metastasis driven biochemical alterations to bone composition. As early as two weeks after intracardiac inoculations of MDA-MB-435 breast cancer cells in NOD-SCID mice, Raman spectroscopic measurements in the femur and spine revealed consistent changes in carbonate substitution, overall mineralization as well as crystallinity increase in tumor-bearing bones when compared with their normal counterparts. Our observations reveal the possibility of early stage detection of biochemical changes in the tumor-bearing bones - significantly before morphological variations are captured through radiographic diagnosis. This study paves the way for a better molecular understanding of altered bone remodeling in such metastatic niches, and for further clinical studies with the goal of establishing a non-invasive tool for early metastasis detection and prediction of pathological fracture risk in breast cancer.
Keyphrases
- bone mineral density
- label free
- raman spectroscopy
- soft tissue
- bone loss
- early stage
- bone regeneration
- squamous cell carcinoma
- small cell lung cancer
- postmenopausal women
- type diabetes
- breast cancer cells
- body composition
- chronic pain
- neuropathic pain
- radiation therapy
- metabolic syndrome
- single cell
- insulin resistance
- cell proliferation
- lymph node
- spinal cord injury
- adipose tissue
- real time pcr
- loop mediated isothermal amplification
- signaling pathway
- spinal cord
- mass spectrometry
- cell death
- sentinel lymph node
- quantum dots
- young adults
- high fat diet induced
- preterm birth