Shotgun proteomics coupled to nanoparticle-based biomarker enrichment reveals a novel panel of extracellular matrix proteins as candidate serum protein biomarkers for early-stage breast cancer detection
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Published:2020-12
Issue:1
Volume:22
Page:
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ISSN:1465-542X
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Container-title:Breast Cancer Research
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language:en
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Short-container-title:Breast Cancer Res
Author:
Fredolini Claudia, Pathak Khyatiben V., Paris Luisa, Chapple Kristina M., Tsantilas Kristine A., Rosenow Matthew, Tegeler Tony J., Garcia-Mansfield Krystine, Tamburro Davide, Zhou Weidong, Russo Paul, Massarut Samuele, Facchiano Francesco, Belluco Claudio, De Maria Ruggero, Garaci Enrico, Liotta Lance, Petricoin Emanuel F., Pirrotte PatrickORCID
Abstract
Abstract
Background
The lack of specificity and high degree of false positive and false negative rates when using mammographic screening for detecting early-stage breast cancer is a critical issue. Blood-based molecular assays that could be used in adjunct with mammography for increased specificity and sensitivity could have profound clinical impact. Our objective was to discover and independently verify a panel of candidate blood-based biomarkers that could identify the earliest stages of breast cancer and complement current mammographic screening approaches.
Methods
We used affinity hydrogel nanoparticles coupled with LC-MS/MS analysis to enrich and analyze low-abundance proteins in serum samples from 20 patients with invasive ductal carcinoma (IDC) breast cancer and 20 female control individuals with positive mammograms and benign pathology at biopsy. We compared these results to those obtained from five cohorts of individuals diagnosed with cancer in organs other than breast (ovarian, lung, prostate, and colon cancer, as well as melanoma) to establish IDC-specific protein signatures. Twenty-four IDC candidate biomarkers were then verified by multiple reaction monitoring (LC-MRM) in an independent validation cohort of 60 serum samples specifically including earliest-stage breast cancer and benign controls (19 early-stage (T1a) IDC and 41 controls).
Results
In our discovery set, 56 proteins were increased in the serum samples from IDC patients, and 32 of these proteins were specific to IDC. Verification of a subset of these proteins in an independent cohort of early-stage T1a breast cancer yielded a panel of 4 proteins, ITGA2B (integrin subunit alpha IIb), FLNA (Filamin A), RAP1A (Ras-associated protein-1A), and TLN-1 (Talin-1), which classified breast cancer patients with 100% sensitivity and 85% specificity (AUC of 0.93).
Conclusions
Using a nanoparticle-based protein enrichment technology, we identified and verified a highly specific and sensitive protein signature indicative of early-stage breast cancer with no false positives when assessing benign and inflammatory controls. These markers have been previously reported in cell-ECM interaction and tumor microenvironment biology. Further studies with larger cohorts are needed to evaluate whether this biomarker panel improves the positive predictive value of mammography for breast cancer detection.
Funder
Istituto Superiore di Sanità
Publisher
Springer Science and Business Media LLC
Reference50 articles.
1. Shieh Y, Eklund M, Sawaya GF, Black WC, Kramer BS, Esserman LJ. Population-based screening for cancer: hope and hype. Nat Rev Clin Oncol. 2016;13(9):550–65. 2. Hofvind S, Ponti A, Patnick J, Ascunce N, Njor S, Broeders M, et al. False-positive results in mammographic screening for breast cancer in Europe: a literature review and survey of service screening programmes. J Med Screen. 2012;19(Suppl 1):57–66. 3. Løberg M, Lousdal ML, Bretthauer M, Kalager M. Benefits and harms of mammography screening. Breast Cancer Res. 2015;17:63. 4. Joy JE, Penhoet EE, Petitti DB, National Cancer Policy Board (U.S.). Committee on New Approaches to Early Detection and Diagnosis of Breast Cancer., National Research Council (U.S.). Policy and Global Affairs., National Research Council (U.S.). Board on Science Technology and Economic Policy. Saving women’s lives: strategies for improving breast cancer detection and diagnosis. Washington, D.C.: National Academies Press; 2005. xxi, 361 p. p. 5. Lehman CD, Wellman RD, Buist DS, Kerlikowske K, Tosteson AN, Miglioretti DL, et al. Diagnostic accuracy of digital screening mammography with and without computer-aided detection. JAMA Intern Med. 2015;175(11):1828–37.
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