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Publications (7 of 7) Show all publications
Wu, D., Yan, J., Shen, X., Sun, Y., Thulin, M., Cai, Y., . . . Kamali-Moghaddam, M. (2019). Profiling surface proteins on individual exosomes using a proximity barcoding assay. Nature Communications, 10, Article ID 3854.
Open this publication in new window or tab >>Profiling surface proteins on individual exosomes using a proximity barcoding assay
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2019 (English)In: Nature Communications, E-ISSN 2041-1723, Vol. 10, article id 3854Article in journal (Refereed) Published
Abstract [en]

Exosomes have been implicated in numerous biological processes, and they may serve as important disease markers. Surface proteins on exosomes carry information about their tissues of origin. Because of the heterogeneity of exosomes it is desirable to investigate them individually, but this has so far remained impractical. Here, we demonstrate a proximity-dependent barcoding assay to profile surface proteins of individual exosomes using antibody-DNA conjugates and next-generation sequencing. We first validate the method using artificial streptavidin-oligonucleotide complexes, followed by analysis of the variable composition of surface proteins on individual exosomes, derived from human body fluids or cell culture media. Exosomes from different sources are characterized by the presence of specific combinations of surface proteins and their abundance, allowing exosomes to be separately quantified in mixed samples to serve as markers for tissue-specific engagement in disease.

Place, publisher, year, edition, pages
NATURE PUBLISHING GROUP, 2019
National Category
Cell and Molecular Biology
Identifiers
urn:nbn:se:uu:diva-398851 (URN)10.1038/s41467-019-11486-1 (DOI)000482567200002 ()31451692 (PubMedID)
Funder
Swedish Research CouncilKnut and Alice Wallenberg FoundationEU, FP7, Seventh Framework Programme, 294409
Available from: 2019-12-18 Created: 2019-12-18 Last updated: 2023-03-28Bibliographically approved
Franzen, B., Kamali-Moghaddam, M., Alexeyenko, A., Hatschek, T., Becker, S., Wik, L., . . . Lewensohn, R. (2018). A fine-needle aspiration-based protein signature discriminates benign from malignant breast lesions. Molecular Oncology, 12(9), 1415-1428
Open this publication in new window or tab >>A fine-needle aspiration-based protein signature discriminates benign from malignant breast lesions
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2018 (English)In: Molecular Oncology, ISSN 1574-7891, E-ISSN 1878-0261, Vol. 12, no 9, p. 1415-1428Article in journal (Refereed) Published
Abstract [en]

There are increasing demands for informative cancer biomarkers, accessible via minimally invasive procedures, both for initial diagnostics and to follow-up personalized cancer therapy. Fine-needle aspiration (FNA) biopsy provides ready access to relevant tissues; however, the minute sample amounts require sensitive multiplex molecular analysis to achieve clinical utility. We have applied proximity extension assays (PEA) and NanoString (NS) technology for analyses of proteins and of RNA, respectively, in FNA samples. Using samples from patients with breast cancer (BC, n=25) or benign lesions (n=33), we demonstrate that these FNA-based molecular analyses (a) can offer high sensitivity and reproducibility, (b) may provide correct diagnosis in shorter time and at a lower cost than current practice, (c) correlate with results from routine analysis (i.e., benchmarking against immunohistochemistry tests for ER, PR, HER2, and Ki67), and (d) may also help identify new markers related to immunotherapy. A specific 11-protein signature, including FGF binding protein 1, decorin, and furin, distinguished all cancer patient samples from all benign lesions in our main cohort and in smaller replication cohort. Due to the minimally traumatic sampling and rich molecular information, this combined proteomics and transcriptomic methodology is promising for diagnostics and evaluation of treatment efficacy in BC.

Keywords
breast cancer diagnosis, fine-needle aspiration, protein biomarker, proximity extension assay
National Category
Cancer and Oncology Cell and Molecular Biology
Identifiers
urn:nbn:se:uu:diva-364195 (URN)10.1002/1878-0261.12350 (DOI)000443402000002 ()30019538 (PubMedID)
Funder
VINNOVA, 201600595Swedish Research CouncilEU, FP7, Seventh Framework Programme, 316929 294409Stockholm County Council, 20151043The Breast Cancer FoundationSwedish Cancer SocietyThe Cancer Research Funds of Radiumhemmet
Available from: 2018-10-29 Created: 2018-10-29 Last updated: 2018-11-16Bibliographically approved
Caja, L., Tzavlaki, K., Dadras, M. S., Tan, E.-J., Hatem, G., Maturi, N. P., . . . Moustakas, A. (2018). Snail regulates BMP and TGF beta pathways to control the differentiation status of glioma-initiating cells. Oncogene, 37(19), 2515-2531
Open this publication in new window or tab >>Snail regulates BMP and TGF beta pathways to control the differentiation status of glioma-initiating cells
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2018 (English)In: Oncogene, ISSN 0950-9232, E-ISSN 1476-5594, Vol. 37, no 19, p. 2515-2531Article in journal (Refereed) Published
Abstract [en]

Glioblastoma multiforme is a brain malignancy characterized by high heterogeneity, invasiveness, and resistance to current therapies, attributes related to the occurrence of glioma stem cells (GSCs). Transforming growth factor beta (TGF beta) promotes self-renewal and bone morphogenetic protein (BMP) induces differentiation of GSCs. BMP7 induces the transcription factor Snail to promote astrocytic differentiation in GSCs and suppress tumor growth in vivo. We demonstrate that Snail represses stemness in GSCs. Snail interacts with SMAD signaling mediators, generates a positive feedback loop of BMP signaling and transcriptionally represses the TGFB1 gene, decreasing TGF beta 1 signaling activity. Exogenous TGF beta 1 counteracts Snail function in vitro, and in vivo promotes proliferation and re-expression of Nestin, confirming the importance of TGFB1 gene repression by Snail. In conclusion, novel insight highlights mechanisms whereby Snail differentially regulates the activity of the opposing BMP and TGF beta pathways, thus promoting an astrocytic fate switch and repressing stemness in GSCs.

National Category
Cell and Molecular Biology
Identifiers
urn:nbn:se:uu:diva-355463 (URN)10.1038/s41388-018-0136-0 (DOI)000431873400005 ()29449696 (PubMedID)
Funder
Swedish Research Council, K2013-66X-14936-10-5Swedish Research Council, 2015-02757
Note

Andra och tredje författare delar andra författarskapet.

Available from: 2018-06-29 Created: 2018-06-29 Last updated: 2022-01-29Bibliographically approved
Ebai, T., de Oliveira, F. M., Löf, L., Wik, L., Schweiger, C., Larsson, A., . . . Kamali-Moghaddam, M. (2017). Analytically Sensitive Protein Detection in Microtiter Plates by Proximity Ligation with Rolling Circle Amplification. Clinical Chemistry, 63(9), 1497-1505
Open this publication in new window or tab >>Analytically Sensitive Protein Detection in Microtiter Plates by Proximity Ligation with Rolling Circle Amplification
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2017 (English)In: Clinical Chemistry, ISSN 0009-9147, E-ISSN 1530-8561, Vol. 63, no 9, p. 1497-1505Article in journal (Refereed) Published
Abstract [en]

BACKGROUND: Detecting proteins at low concentrations in plasma is crucial for early diagnosis. Current techniques in clinical routine, such as sandwich ELISA, provide sensitive protein detection because of a dependence on target recognition by pairs of antibodies, but detection of still lower protein concentrations is often called for. Proximity ligation assay with rolling circle amplification (PLARCA) is a modified proximity ligation assay (PLA) for analytically specific and sensitive protein detection via binding of target proteins by 3 antibodies, and signal amplification via rolling circle amplification (RCA) in microtiter wells, easily adapted to instrumentation in use in hospitals.

METHODS: Proteins captured by immobilized antibodies were detected using a pair of oligonucleotide-conjugated antibodies. Upon target recognition, these PLA probes guided oligonucleotide ligation, followed by amplification via RCA of circular DNA strands that formed in the reaction. The RCA products were detected by horseradish peroxidase-labeled oligonucleotides to generate colorimetric reaction products with readout in an absorbance microplate reader.

RESULTS: We compared detection of interleukin (IL)-4, IL-6, IL-8, p53, and growth differentiation factor-15 by PLARCA and conventional sandwich ELISA or immuno RCA. PLARCA detected lower concentrations of proteins and exhibited a broader dynamic range compared ELISA and iRCA using the same antibodies. IL-4 and IL-6 were detected in clinical samples at femtomolar concentrations, considerably lower than for ELISA.

CONCLUSIONS: PLARCA offers detection of lower protein levels and increased dynamic ranges compared to ELISA. The PLARCA procedure may be adapted to routine instrumentation available in hospitals and research laboratories.

National Category
Clinical Laboratory Medicine
Identifiers
urn:nbn:se:uu:diva-326672 (URN)10.1373/clinchem.2017.271833 (DOI)000408421200013 ()28667186 (PubMedID)
Funder
Swedish Research CouncilKnut and Alice Wallenberg FoundationEU, FP7, Seventh Framework Programme, 294409 264737 313010
Available from: 2017-07-21 Created: 2017-07-21 Last updated: 2018-09-17Bibliographically approved
Larssen, P., Wik, L., Czarnewski, P., Eldh, M., Löf, L., Ronquist, G., . . . Kamali-Moghaddam, M. (2017). Tracing Cellular Origin of Human Exosomes Using Multiplex Proximity Extension Assay. Molecular & Cellular Proteomics, 16(3), 502-511
Open this publication in new window or tab >>Tracing Cellular Origin of Human Exosomes Using Multiplex Proximity Extension Assay
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2017 (English)In: Molecular & Cellular Proteomics, ISSN 1535-9476, E-ISSN 1535-9484, Vol. 16, no 3, p. 502-511Article in journal (Refereed) Published
Abstract [en]

Extracellular vesicles (EVs) are membrane-coated objects such as exosomes and microvesicles, released by many cell-types. Their presence in body fluids and the variable surface composition and content render them attractive potential biomarkers. The ability to determine their cellular origin could greatly move the field forward. We used multiplex proximity extension assays (PEA) to identify with high specificity and sensitivity the protein profiles of exosomes of different origins, including seven cell lines and two different body fluids. By comparing cells and exosomes, we successfully identified the cells originating the exosomes. Furthermore, by principal component analysis of protein patterns human milk EVs and prostasomes released from prostate acinar cells clustered with cell lines from breast and prostate tissues, respectively. Milk exosomes uniquely expressed CXCL5, MIA and KLK6, while prostasomes carried NKX31, GSTP1 and SRC, highlighting that EVs originating from different origins express distinct proteins. In conclusion, PEA provides a powerful protein screening tool in exosome research, for purposes of identifying the cell source of exosomes, or new biomarkers in diseases such as cancer and inflammation.

National Category
Cancer and Oncology
Identifiers
urn:nbn:se:uu:diva-314142 (URN)10.1074/mcp.M116.064725 (DOI)000395670900013 ()28111361 (PubMedID)
Funder
Swedish Research CouncilEU, FP7, Seventh Framework Programme, 259796 294409Swedish Cancer Society, 2013/867Stockholm County Council, 20140405Swedish Heart Lung Foundation, 20140497The Karolinska Institutet's Research FoundationCancer and Allergy Foundation
Available from: 2017-01-28 Created: 2017-01-28 Last updated: 2020-12-10Bibliographically approved
Kamali-Moghaddam, M., Löf, L., Oliveir, F., Wik, L., Wu, D. & Yan, J. (2014). Advanced Molecular Tools for Proteomic Analyses of Microvesicles. Paper presented at 28th Annual Symposium of the Protein-Society, JUL 27-30, 2014, San Diego, CA. Protein Science, 23, 102-102
Open this publication in new window or tab >>Advanced Molecular Tools for Proteomic Analyses of Microvesicles
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2014 (English)In: Protein Science, ISSN 0961-8368, E-ISSN 1469-896X, Vol. 23, p. 102-102Article in journal, Meeting abstract (Other academic) Published
National Category
Other Medical Biotechnology
Identifiers
urn:nbn:se:uu:diva-231086 (URN)000339545700099 ()
Conference
28th Annual Symposium of the Protein-Society, JUL 27-30, 2014, San Diego, CA
Note

Special issue, DOI: 10.1002/pro.2504

Available from: 2014-09-04 Created: 2014-09-03 Last updated: 2017-12-05Bibliographically approved
Hammond, M., Wik, L., Deslys, J.-P., Comoy, E., Linné, T., Landegren, U. & Kamali-Moghaddam, M. (2014). Sensitive detection of aggregated prion protein via proximity ligation. Prion, 8(3), 261-265
Open this publication in new window or tab >>Sensitive detection of aggregated prion protein via proximity ligation
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2014 (English)In: Prion, ISSN 1933-6896, E-ISSN 1933-690X, Vol. 8, no 3, p. 261-265Article in journal (Refereed) Published
Abstract [en]

The DNA assisted solid-phase proximity ligation assay (SP-PLA) provides a unique opportunity to specifically detect prion protein (PrP) aggregates by investigating the collocation of three or more copies of the specific protein. We have developed a SP-PLA that can detect PrP aggregates in brain homogenates from infected hamsters even after a 10(7)-fold dilution. In contrast, brain homogenate from uninfected animals did not generate a detectable signal at hundred-fold higher concentration. Using either of the two monoclonal anti-PrP antibodies 3F4 and 6H4 we successfully detected low concentrations of aggregated PrP. The presented results provide a proof of concept that this method might be an interesting tool in the development of diagnostic approaches of prion diseases.

National Category
Basic Medicine
Identifiers
urn:nbn:se:uu:diva-239529 (URN)10.4161/pri.32231 (DOI)000348375500004 ()25482604 (PubMedID)
Available from: 2014-12-29 Created: 2014-12-29 Last updated: 2018-01-11Bibliographically approved
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