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Landegren, U. (2026). A ligase-based toolbox for research and diagnostics in molecular medicine. Nucleic Acids Research, 54(10), Article ID gkag551.
Öppna denna publikation i ny flik eller fönster >>A ligase-based toolbox for research and diagnostics in molecular medicine
2026 (Engelska)Ingår i: Nucleic Acids Research, ISSN 0305-1048, E-ISSN 1362-4962, Vol. 54, nr 10, artikel-id gkag551Artikel i tidskrift (Refereegranskat) Published
Abstract [en]

New approaches for molecular analysis continuously open new vistas in molecular medicine. Our lab has built a series of molecular detection techniques based on enzymatic ligation of synthetic oligonucleotides as versatile tools to gain new molecular insights. These fundamental techniques continue to yield new means for specific, high-throughput analyses of nucleic acids and proteins in contexts of relevance for molecular medicine. The combined potential for vast multiplexing and low sample consumption renders the assays described herein attractive as a basis for AI-assisted model building in medicine. Accordingly, this overview is aimed to present a ligase-based molecular toolbox to choose from in addressing present and upcoming analytical needs.

Ort, förlag, år, upplaga, sidor
Oxford University Press, 2026
Nationell ämneskategori
Cell- och molekylärbiologi
Identifikatorer
urn:nbn:se:uu:diva-590642 (URN)10.1093/nar/gkag551 (DOI)001781188000001 ()42227333 (PubMedID)2-s2.0-105040843202 (Scopus ID)
Forskningsfinansiär
EU, Europeiska forskningsrådetCancerfondenVetenskapsrådet
Tillgänglig från: 2026-06-17 Skapad: 2026-06-17 Senast uppdaterad: 2026-06-17Bibliografiskt granskad
Ikebuchi, R., Lu, X., Bouri, D., Svintytska, V., Davies, H., Olszewski, P. K., . . . Landegren, U. (2025). A denaturation-free protocol for in situ visualization of short nuclear DNA sequences using padlock probes with rolling-circle amplification. PLOS ONE, 20(10), Article ID e0335619.
Öppna denna publikation i ny flik eller fönster >>A denaturation-free protocol for in situ visualization of short nuclear DNA sequences using padlock probes with rolling-circle amplification
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2025 (Engelska)Ingår i: PLOS ONE, E-ISSN 1932-6203, Vol. 20, nr 10, artikel-id e0335619Artikel i tidskrift (Refereegranskat) Published
Abstract [en]

We report an approach for in situ detection of genomic DNA sequences, where transiently opening DNA duplexes are captured by circularizing DNA strands - padlock probes - that lock in place in a sequence-specific manner through the action of a DNA ligase. Reacted probes, wound around their target strands, are then replicated by rolling-circle amplification for localized fluorescence detection. The technique serves to shorten assay time and enables detection of shorter specific DNA sequences compared to standard fluorescence in situ hybridization, FISH. Genomic sequences with thousands of locally repeated copies were detected in human leukocytes with greater than 99% efficiency and less than 0.15% false positives in just a few hours. Using a longer variant of the protocol targets of as little as 36 or 112 nt were visualized, albeit at lower efficiency and with a higher false positive rate. The technique of targeting sequences in duplex DNA using padlock probes is promising for both research and clinical diagnostics.

Ort, förlag, år, upplaga, sidor
Public Library of Science (PLoS), 2025
Nationell ämneskategori
Medicinsk genetik och genomik
Identifikatorer
urn:nbn:se:uu:diva-571233 (URN)10.1371/journal.pone.0335619 (DOI)001604490300021 ()41150644 (PubMedID)2-s2.0-105020038055 (Scopus ID)
Forskningsfinansiär
Vetenskapsrådet, 2013-06023Vetenskapsrådet, 2014-02969Vetenskapsrådet, 2018-05895Vetenskapsrådet, 2018-06156Vetenskapsrådet, 2018-02943Vetenskapsrådet, 2022-00570Vetenskapsrådet, 20-0889-PjFStiftelsen för strategisk forskning (SSF), SB16-0046Vinnova, 2019-01464Cancerfonden, 19 0384Cancerfonden, 2023-01940
Tillgänglig från: 2025-11-17 Skapad: 2025-11-17 Senast uppdaterad: 2026-06-24Bibliografiskt granskad
Abraham, D. J., Black, C. M., Denton, C. P., Distler, J. H. W., Domsic, R., Feghali-Bostwick, C., . . . Krieg, T. (2025). An international perspective on the future of systemic sclerosis research. Nature Reviews Rheumatology, 21(3), 174-187
Öppna denna publikation i ny flik eller fönster >>An international perspective on the future of systemic sclerosis research
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2025 (Engelska)Ingår i: Nature Reviews Rheumatology, ISSN 1759-4790, E-ISSN 1759-4804, Vol. 21, nr 3, s. 174-187Artikel, forskningsöversikt (Refereegranskat) Published
Abstract [en]

Systemic sclerosis (SSc) remains a challenging and enigmatic systemic autoimmune disease, owing to its complex pathogenesis, clinical and molecular heterogeneity, and the lack of effective disease-modifying treatments. Despite a century of research in SSc, the interconnections among microvascular dysfunction, autoimmune phenomena and tissue fibrosis in SSc remain unclear. The absence of validated biomarkers and reliable animal models complicates diagnosis and treatment, contributing to high morbidity and mortality. Advances in the past 5 years, such as single-cell RNA sequencing, next-generation sequencing, spatial biology, transcriptomics, genomics, proteomics, metabolomics, microbiome profiling and artificial intelligence, offer new avenues for identifying the early pathogenetic events that, once treated, could change the clinical history of SSc. Collaborative global efforts to integrate these approaches are crucial to developing a comprehensive, mechanistic understanding and enabling personalized therapies. Challenges include disease classification, clinical heterogeneity and the establishment of robust biomarkers for disease activity and progression. Innovative clinical trial designs and patient-centred approaches are essential for developing effective treatments. Emerging therapies, including cell-based and fibroblast-targeting treatments, show promise. Global cooperation, standardized protocols and interdisciplinary research are vital for advancing SSc research and improving patient outcomes. The integration of advanced research techniques holds the potential for important breakthroughs in the diagnosis, treatment and care of individuals with SSc.

Ort, förlag, år, upplaga, sidor
Springer Nature, 2025
Nationell ämneskategori
Reumatologi
Identifikatorer
urn:nbn:se:uu:diva-558414 (URN)10.1038/s41584-024-01217-2 (DOI)001420928800001 ()39953141 (PubMedID)2-s2.0-85219557748 (Scopus ID)
Anmärkning

Correction in: Nature Reviews Rheumatology, vol. 21, page 249, DOI: 10.1038/s41584-025-01231-y

Tillgänglig från: 2025-06-09 Skapad: 2025-06-09 Senast uppdaterad: 2025-06-09Bibliografiskt granskad
Lee, J.-H., Song, J., Hong, S., Kim, Y., Song, M., Cho, B., . . . Lee, L. P. (2025). Nanoplasmonic Rapid Antimicrobial-Resistance Point-of-Care Identification Device: RAPIDx. Advanced Healthcare Materials, 14(1), Article ID 2402044.
Öppna denna publikation i ny flik eller fönster >>Nanoplasmonic Rapid Antimicrobial-Resistance Point-of-Care Identification Device: RAPIDx
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2025 (Engelska)Ingår i: Advanced Healthcare Materials, ISSN 2192-2640, E-ISSN 2192-2659, Vol. 14, nr 1, artikel-id 2402044Artikel i tidskrift (Refereegranskat) Published
Abstract [en]

The emergence of antibiotic resistance has become a global health crisis, and everyone must arm themselves with wisdom to effectively combat the "silent tsunami" of infections that are no longer treatable with antibiotics. However, the overuse or inappropriate use of unnecessary antibiotics is still routine for administering them due to the unavailability of rapid, precise, and point-of-care assays. Here, a rapid antimicrobial-resistance point-of-care identification device (RAPIDx) is reported for the accurate and simultaneous identification of bacterial species (genotype) and target enzyme activity (phenotype). First, a contamination-free active target enzyme is extracted via the photothermal lysis of preconcentrated bacteria cells on a nanoplasmonic functional layer on-chip. Second, the rapid, precise identification of pathogens is achieved by the photonic rolling circle amplification of DNA on a chip. Third, the simultaneous identification of bacterial species (genotype) and target enzyme activity (phenotype) is demonstrated within a sample-to-answer 45 min operation via the RAPIDx. It is believed that the RAPIDx will be a valuable method for solving the bottleneck of employing on-chip nanotechnology for antibiotic-resistant bioassay and other infectious diseases.

Ort, förlag, år, upplaga, sidor
John Wiley & Sons, 2025
Nyckelord
antimicrobial resistance, diagnostics, plasmonics, rolling circle amplification (RCA), urinary tract infections (UTIs)
Nationell ämneskategori
Infektionsmedicin Mikrobiologi inom det medicinska området
Identifikatorer
urn:nbn:se:uu:diva-557202 (URN)10.1002/adhm.202402044 (DOI)001299683000001 ()39205550 (PubMedID)
Tillgänglig från: 2025-05-27 Skapad: 2025-05-27 Senast uppdaterad: 2025-05-27Bibliografiskt granskad
Wang, M., Kamali-Moghaddam, M., Löf, L., Fernandez, M. C., Codina, R. D., Sterky, F. H., . . . Zhao, H. (2024). Monitoring SARS-CoV-2 IgA, IgM and IgG antibodies in dried blood and saliva samples using antibody proximity extension assays (AbPEA). Scientific Reports, 14(1), Article ID 21655.
Öppna denna publikation i ny flik eller fönster >>Monitoring SARS-CoV-2 IgA, IgM and IgG antibodies in dried blood and saliva samples using antibody proximity extension assays (AbPEA)
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2024 (Engelska)Ingår i: Scientific Reports, E-ISSN 2045-2322, Vol. 14, nr 1, artikel-id 21655Artikel i tidskrift (Refereegranskat) Published
Abstract [en]

Using a modified proximity extension assay, total and immunoglobulin (Ig) class-specific anti-SARS-CoV-2 antibodies were sensitively and conveniently detected directly from & oslash;1.2 mm discs cut from dried blood and saliva spots (DBS and DSS) without the need for elution. For total Ig detection, antigen probes were prepared by conjugating recombinant spike protein subunit 1 (S1-RBD) to a pair of oligonucleotides. To detect isotype-specific antibody reactivity, one antigen probe was replaced with oligonucleotide-conjugated antibodies specific for antibody isotypes. Binding of pairs of oligonucleotide-conjugated probes to antibodies in patient samples brings oligonucleotides in proximity. An added DNA polymerase uses a transient hybridization between the oligonucleotides to prime synthesis of a DNA strand, which serves as a DNA amplicon that is quantified by real-time PCR. The S1-RBD-specific IgG, IgM, and IgA antibodies in DBS samples collected over the course of a first and second vaccination exhibited kinetics consistent with previous reports. Both DBS and DSS collected from 42 individuals in the autumn of 2023 showed significant level of total S1-RBD antibodies with a correlation of R = 0.70. However, levels in DSS were generally 10 to 100-fold lower than in DBS. Anti-S1-RBD IgG and IgA in DSS demonstrated a correlation of R = 0.6.

Ort, förlag, år, upplaga, sidor
Springer Nature, 2024
Nyckelord
Immunoassays, Antibody proximity extension assay, Antibody isotypes, IgG, IgM, IgA, SARS-CoV-2 antibody, Vaccination, Dried blood spot (DBS), Dried saliva spot (DSS), Real-time PCR
Nationell ämneskategori
Immunologi inom det medicinska området Infektionsmedicin Klinisk laboratoriemedicin
Identifikatorer
urn:nbn:se:uu:diva-540655 (URN)10.1038/s41598-024-72453-5 (DOI)001317187900044 ()39289450 (PubMedID)
Forskningsfinansiär
Knut och Alice Wallenbergs Stiftelse, 2020.0182Knut och Alice Wallenbergs Stiftelse, SB16-0046Stiftelsen för strategisk forskning (SSF), SB16-0046Vetenskapsrådet, 2020-02258Science for Life Laboratory, SciLifeLab
Tillgänglig från: 2024-10-22 Skapad: 2024-10-22 Senast uppdaterad: 2024-10-22Bibliografiskt granskad
Sandberg, E., Nunes, L., Edqvist, P.-H., Mathot, L., Chen, L., Edgren, T., . . . Sjöblom, T. (2024). Sensitive and Specific Analyses of Colorectal Cancer Recurrence through Multiplex superRCA Mutation Detection in Blood Plasma. Cancers, 16(3), Article ID 549.
Öppna denna publikation i ny flik eller fönster >>Sensitive and Specific Analyses of Colorectal Cancer Recurrence through Multiplex superRCA Mutation Detection in Blood Plasma
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2024 (Engelska)Ingår i: Cancers, ISSN 2072-6694, Vol. 16, nr 3, artikel-id 549Artikel i tidskrift (Refereegranskat) Published
Abstract [en]

Mutation analysis of circulating tumor DNA (ctDNA) has applications in monitoring of colorectal cancer (CRC) patients for recurrence. Considering the low tumor fraction of ctDNA in cell-free DNA (cfDNA) isolated from blood plasma, the sensitivity of the detection method is important. Here, plasma DNA collected at diagnosis and follow-up from 25 CRC patients was analyzed using a multiplex superRCA mutation detection assay. The assay was also performed on genomic DNA (gDNA) from tumor and normal tissue from 20 of these patients. The lower limit of detection for most sequence variants was in the range of 10−5, while when analyzing cfDNA from plasma with a typical input of 33 ng, the practical detection limit was ~10−4 or 0.01% mutant allele frequency (MAF). In 17 of 19 patients with identified hotspot mutations in tumor gDNA, at least one hotspot mutation could be detected in plasma DNA at the time of diagnosis. The MAF increased at subsequent time points in four of the patients who experienced a clinical relapse. Multiplex superRCA analysis of the remaining six patients did not reveal any hotspot mutations. In conclusion, multiplex superRCA assays proved suitable for monitoring CRC patients by analyzing hotspot mutations in cfDNA, and dynamic changes in MAF were observed in patients with clinical relapse.

Ort, förlag, år, upplaga, sidor
MDPI, 2024
Nyckelord
colorectal cancer, recurrence, cfDNA, ctDNA
Nationell ämneskategori
Cancer och onkologi
Identifikatorer
urn:nbn:se:uu:diva-524607 (URN)10.3390/cancers16030549 (DOI)001161089400001 ()38339300 (PubMedID)
Forskningsfinansiär
Europeiska kommissionen, 294409Europeiska kommissionen, 115234Vetenskapsrådet, 2013-06023Vetenskapsrådet, 2014-02969Vetenskapsrådet, 2018-05895Vetenskapsrådet, 2022-00570Stiftelsen för strategisk forskning (SSF), SB16-0046Cancerfonden, 19 0384Cancerfonden, CAN 2018/772Vinnova, 2019-01464
Tillgänglig från: 2024-03-12 Skapad: 2024-03-12 Senast uppdaterad: 2024-03-12Bibliografiskt granskad
Robelius, A., Chen, L., Amini, R.-M., Cavelier, L. & Landegren, U. (2023). Managing leukemia patients via liquid biopsy and super rolling circle amplification (superRCA). Journal of Internal Medicine, 294(2), 228-237
Öppna denna publikation i ny flik eller fönster >>Managing leukemia patients via liquid biopsy and super rolling circle amplification (superRCA)
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2023 (Engelska)Ingår i: Journal of Internal Medicine, ISSN 0954-6820, E-ISSN 1365-2796, Vol. 294, nr 2, s. 228-237Artikel i tidskrift (Refereegranskat) Published
Abstract [en]

The rapidly increasing availability of sequence information for tumor patients, combined with expanding treatment options, motivates efforts to monitor the course of disease for individual patients by analyzing patient-specific mutations in liquid biopsies, as highly specific markers of the malignancy. We discuss the suitability of established molecular methods to monitor patients with malignancies, in particular leukemias, comparing these to the recently developed super rolling circle amplification technique for highly sensitive, parallel measurements of mutant sequences using readily available instruments. The very high sensitivity for tumor-specific mutations-in combination with low cost and ready access at clinics-promises to allow routine monitoring of increasing numbers of tumor patients, in order to initiate improved treatments at the earliest timepoint possible, when necessary. A method with high-enough accuracy to enable monitoring in peripheral blood rather than bone marrow samples would present a great practical advantage, not least from the patient perspective. We describe scenarios in which sufficiently sensitive, inexpensive methods for mutational analysis can provide valuable guidance for the clinician in choosing among therapeutic options and adjusting ongoing treatment and help to promptly identify recurrences of disease in treated patients.

Ort, förlag, år, upplaga, sidor
John Wiley & Sons, 2023
Nyckelord
liquid biopsy, measurable residual disease, superRCA
Nationell ämneskategori
Cancer och onkologi
Identifikatorer
urn:nbn:se:uu:diva-510979 (URN)10.1111/joim.13682 (DOI)001010055500001 ()37287112 (PubMedID)
Forskningsfinansiär
VetenskapsrådetStiftelsen för strategisk forskning (SSF)CancerfondenVinnova
Tillgänglig från: 2023-09-06 Skapad: 2023-09-06 Senast uppdaterad: 2023-09-06Bibliografiskt granskad
Zhao, H., Wang, M., Muthelo, P., Löf, L., Sterky, F., Gallini, R., . . . Landegren, U. (2022). Detection of SARS-CoV-2 antibodies in serum and dried blood spot samples of vaccinated individuals using a sensitive homogeneous proximity extension assay. New Biotechnology, 72, 139-148
Öppna denna publikation i ny flik eller fönster >>Detection of SARS-CoV-2 antibodies in serum and dried blood spot samples of vaccinated individuals using a sensitive homogeneous proximity extension assay
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2022 (Engelska)Ingår i: New Biotechnology, ISSN 1871-6784, E-ISSN 1876-4347, Vol. 72, s. 139-148Artikel i tidskrift (Refereegranskat) Published
Abstract [en]

A homogeneous PCR-based assay for sensitive and specific detection of antibodies in serum or dried blood spots (DBS) is presented and the method is used to monitor individuals infected with or vaccinated against SARS-CoV-2. Detection probes were prepared by conjugating the recombinant spike protein subunit 1 (S1), containing the receptor binding domain (RBD) of SARS-CoV-2, to each of a pair of specific oligonucleotides. The same was done for the nucleocapsid protein (NP). Upon incubation with serum or DBS samples, the bi- or multivalency of the antibodies (IgG, IgA or IgM) brings pairs of viral proteins with their conjugated oligonucleotides in proximity, allowing the antibodies to be detected by a modified proximity extension assay (PEA). Anti-S1 and anti-NP antibodies could be detected simultaneously from one incubation reaction. This Antibody PEA (AbPEA) test uses only 1 µl of neat or up to 100,000-fold diluted serum or one ø1.2 mm disc cut from a DBS. All 100 investigated sera and 21 DBS collected prior to the COVID-19 outbreak were negative, demonstrating a 100% specificity. The area under the curve, as evaluated by Receiver Operating Characteristic (ROC) analysis reached 0.998 (95%CI: 0.993–1) for samples taken from 11 days after symptoms onset. The kinetics of antibody responses were monitored after a first and second vaccination using serially collected DBS from 14 individuals. AbPEA offers highly specific and sensitive solution-phase antibody detection without requirement for secondary antibodies, no elution step when using DBS sample in a simple procedure that lends itself to multiplex survey of antibody responses.

Ort, förlag, år, upplaga, sidor
Elsevier, 2022
Nyckelord
Homogenous serological assay, PCR-based antibody detection, SARS-CoV-2 antibody, Proximity extension assay, Finger -prick dried blood spot, Multiplex immunoassay
Nationell ämneskategori
Biokemi Molekylärbiologi Infektionsmedicin Immunologi inom det medicinska området
Identifikatorer
urn:nbn:se:uu:diva-492677 (URN)10.1016/j.nbt.2022.11.004 (DOI)000896515300004 ()36423830 (PubMedID)
Forskningsfinansiär
Science for Life Laboratory, SciLifeLabKnut och Alice Wallenbergs Stiftelse, 2020.0182Stiftelsen för strategisk forskning (SSF), SB16-0046Vetenskapsrådet, 2020-02258
Tillgänglig från: 2023-01-10 Skapad: 2023-01-10 Senast uppdaterad: 2025-02-20Bibliografiskt granskad
Landegren, U. (2022). Molecular tools to monitor health and disease - and lucky coincidences. Upsala Journal of Medical Sciences, 127(1), Article ID e8987.
Öppna denna publikation i ny flik eller fönster >>Molecular tools to monitor health and disease - and lucky coincidences
2022 (Engelska)Ingår i: Upsala Journal of Medical Sciences, ISSN 0300-9734, E-ISSN 2000-1967, Vol. 127, nr 1, artikel-id e8987Artikel, forskningsöversikt (Refereegranskat) Published
Abstract [en]

Improved methods for molecular analyses are obviously central for medical research. I will describe herein our work developing tools to reveal molecular states in health and disease. I will recount how I got started in this endeavor, and how our early work characterizing genetic variation led onto high-throughput protein measurements and to techniques for imaging the distribution of proteins and their activity states in tissues. I will also describe a more recent technique to measure even exceedingly rare genetic variants in order to monitor recurrence of disease for tumor patients.

Ort, förlag, år, upplaga, sidor
Upsala Medical Society, 2022
Nyckelord
Padlock probes, proximity ligation, proximity extension, in situ PLA, superRCA, molecular genetics, career, synthetic oligonucleotides, genome project, patent, commercialization
Nationell ämneskategori
Medicinsk genetik och genomik
Identifikatorer
urn:nbn:se:uu:diva-488944 (URN)10.48101/ujms.v127.8987 (DOI)000879745700001 ()36337275 (PubMedID)
Forskningsfinansiär
VetenskapsrådetEU, Europeiska forskningsrådetKnut och Alice Wallenbergs StiftelseKjell och Märta Beijers StiftelseTorsten Söderbergs stiftelse
Tillgänglig från: 2022-11-24 Skapad: 2022-11-24 Senast uppdaterad: 2025-02-10Bibliografiskt granskad
Al-Amin, R. A., Johansson, L., Abdurakhmanov, E., Landegren, N., Löf, L., Arngården, L., . . . Landegren, U. (2022). Monitoring drug–target interactions through target engagement-mediated amplification on arrays and in situ. Nucleic Acids Research, 50(22), e129-e129
Öppna denna publikation i ny flik eller fönster >>Monitoring drug–target interactions through target engagement-mediated amplification on arrays and in situ
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2022 (Engelska)Ingår i: Nucleic Acids Research, ISSN 0305-1048, E-ISSN 1362-4962, Vol. 50, nr 22, s. e129-e129Artikel i tidskrift (Refereegranskat) Published
Abstract [en]

Drugs are designed to bind their target proteins in physiologically relevant tissues and organs to modulate biological functions and elicit desirable clinical outcomes. Information about target engagement at cellular and subcellular resolution is therefore critical for guiding compound optimization in drug discovery, and for probing resistance mechanisms to targeted therapies in clinical samples. We describe a target engagement-mediated amplification (TEMA) technology, where oligonucleotide-conjugated drugs are used to visualize and measure target engagement in situ, amplified via rolling-circle replication of circularized oligonucleotide probes. We illustrate the TEMA technique using dasatinib and gefitinib, two kinase inhibitors with distinct selectivity profiles. In vitro binding by the dasatinib probe to arrays of displayed proteins accurately reproduced known selectivity profiles, while their differential binding to fixed adherent cells agreed with expectations from expression profiles of the cells. We also introduce a proximity ligation variant of TEMA to selectively investigate binding to specific target proteins of interest. This form of the assay serves to improve resolution of binding to on- and off-target proteins. In conclusion, TEMA has the potential to aid in drug development and clinical routine by conferring valuable insights in drug–target interactions at spatial resolution in protein arrays, cells and in tissues.

Ort, förlag, år, upplaga, sidor
Oxford University Press, 2022
Nationell ämneskategori
Medicinsk bioteknologi (med inriktning mot cellbiologi (inklusive stamcellsbiologi), molekylärbiologi, mikrobiologi, biokemi eller biofarmaci)
Forskningsämne
Biologi med inriktning mot molekylär bioteknik
Identifikatorer
urn:nbn:se:uu:diva-461438 (URN)10.1093/nar/gkac842 (DOI)000863003400001 ()36189884 (PubMedID)
Forskningsfinansiär
Vetenskapsrådet, 2012-5852Vetenskapsrådet, 2020-02258Torsten Söderbergs stiftelse, M130/16EU, FP7, Sjunde ramprogrammet, 294409Swedish Collegium for Advanced Study (SCAS)
Tillgänglig från: 2021-12-14 Skapad: 2021-12-14 Senast uppdaterad: 2024-10-23Bibliografiskt granskad
Projekt
En workshop om mikro- och nanoteknologier inom medicin [2008-02163_Vinnova]; Uppsala universitetInbjudan av talare till konferensen Molecular genetics:from basics to clinics, Rudbecklaboratoriet, Uppsala universitet, 19 november 2009. [2009-06630_VR]; Uppsala universitetHögkänsliga analys för prostasomer/exosomer som blodplasma biomarkörer vid cancer och andra sjukdomar [2010-04029_VR]; Uppsala universitetProximity ligation-based selection of combinatorial diagnostic and therapeutic reagents [2012-05852_VR]; Uppsala universitetEn ny generation molekylära verktyg för snabb diagnostik av nukleinsyror och proteiner [2013-06023_VR]; Uppsala universitet; Publikationer
Sandberg, E., Nunes, L., Edqvist, P.-H., Mathot, L., Chen, L., Edgren, T., . . . Sjöblom, T. (2024). Sensitive and Specific Analyses of Colorectal Cancer Recurrence through Multiplex superRCA Mutation Detection in Blood Plasma. Cancers, 16(3), Article ID 549.
Minimally invasive molecular tumor diagnostics [2014-02969_VR]; Uppsala universitet; Publikationer
Sandberg, E., Nunes, L., Edqvist, P.-H., Mathot, L., Chen, L., Edgren, T., . . . Sjöblom, T. (2024). Sensitive and Specific Analyses of Colorectal Cancer Recurrence through Multiplex superRCA Mutation Detection in Blood Plasma. Cancers, 16(3), Article ID 549.
Amplifierad detektion av läkemedelsbindning [2016-06260_VR]; Uppsala universitetUnFold prober för protein och RNA analys [2017-00708_VR]; Uppsala universitetRCA Rapportörer för digital detektion i forskning och klinik [2017-04152_VR]; Uppsala universitetsRCA ‚Äì Ultrakänslig detektion av sällsynta mutationer för vätskebaserad biopsi [2018-05895_VR]; Uppsala universitet; Publikationer
Sandberg, E., Nunes, L., Edqvist, P.-H., Mathot, L., Chen, L., Edgren, T., . . . Sjöblom, T. (2024). Sensitive and Specific Analyses of Colorectal Cancer Recurrence through Multiplex superRCA Mutation Detection in Blood Plasma. Cancers, 16(3), Article ID 549.
Påvisande av enstaka patologiska celler [2018-02943_VR]; Uppsala universitetUltrakänslig och kostnadseffektiv diagnostik för AML [2019-01464_Vinnova]; Uppsala universitet; Publikationer
Sandberg, E., Nunes, L., Edqvist, P.-H., Mathot, L., Chen, L., Edgren, T., . . . Sjöblom, T. (2024). Sensitive and Specific Analyses of Colorectal Cancer Recurrence through Multiplex superRCA Mutation Detection in Blood Plasma. Cancers, 16(3), Article ID 549.
Snabb, parallell screening för bakterier och deras antibiotikakänslighet med hjälp av superRCA [2022-05281_VR]; Uppsala universitetFunctional proteomics for precision medicine [2022-00570_VR]; Uppsala universitet; Publikationer
Sandberg, E., Nunes, L., Edqvist, P.-H., Mathot, L., Chen, L., Edgren, T., . . . Sjöblom, T. (2024). Sensitive and Specific Analyses of Colorectal Cancer Recurrence through Multiplex superRCA Mutation Detection in Blood Plasma. Cancers, 16(3), Article ID 549.
Individanpassad infektionsmedicin – Behov och teknologiska innovationer [2025-07489_VR]; Uppsala universitet
Organisationer
Identifikatorer
ORCID-id: ORCID iD iconorcid.org/0000-0002-7820-1000

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