Publications by authors named "Eriksson O"

A distinctive feature of both type 1 and type 2 diabetes is the waning of insulin-secreting beta cells in the pancreas. New methods for direct and specific targeting of the beta cells could provide platforms for delivery of pharmaceutical reagents. Imaging techniques such as Positron Emission Tomography (PET) rely on the efficient and specific delivery of imaging reagents, and could greatly improve our understanding of diabetes etiology as well as providing biomarkers for viable beta-cell mass in tissue, in both pancreas and in islet grafts.

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Expansion of nucleotide repeat sequences is associated with more than 40 human neuromuscular disorders. The different pathogenic mechanisms associated with the expression of nucleotide repeats are not well understood. We use a Caenorhabditis elegans model that expresses expanded CUG repeats only in cells of the body wall muscle and recapitulate muscle dysfunction and impaired organismal motility to identify the basis by which expression of RNA repeats is toxic to muscle function.

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Circulating tumour DNA (ctDNA) is an emerging biomarker for monitoring cancers. The personalised disease monitoring in metastatic breast cancer (PDM-MBC) study is an ongoing study instigated to evaluate ctDNA as a biomarker to individualise imaging requirements in patients with MBC. Patients receiving first-line endocrine therapy (aromatase inhibitor + cyclin-dependent kinase 4/6 inhibitor) had plasma samples collected pre-treatment, weeks 2 and 4, and concurrently with imaging until progressive disease (PD).

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Background: Type 1 diabetes (T1D) is an autoimmune disease characterized by a progressive β-cell destruction. There are no clinically established methods for quantifying endocrine cells of the pancreas and current knowledge is almost exclusively based on autopsy material and functional measurements. Based on the expression of the γ-aminobutyric acid A receptors (GABARs) in pancreatic islets and the fact that GABAR agonists are being explored as treatment for T1D, we hypothesized that the positron emission tomography (PET) tracer [C]flumazenil ([C]FMZ) could serve as a marker of the endocrine mass of the pancreas.

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  • The study focuses on enhancing the labeling of Affibody molecules with Al[F]F for PET imaging, utilizing the Restrained Complexing Agent (RESCA) to facilitate the process under mild conditions.
  • The researchers optimized the labeling method, determining that the best conditions involved using fluorine-18, AlCl, and specific temperatures and times for effective reaction and purification.
  • The results indicated that the newly established method is efficient, reproducible, and maintains the biological functionality of the labeled Affibody molecules, with potential applications in peptide-based imaging agents.
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While Coronavirus disease 2019 (COVID-19) vaccines have proven to be both effective and generally safe, rare but severe adverse events following immunization (AEFIs) are described. Autoantibodies to platelet factor-4 are associated with catastrophic thrombotic AEFIs, but comprehensive investigations of other autoantibodies are lacking. We aimed to detect and describe autoantibodies targeting coagulation-related proteins in a population-wide cohort (SWEDEGENE) including AEFIs attributed to COVID-19 vaccines in Sweden.

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  • The study compares the effectiveness of Ga-NODAGA-exendin-4 PET/CT to traditional imaging methods for locating insulinomas, a type of tumor that causes low blood sugar.
  • Exendin PET/CT showed a significantly higher diagnostic accuracy (94.4%) compared to DOTA-SSA PET/CT (64.8%), CT/MRI (83.3%), and endoscopic ultrasound (82.8%).
  • The findings suggest that exendin PET/CT offers better image quality and consistency among observers, making it a valuable tool for the preoperative assessment of insulinomas.
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Canopy Homolog 2 (CNPY2) is an endoplasmic reticulum (ER) localized protein belonging to the CNPY gene family. We show here that CNPY2 is protective against ER stress induced by tunicamycin in neuronal cells. Overexpression of CNPY2 enhanced, while downregulation of CNPY2 using shRNA expression, reduced the viability of neuroblastoma cells after tunicamycin.

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Background: Alveolar macrophages activation to the pro-inflammatory phenotype M1 is pivotal in the pathophysiology of Ventilator-Induced Lung Injury (VILI). Increased lung strain is a known determinant of VILI, but a direct correspondence between regional lung strain and macrophagic activation remains unestablished. [Ga]Ga-DOTA-TATE is a Positron Emission Tomography (PET) radiopharmaceutical with a high affinity for somatostatin receptor subtype 2 (SSTR2), which is overexpressed by pro-inflammatory-activated macrophages.

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We aimed to use the digital platform maintained by the local health service providers in Southeast Sweden for integrated monitoring of disparities in vaccination and morbidity during the COVID-19 pandemic. The monitoring was performed in the adult population of two counties ( = 657,926) between 1 February 2020 and 15 February 2022. The disparities monitored were relocated (internationally displaced), substance users, and suffering from a psychotic disorder.

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Dendritic cells (DCs) are the main antigen presenting cells of the immune system and are essential for anti-tumor responses. DC-based immunotherapies are used in cancer treatment, but their functionality is not optimized and their clinical efficacy is currently limited. Approaches to improve DC functionality in anti-tumor immunity are therefore required.

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We report on the stabilization of ferromagnetic skyrmions in zero external magnetic fields, in exchange-biased systems composed of ferromagnetic-antiferromagnetic (FM-AFM) bilayers. By performing atomistic spin dynamics simulations, we study cases of compensated, uncompensated, and partly uncompensated FM-AFM interfaces, and investigate the impact of important parameters such as temperature, inter-plane exchange interaction, Dzyaloshinskii-Moriya interaction, and magnetic anisotropy on the skyrmions appearance and stability. The model with an uncompensated FM-AFM interface leads to the stabilization of individual skyrmions and skyrmion lattices in the FM layer, caused by the effective field from the AFM instead of an external magnetic field.

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AlSiC is a ternary wide-band-gap semiconductor with a high strength-to-weight ratio and excellent oxidation resistance. It consists of slabs of AlC separated by SiC layers with the space group of 6. The space group allows Si to occupy two different 2 Wykoff sites, with previous studies reporting that Si occupies only one of the two sites, giving it an ordered structure.

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: Data on the incidence and comorbidity of Lichen sclerosus (LS), based on validated nationwide population-based registries, remains scarce. : To explore the incidence and association of comorbidities with LS in Sweden, emphasizing its potential links to malignancies and autoimmune disorders. : A population-based retrospective open cohort study was conducted using the National Patient Register to identify all individuals diagnosed with LS (ICD-10 code L90.

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  • Transition metal trichalcogenides (TMTCs) can modify their electronic properties based on changes in chemical composition, temperature, and pressure, but their behavior under compression is not fully understood.
  • In this study, we investigate the high-pressure electronic properties of TiS, a quasi-one-dimensional semiconductor, using both experimental and theoretical methods, revealing multiple phase transitions.
  • Our research shows that TiS transitions from an insulating state at normal pressure to an incipient superconducting state above 70 GPa, highlighting superconductivity at around 2.9 K as a key feature and broadening the implications for the study of TMTCs.
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  • The study focuses on a new method to non-invasively assess fibrogenic activity, which could enhance the treatment of fibrotic diseases and aid in developing anti-fibrotic medications.
  • Researchers explored a specific Affibody molecule (Z09591) labeled using the RESCA method to create a tracer for detecting fibrogenic cells without invasive procedures.
  • In experiments with tumor-bearing mice, the resulting radiotracer showed high selectivity for a key receptor associated with fibrosis, demonstrating its potential for accurate monitoring of liver fibrogenesis and implications for drug development.
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Despite decades of research, the role of the lattice and its coupling to the magnetisation during ultrafast demagnetisation processes is still not fully understood. Here we report on studies of both explicit and implicit lattice effects on laser induced ultrafast demagnetisation of bcc Fe and fcc Co. We do this using atomistic spin- and lattice dynamics simulations following a heat-conserving three-temperature model.

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Additive nanotechnology enable curvilinear and three-dimensional (3D) magnetic architectures with tunable topology and functionalities surpassing their planar counterparts. Here, we experimentally reveal that 3D soft magnetic wireframe structures resemble compact manifolds and accommodate magnetic textures of high order vorticity determined by the Euler characteristic, χ. We demonstrate that self-standing magnetic tetrapods (homeomorphic to a sphere; χ = + 2) support six surface topological solitons, namely four vortices and two antivortices, with a total vorticity of + 2 equal to its Euler characteristic.

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Background: The beneficial role of glucose-dependent insulinotropic polypeptide receptor (GIPR) in weight control and maintaining glucose levels has led to the development of several multi-agonistic peptide drug candidates, targeting GIPR and glucagon like peptide 1 receptor (GLP1R) and/or the glucagon receptor (GCGR). The in vivo quantification of target occupancy by these drugs would accelerate the development of new drug candidates. The aim of this study was to evaluate a novel peptide (GIP1234), based on previously reported ligand DOTA-GIP-C803, modified with a fatty acid moiety to prolong its blood circulation.

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Heavy-fermion metals are prototype systems for observing emergent quantum phases driven by electronic interactions. A long-standing aspiration is the dimensional reduction of these materials to exert control over their quantum phases, which remains a significant challenge because traditional intermetallic heavy-fermion compounds have three-dimensional atomic and electronic structures. Here we report comprehensive thermodynamic and spectroscopic evidence of an antiferromagnetically ordered heavy-fermion ground state in CeSiI, an intermetallic comprising two-dimensional (2D) metallic sheets held together by weak interlayer van der Waals (vdW) interactions.

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  • The study investigates the role of ficolin-3 in Systemic Lupus Erythematosus (SLE), highlighting its significance in the lectin pathway of the complement system, which has been less explored compared to the classical pathway.
  • Analysis of serum samples from SLE patients and genetic variants showed that higher ficolin-3 activity correlates with specific SLE symptoms, including hematological issues and the presence of autoantibodies.
  • The findings suggest that ficolin-3 is an important factor in SLE pathogenesis, potentially offering insights into how the lectin pathway contributes to disease manifestations and autoantibody production.
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Background: Beta-cell replacement methods such as transplantation of isolated donor islets have been proposed as a curative treatment of type 1 diabetes, but widespread application is challenging due to shortages of donor tissue and the need for continuous immunosuppressive treatments. Stem-cell-derived islets have been suggested as an alternative source of beta cells, but face transplantation protocols optimization difficulties, mainly due to a lack of available methods and markers to directly monitor grafts survival, as well as their localization and function. Molecular imaging techniques and particularly positron emission tomography has been suggested as a tool for monitoring the fate of islets after clinical transplantation.

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  • Rheumatoid arthritis (RA) is a significant inflammatory joint disease, and identifying it early is crucial for management, with CD69 serving as an early marker of immune cell activation found in affected tissues.
  • A study utilized a CD69-targeting PET agent, [Ga]Ga-DOTA-Z, to detect RA in a mouse model by monitoring disease progression through imaging and clinical symptoms like body weight and paw swelling.
  • Findings revealed that [Ga]Ga-DOTA-Z uptake increased before clinical symptoms appeared, correlating with disease severity and confirming CD69 presence in tissues, suggesting it may help in early RA diagnosis.
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Fibrosis accompanies various pathologies, and there is thus an unmet medical need for non-invasive, sensitive, and quantitative methods for the assessment of fibrotic processes. Currently, needle biopsy with subsequent histological analysis is routinely used for the diagnosis along with morphological imaging techniques, such as computed tomography (CT), magnetic resonance imaging (MRI), and ultrasound (US). However, none of these imaging techniques are sufficiently sensitive and accurate to detect minor changes in fibrosis.

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