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1.
Infection ; 52(3): 1087-1097, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38326527

ABSTRACT

BACKGROUND: Innate lymphoid cells (ILCs) are key organizers of tissue immune responses and regulate tissue development, repair, and pathology. Persistent clinical sequelae beyond 12 weeks following acute COVID-19 disease, named post-COVID syndrome (PCS), are increasingly recognized in convalescent individuals. ILCs have been associated with the severity of COVID-19 symptoms but their role in the development of PCS remains poorly defined. METHODS AND RESULTS: Here, we used multiparametric immune phenotyping, finding expanded circulating ILC precursors (ILCPs) and concurrent decreased group 2 innate lymphoid cells (ILC2s) in PCS patients compared to well-matched convalescent control groups at > 3 months after infection or healthy controls. Patients with PCS showed elevated expression of chemokines and cytokines associated with trafficking of immune cells (CCL19/MIP-3b, FLT3-ligand), endothelial inflammation and repair (CXCL1, EGF, RANTES, IL-1RA, PDGF-AA). CONCLUSION: These results define immunological parameters associated with PCS and might help find biomarkers and disease-relevant therapeutic strategies.


Subject(s)
COVID-19 , Convalescence , Cytokines , Lymphocytes , Post-Acute COVID-19 Syndrome , Humans , COVID-19/immunology , COVID-19/diagnosis , Male , Female , Middle Aged , Adult , Lymphocytes/immunology , Cytokines/immunology , SARS-CoV-2/immunology , Immunity, Innate , Aged , Chemokines/immunology
2.
PLoS Pathog ; 17(3): e1009471, 2021 03.
Article in English | MEDLINE | ID: mdl-33780515

ABSTRACT

Platelet-derived growth factor receptor alpha (PDGFRα) serves as an entry receptor for the human cytomegalovirus (HCMV), and soluble PDGFRα-Fc can neutralize HCMV at a half-maximal effective concentration (EC50) of about 10 ng/ml. While this indicates a potential for usage as an HCMV entry inhibitor PDGFRα-Fc can also bind the physiological ligands of PDGFRα (PDGFs), which likely interferes with the respective signaling pathways and represents a potential source of side effects. Therefore, we tested the hypothesis that interference with PDGF signaling can be prevented by mutations in PDGFRα-Fc or combinations thereof, without losing the inhibitory potential for HCMV. To this aim, a targeted mutagenesis approach was chosen. The mutations were quantitatively tested in biological assays for interference with PDGF-dependent signaling as well as inhibition of HCMV infection and biochemically for reduced affinity to PDGF-BB, facilitating quantification of PDGFRα-Fc selectivity for HCMV inhibition. Mutation of Ile 139 to Glu and Tyr 206 to Ser strongly reduced the affinity for PDGF-BB and hence interference with PDGF-dependent signaling. Inhibition of HCMV infection was less affected, thus increasing the selectivity by factor 4 and 8, respectively. Surprisingly, the combination of these mutations had an additive effect on binding of PDGF-BB but not on inhibition of HCMV, resulting in a synergistic 260fold increase of selectivity. In addition, a recently reported mutation, Val 242 to Lys, was included in the analysis. PDGFRα-Fc with this mutation was fully effective at blocking HCMV entry and had a drastically reduced affinity for PDGF-BB. Combining Val 242 to Lys with Ile 139 to Glu and/or Tyr 206 to Ser further reduced PDGF ligand binding beyond detection. In conclusion, this targeted mutagenesis approach identified combinations of mutations in PDGFRα-Fc that prevent interference with PDGF-BB but maintain inhibition of HCMV, which qualifies such mutants as candidates for the development of HCMV entry inhibitors.


Subject(s)
Cytomegalovirus Infections , Immunoglobulin Fc Fragments , Receptor, Platelet-Derived Growth Factor alpha , Becaplermin/drug effects , Becaplermin/metabolism , Cytomegalovirus , Fibroblasts , HEK293 Cells , Humans , Immunoglobulin Fc Fragments/chemistry , Immunoglobulin Fc Fragments/pharmacology , Mutagenesis, Site-Directed , Receptor, Platelet-Derived Growth Factor alpha/chemistry , Receptor, Platelet-Derived Growth Factor alpha/pharmacology
3.
J Vis Exp ; (125)2017 07 25.
Article in English | MEDLINE | ID: mdl-28784978

ABSTRACT

In utero electroporation is a rapid and powerful approach to study the process of radial migration in the cerebral cortex of developing mouse embryos. It has helped to describe the different steps of radial migration and characterize the molecular mechanisms controlling this process. To directly and dynamically analyze migrating neurons they have to be traced over time. This protocol describes a workflow that combines in utero electroporation with organotypic slice culture and time-lapse confocal imaging, which allows for a direct examination and dynamic analysis of radially migrating cortical neurons. Furthermore, detailed characterization of migrating neurons, such as migration speed, speed profiles, as well as radial orientation changes, is possible. The method can easily be adapted to perform functional analyses of genes of interest in radially migrating cortical neurons by loss and gain of function as well as rescue experiments. Time-lapse imaging of migrating neurons is a state-of-the-art technique that once established is a potent tool to study the development of the cerebral cortex in mouse models of neuronal migration disorders.


Subject(s)
Cerebral Cortex/embryology , Neurons/cytology , Organ Culture Techniques/methods , Time-Lapse Imaging/methods , Animals , Brain/cytology , Brain/embryology , Carrier Proteins/genetics , Cell Movement/physiology , Cerebral Cortex/cytology , DNA-Binding Proteins , Electroporation , Female , Green Fluorescent Proteins/genetics , Green Fluorescent Proteins/metabolism , Mice , Mutation , Neurons/physiology , Nuclear Proteins/genetics , Pregnancy , Repressor Proteins , Time-Lapse Imaging/instrumentation
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