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  • Albrecht, Philipp (4)
  • Meuth, Sven G. (3)
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  • Ayzenberg, Ilya (2)
  • Deppe, Michael (2)
  • Fleischer, Vinzenz (2)
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  • 2021 (3)
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Interleukin-6 receptor blockade in treatment-refractory MOG-IgG–associated disease and neuromyelitis optica spectrum disorders (2021)
Ringelstein, Marius ; Ayzenberg, Ilya ; Lindenblatt, Gero ; Fischer, Katinka ; Gahlen, Anna ; Novi, Giovanni ; Hayward-Könnecke, Helen ; Schippling, Sven ; Rommer, Paulus S. ; Kornek, Barbara ; Zrzavy, Tobias ; Biotti, Damien ; Ciron, Jonathan ; Audoin, Bertrand ; Berthele, Achim ; Giglhuber, Katrin ; Zephir, Helene ; Kümpfel, Tania ; Berger, Robert ; Röther, Joachim ; Häußler, Vivien ; Stellmann, Jan-Patrick ; Whittam, Daniel ; Jacob, Anu ; Kraemer, Markus ; Gueguen, Antoine ; Deschamps, Romain ; Bayas, Antonios ; Hümmert, Martin W. ; Trebst, Corinna ; Haarmann, Axel ; Jarius, Sven ; Wildemann, Brigitte ; Grothe, Matthias ; Siebert, Nadja ; Ruprecht, Klemens ; Paul, Friedemann ; Collongues, Nicolas ; Marignier, Romain ; Levy, Michael ; Karenfort, Michael ; Deppe, Michael ; Albrecht, Philipp ; Hellwig, Kerstin ; Gold, Ralf ; Hartung, Hans-Peter ; Meuth, Sven G. ; Kleiter, Ingo ; Aktas, Orhan
Longitudinal optic neuritis-unrelated visual evoked potential changes in NMO spectrum disorders (2019)
Ringelstein, Marius ; Harmel, Jens ; Zimmermann, Hanna ; Brandt, Alexander U. ; Paul, Friedemann ; Haarmann, Axel ; Buttmann, Mathias ; Hümmert, Martin W. ; Trebst, Corinna ; Schroeder, Christoph ; Ayzenberg, Ilya ; Kleiter, Ingo ; Hellwig, Kerstin ; Havla, Joachim ; Kümpfel, Tania ; Jarius, Sven ; Wildemann, Brigitte ; Rommer, Paulus ; Weber, Martin S. ; Pellkofer, Hannah ; Röpke, Luise ; Geis, Christian ; Retzlaff, Nele ; Zettl, Uwe ; Deppe, Michael ; Klotz, Luisa ; Young, Kim ; Stellmann, Jan-Patrick ; Kaste, Matthias ; Kermer, Pawel ; Marouf, Wael ; Lauda, Florian ; Tumani, Hayrettin ; Graf, Jonas ; Klistorner, Alexander ; Hartung, Hans-Peter ; Aktas, Orhan ; Albrecht, Philipp
Translational value of choroid plexus imaging for tracking neuroinflammation in mice and humans (2021)
Fleischer, Vinzenz ; Gonzalez-Escamilla, Gabriel ; Ciolac, Dumitru ; Albrecht, Philipp ; Küry, Patrick ; Gruchot, Joel ; Dietrich, Michael ; Hecker, Christina ; Müntefering, Thomas ; Bock, Stefanie ; Oshaghi, Mohammadsaleh ; Radetz, Angela ; Cerina, Manuela ; Krämer, Julia ; Wachsmuth, Lydia ; Faber, Cornelius ; Lassmann, Hans ; Ruck, Tobias ; Meuth, Sven G. ; Muthuraman, Muthuraman ; Groppa, Sergiu
Neuroinflammation is a pathophysiological hallmark of multiple sclerosis and has a close mechanistic link to neurodegeneration. Although this link is potentially targetable, robust translatable models to reliably quantify and track neuroinflammation in both mice and humans are lacking. The choroid plexus (ChP) plays a pivotal role in regulating the trafficking of immune cells from the brain parenchyma into the cerebrospinal fluid (CSF) and has recently attracted attention as a key structure in the initiation of inflammatory brain responses. In a translational framework, we here address the integrity and multidimensional characteristics of the ChP under inflammatory conditions and question whether ChP volumes could act as an interspecies marker of neuroinflammation that closely interrelates with functional impairment. Therefore, we explore ChP characteristics in neuroinflammation in patients with multiple sclerosis and in two experimental mouse models, cuprizone diet-related demyelination and experimental autoimmune encephalomyelitis. We demonstrate that ChP enlargement—reconstructed from MRI—is highly associated with acute disease activity, both in the studied mouse models and in humans. A close dependency of ChP integrity and molecular signatures of neuroinflammation is shown in the performed transcriptomic analyses. Moreover, pharmacological modulation of the blood–CSF barrier with natalizumab prevents an increase of the ChP volume. ChP enlargement is strongly linked to emerging functional impairment as depicted in the mouse models and in multiple sclerosis patients. Our findings identify ChP characteristics as robust and translatable hallmarks of acute and ongoing neuroinflammatory activity in mice and humans that could serve as a promising interspecies marker for translational and reverse-translational approaches.
Serum neurofilament levels reflect outer retinal layer changes in multiple sclerosis (2021)
Seitz, Caspar B. ; Steffen, Falk ; Muthuraman, Muthuraman ; Uphaus, Timo ; Krämer, Julia ; Meuth, Sven G. ; Albrecht, Philipp ; Groppa, Sergiu ; Zipp, Frauke ; Bittner, Stefan ; Fleischer, Vinzenz
Background: Serum neurofilament light chain (sNfL) and distinct intra-retinal layers are both promising biomarkers of neuro-axonal injury in multiple sclerosis (MS). We aimed to unravel the association of both markers in early MS, having identified that neurofilament has a distinct immunohistochemical expression pattern among intra-retinal layers. Methods: Three-dimensional (3D) spectral domain macular optical coherence tomography scans and sNfL levels were investigated in 156 early MS patients (female/male: 109/47, mean age: 33.3 ± 9.5 years, mean disease duration: 2.0 ± 3.3 years). Out of the whole cohort, 110 patients had no history of optic neuritis (NHON) and 46 patients had a previous history of optic neuritis (HON). In addition, a subgroup of patients (n = 38) was studied longitudinally over 2 years. Support vector machine analysis was applied to test a regression model for significant changes. Results: In our cohort, HON patients had a thinner outer plexiform layer (OPL) volume compared to NHON patients (B = −0.016, SE = 0.006, p = 0.013). Higher sNfL levels were significantly associated with thinner OPL volumes in HON patients (B = −6.734, SE = 2.514, p = 0.011). This finding was corroborated in the longitudinal subanalysis by the association of higher sNfL levels with OPL atrophy (B = 5.974, SE = 2.420, p = 0.019). sNfL levels were 75.7% accurate at predicting OPL volume in the supervised machine learning. Conclusions: In summary, sNfL levels were a good predictor of future outer retinal thinning in MS. Changes within the neurofilament-rich OPL could be considered as an additional retinal marker linked to MS neurodegeneration.
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