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Background: Tissue-resident macrophages have mixed developmental origins. They derive in variable extent from yolk sac (YS) hematopoiesis during embryonic development. Bone marrow (BM) hematopoietic progenitors give rise to tissue macrophages in postnatal life, and their contribution increases upon organ injury. Since the phenotype and functions of macrophages are modulated by the tissue of residence, the impact of their origin and developmental paths has remained incompletely understood. Methods: In order to decipher cell-intrinsic macrophage programs, we immortalized hematopoietic progenitors from YS and BM using conditional HoxB8, and carried out an in-depth functional and molecular analysis of differentiated macrophages. Results: While YS and BM macrophages demonstrate close similarities in terms of cellular growth, differentiation, cell death susceptibility and phagocytic properties, they display differences in cell metabolism, expression of inflammatory markers and inflammasome activation. Reduced abundance of PYCARD (ASC) and CASPASE-1 proteins in YS macrophages abrogated interleukin-1β production in response to canonical and non-canonical inflammasome activation. Conclusions: Macrophage ontogeny is associated with distinct cellular programs and immune response. Our findings contribute to the understanding of the regulation and programming of macrophage functions.
OBJECTIVES: Internal tandem duplications (ITDs) of the Fms-like tyrosine kinase 3 (FLT3) represent the most frequent molecular aberrations in acute myeloid leukemia (AML) and are associated with an inferior prognosis. The pattern of downstream activation by this constitutively activated receptor tyrosine kinase is influenced by the localization of FLT3-ITD depending on its glycosylation status. Different pharmacological approaches can affect FLT3-ITD-driven oncogenic pathways by the modulation of FLT3-ITD localization. AIMS: The objective of this study was to investigate the effects of N-glycosylation inhibitors (tunicamycin or 2-deoxy-D-glucose) or the histone deacetylase inhibitor valproic acid (VPA) on FLT3-ITD localization and downstream activity. We sought to determine the potential differences between the distinct FLT3-ITD variants, particularly concerning their susceptibility towards combined treatment by addressing either N-glycosylation and the heat shock protein 90 (HSP90) by 17-AAG, or by targeting the PI3K/AKT/mTOR pathway by rapamycin after treatment with VPA. METHODS: Murine Ba/F3 leukemia cell lines were stably transfected with distinct FLT3-ITD variants resulting in IL3-independent growth. These Ba/F3 FLT3-ITD cell lines or FLT3-ITD-expressing human MOLM13 cells were exposed to tunicamycin, 2-deoxy-D-glucose or VPA, and 17-AAG or rapamycin, and characterized in terms of downstream signaling by immunoblotting. FLT3 surface expression, apoptosis, and metabolic activity were analyzed by flow cytometry or an MTS assay. Proteome analysis by liquid chromatography–tandem mass spectrometry was performed to assess differential protein expression. RESULTS: The susceptibility of FLT3-ITD-expressing cells to 17-AAG after pre-treatment with tunicamycin or 2-deoxy-D-glucose was demonstrated. Importantly, in Ba/F3 cells that were stably expressing distinct FLT3-ITD variants that were located either in the juxtamembrane domain (JMD) or in the tyrosine kinase 1 domain (TKD1), response to the sequential treatments with tunicamycin and 17-AAG varied between individual FLT3-ITD motifs without dependence on the localization of the ITD. In all of the FLT3-ITD cell lines that were investigated, incubation with tunicamycin was accompanied by intracellular retention of FLT3-ITD due to the inhibition of glycosylation. In contrast, treatment of Ba/F3-FLT3-ITD cells with VPA was associated with a significant increase of FLT3-ITD surface expression depending on FLT3 protein synthesis. The allocation of FLT3 to different cellular compartments that was induced by tunicamycin, 2-deoxy-D-glucose, or VPA resulted in the activation of distinct downstream signaling pathways. Whole proteome analyses of Ba/F3 FLT3-ITD cells revealed up-regulation of the relevant chaperone proteins (e.g., calreticulin, calnexin, HSP90beta1) that are directly involved in the stabilization of FLT3-ITD or in its retention in the ER compartment. CONCLUSION: The allocation of FLT3-ITD to different cellular compartments and targeting distinct downstream signaling pathways by combined treatment with N-glycosylation and HSP90 inhibitors or VPA and rapamycin might represent new therapeutic strategies to overcome resistance towards tyrosine kinase inhibitors in FLT3-ITD-positive AML. The treatment approaches addressing N-glycosylation of FLT3-ITD appear to depend on patient-specific FLT3-ITD sequences, potentially affecting the efficacy of such pharmacological strategies.
Cold physical plasma (CPP), a partially ionized gas that simultaneously generates reactive oxygen and nitrogen species, is suggested to provide advantages in regenerative medicine. Intraoperative CPP therapy targeting pathologies related to diminished bone quality could be promising in orthopedic surgery. Assessment of a clinically approved plasma jet regarding cellular effects on primary bone marrow mesenchymal stromal cells (hBM-MSCs) from relevant arthroplasty patient cohorts is needed to establish CPP-based therapeutic approaches for bone regeneration. Thus, the aim of this study was to derive biocompatible doses of CPP and subsequent evaluation of human primary hBM-MSCs’ osteogenic and immunomodulatory potential. Metabolic activity and cell proliferation were affected in a treatment-time-dependent manner. Morphometric high content imaging analyses revealed a decline in mitochondria and nuclei content and increased cytoskeletal compactness following CPP exposure. Employing a nontoxic exposure regime, investigation on osteogenic differentiation did not enhance osteogenic capacity of hBM-MSCs. Multiplex analysis of major hBM-MSC cytokines, chemokines and growth factors revealed an anti-inflammatory, promatrix-assembling and osteoclast-regulating secretion profile following CPP treatment and osteogenic stimulus. This study can be noted as the first in vitro study addressing the influence of CPP on hBM-MSCs from individual donors of an arthroplasty clientele.
Die ex-vivo Wirkung von Spermin und Spermidin auf T-Lymphozyten bei Patienten mit kognitivem Defizit
(2021)
Demenzerkrankungen stellen die Medizin und die Wissenschaft vor eine der größten Herausforderungen des 21. Jahrhunderts. Aufgrund des Fehlens kausaler Therapien werden neue Therapieansätze dringend für die Bewältigung dieser medizinisch herausfordernden Erkrankung benötigt. Vielversprechende Ergebnisse im Hinblick auf ein neues Therapeutikum liefert eine Klinische Studie (Smart-Age) mit einem polyaminreichen Pflanzenextrakt als Nahrungsergänzungsmittel, eingesetzt bei Patienten mit Subjektiver kognitiver Verschlechterung (engl. Subjective Cognitive Decline).
Da die genauen Wirkmechanismen der Polyamine Spermin und Spermidin auf die kognitive Gesundheit noch unzureichend verstanden sind und das Immunsystem eine zentralen Rolle in der Pathogenese der Alzheimer-Demenz einnimmt, war es das Ziel in der vorliegenden Dissertation die Wirkung der beiden genannten Polyamine auf die Aktivierung und Autophagie von T-Lymphozyten und die Zytokinsekretion von PBMC durchflusszytometrisch, anhand einer Studienkohorte kognitiv beeinträchtigter Patienten (Subjektive kognitive Verschlechterung SCD, milde kognitive Beeinträchtigung MCI, milde Alzheimer-Demenz) (n=22) und gesunder, altersäquivalente Kontrollprobanden (n=12), zu untersuchen.
Die Ergebnisse der Arbeit zeigen, dass Spermin und Spermidin die Aktivierung und die Autophagie von T-Lymphozyten dosisabhängig in der Patienten- und der Kontrollkohorte steigert. Spermin führte zu einer dosisabhängig verminderten Zytokinexpression aller 11 untersuchten Zytokine in der Patienten- und der Kontrollkohorte. Spermidin hingegen führte sowohl zu einer vermehrten als auch einer verminderten Expression einzelner Zytokine im Zellkulturüberstand.
In der vorliegenden explorativen Studie konnte somit erstmals prospektiv der Einfluss der Polyamine Spermin und Spermidin auf die T-Lymphozyten Aktivierung, Autophagie und die Zytokinexpression von Patienten im Frühstadium kognitiver Erkrankungen in in-vitro Experimenten gezeigt werden. Verglichen mit einer Kontrollkohorte kognitiv gesunder, altersentsprechender Probanden zeigten sich ähnliche Effekte von Spermin und Spermidin auf die untersuchten Parameter, wobei für einzelne Parameter der Untersuchung eine höhere Sensitivität der Polyaminbehandlung von T-Lymphozyten kognitiv erkrankter Patienten nachzuvollziehen war.
Die Daten dieser Dissertation liefern somit einen ersten Beitrag zur umfassenden Beleuchtung zellulärer Wirkmechanismen einer Polyaminsubstitution in humanen, peripheren Immunzellen bezüglich kognitiver Gesundheit, um hierdurch neue therapeutische Ansätze zur Behandlung dementieller Erkrankungen zu entwickeln.