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Rolle, K.

Publications and source records attributed to Rolle, K..

4 recordsLinked to original sources

Circular RNA - circCLIP2 is predominantly expressed in GSC niche and enhances glioblastoma aggressiveness via EMT and ECM signaling

Glioblastoma (GBM) is the most common and malignant type of brain tumor in adults and no effective therapies exist to combat this disease. Surgical resection, radio- and temozolomide-based-chemotherapy are insufficient mainly due to inter- and intra-tumoral heterogeneity of GBM tumors, therefore personalized approaches are required. Additionally, diverse tumor microenvironment with a leading role of glioblastoma stem cells (GSCs) in hypoxic core underlie the aggressiveness and recurrence of GBM. However, the molecules and pathways which directly promote tumor aggressiveness together with the driving process of epithelial-to-mesenchymal transition (EMT) and the components of extracellular matrix (ECM), remain only partially covered with prior studies focused mainly on coding oncogenes and tumor suppressor genes. Over the past years, a special attention has been paid to non-coding, circular RNAs (circRNAs) differentially expressed in various cancers, including GBM. Despite high abundance and stability, the exact biological roles of most individual circRNAs have not been fully revealed, so far. Besides anti-cancer targets, circRNAs have been considered as essential biomarkers and stratifying criterion of malignancy. Thus, studies on functions of differentially expressed circRNAs in GBM are an emerging field to be explored. In herein study, the biological role of circRNA CLIP2 (circCLIP2) was found highly overexpressed in primary tumor tissues. Upon the knock-down of circCLIP2 in 2D and 3D in vitro models, functional tests performed clearly indicate a significant contribution of circCLIP2 to aggressive potential of GBM as showed by decreased rates of proliferation, migration and invasion. Additional studies indicated predominant expression of circCLIP2 in GSC fractions additionally elevated by hypoxic conditions. The increased rates of proliferation and migration as well as molecular analyses were also confirmed in in vivo settings where xenograft model was applied. The expression of EMT marker Snail2 and ECM-degrading enzyme metalloproteinase 9 (MMP9) were significantly downregulated in the tumors formed from circCLIP2 silenced cells. Taken together, these results indicate a strong contribution of circCLIP2 in the aggressive phenotype of GBM which is due to a modulation of GSC proliferative potential as well as migration and invasion via EMT together with the modulator of ECM composition.

cancer biology↗

Exploring MicroRNA Signatures in Pediatric Non-infectious Uveitis: Meta-Analysis and Molecular Profiling of Patient Samples

PurposeTo find a distinct non-coding RNA characteristic for idiopathic uveitis in the pediatric population. To explore the autoimmune-related miRNA expression profile in pediatric patients with idiopathic uveitis (IU) and juvenile idiopathic arthritis-associated uveitis (JIA-AU) and find a common molecular background for idiopathic uveitis and other autoimmune diseases. Materials and methodsThe expression levels of miRNAs were analyzed by quantitative real-time PCR using serum samples from patients with idiopathic uveitis (n=8), juvenile idiopathic arthritis-associated uveitis (n=7), and healthy controls. We selected the most promising miRNAs from the original research papers: miR-16-5p, miR-26a-5p, miR-145-5p, miR-451a as markers for juvenile idiopathic arthritis, miR-23a-3p, miR-29a-3p, miR-140-5p, miR-193a-5p and miR-491-5p for uveitis in the adult population, and miR-125a-5p, miR-146a-5p, miR-155-5p, miR-223-5p, miR-223-3p characteristic for both diseases and confirm their expression changes in serum from children with idiopathic uveitis. We comprehensively reviewed the literature enrolling the papers that met the inclusion criteria (miRNA and non-infectious uveitis/juvenile idiopathic arthritis) and performed target prediction analysis of appoint miRNAs. It additionally confirmed that altered miRNAs target the immunologically involved genes. ResultsImmunological involved miRNAs such as miR-146a-5p and miR-155-5p show diverse expression levels in different patients as they interact with multiple targets. miR-204-5p is downregulated in both patient groups compared to healthy controls. ConclusionmiR-204-5p and miR-155-5p are candidates for molecular markers of autoimmune uveitis. We did not identify the miRNAs specific only to idiopathic uveitis, but for the first time in the pediatric population, we confirmed that this disease entity shares a molecular basis with other autoimmune diseases. Further studies are required to elucidate the molecular interactions among miRNAs, cytokines, and transcription factors within the intricate immune response, particularly in the eye.

cell biology↗

Transcriptome-wide analysis of circRNA and RBP profiles and their molecular and clinical relevance for GBM

Glioblastoma (GBM) is the most aggressive and lethal type of glioma, characterized by aberrant expression of non-coding RNAs including circular RNAs (circRNAs). They might impact cellular processes by interacting with other molecules - like microRNAs or RNA-binding proteins (RBPs). The diagnostic value of circRNAs and circRNAs/RBPs complexes is still largely unknown. To explore circRNAs and RBPs transcripts expression in GBM, we performed and further analyzed RNA-seq data from GBM patients primary and recurrent tumor samples. We identified circRNAs differentially expressed in primary tumors, the circRNA progression markers in recurrent GBM samples as well as the expression profile of RBP transcripts. Subsequent analysis allowed us to generate a comprehensive catalog of circRNA-RBP interactions regarding both the RBPs sequestration by circRNA as well as the RBPs involvement in circRNA biogenesis. Furthermore, we demonstrated the clinical potential of circRNAs and RBPs in GBM and proposed them as the stratification markers in the de novo assembled tumor subtypes. Therefore, our transcriptome-wide study specified circRNA-RBP interactions that could play a significant regulatory role in gliomagenesis and GBM progression.

cancer biology↗

Self-pressurized rapid freezing at arbitrary cryoprotectant concentrations

Self-pressurized rapid freezing (SPRF) has been proposed as a simple alternative to traditional high pressure freezing (HPF) protocols for vitrification of biological samples in electron microscopy and cryopreservation applications. Both methods exploit the circumstance that the melting point of ice reaches a minimum when subjected to pressure of around 210 [MPa], however, in SPRF its precise quantity depends on sample properties and hence, is generally unknown. In particular, cryoprotective agents (CPAs) are expected to be a factor; though eschewed by many SPRF experiments, vitrification of larger samples notably cannot be envisaged without them. Thus, in this study, we address the question of how CPA concentration affects pressure inside sealed capillaries, and how to design SPRF experiments accordingly. By embedding a fiber-optic probe in samples and performing Raman spectroscopy after freezing, we first present a direct assessment of pressure buildup during SPRF, enabled by the large pressure sensitivity of the Raman shift of hexagonal ice. Choosing dimethyl sulfoxide (DMSO) as a model CPA, this approach allows us to demonstrate that average pressure drops to zero when DMSO concentrations of 15 wt % are exceeded. Since a trade-off between pressure and DMSO concentration represents an impasse with regards to vitrification of larger samples, we introduce a sample architecture with two chambers, separated by a partition that allows for equilibration of pressure but not DMSO concentrations. We show that pressure and concentration in the fiber-facing chamber can be tuned independently, and present differential scanning calorimetry (DSC) data supporting the improved vitrification performance of two-chamber designs.

biophysics↗