Αρχειοθήκη ιστολογίου

Αλέξανδρος Γ. Σφακιανάκης
ΩτοΡινοΛαρυγγολόγος
Αναπαύσεως 5
Άγιος Νικόλαος Κρήτη 72100
2841026182
6032607174

Δευτέρα 3 Οκτωβρίου 2022

Viral load decrease in SARS‐CoV‐2 BA.1 and BA.2 Omicron sublineages infection after treatment with monoclonal antibodies and direct antiviral agents

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ABSTRACT

Background

The efficacy on the Omicron variant of the approved early- coronavirus disease 2019 (COVID-19) therapies, especially monoclonal antibodies, has been challenged by in vitro neutralization data, while data on in vivo antiviral activity are lacking.

Materials and methods

We assessed potential decrease from day1 to day7 viral load (VL) in nasopharyngeal swabs of outpatients receiving Sotrovimab, Molnupiravir, Remdesivir, or Nirmatrelvir/ritonavir for mild-to-moderate COVID-19 due to sublineages BA.1 or BA.2, and average treatment effect (ATE) by weighted marginal linear regression models.

Results

A total of 521 patients [378 BA.1 (73%),143 (27%) BA.2] received treatments (Sotrovimab 202, Molnupiravir 117, Nirmatrelvir/ritonavir 84, and Remdesivir 118): median age 66 years, 90% vaccinated, median time from symptoms onset 3 days. Day1 mean viral load was 4.12 log2 (4.16 for BA.1 and 4.01 for BA.2). The adjusted analysis showed that Nirmatrelvir/ritonavir significantly reduced VL compared to all the other drugs, except vs. Molnupiravir in BA.2. Molnupiravir was superior to Remdesivir in both BA.1 and BA.2, and to Sotrovimab in BA.2. Sotrovimab had better activity than Remdesivir only against BA.1.

Conclusions

Nirmatrelvir/ritonavir showed the greatest antiviral activity against Omicron variant, comparable to Molnupiravir only in the BA.2 subgroup. VL decrease could be a valuable surrogate of drug activity in the context of the high prevalence of vaccinated people and low probability of hospital admission.

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Investigating a possible causal relationship between maternal serum urate concentrations and offspring birthweight: a Mendelian randomization study

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Abstract
Background
Higher urate levels are associated with higher systolic blood pressure (SBP) in adults, and in pregnancy with lower offspring birthweight. Mendelian randomization (MR) analyses suggest a causal effect of higher urate on higher SBP and of higher maternal SBP on lower offspring birthweight. If urate causally reduces birthweight, it might confound the effect of SBP on birthweight. We therefore tested for a causal effect of maternal urate on offspring birthweight.
Methods
We tested the association between maternal urate levels and offspring birthweight using multivariable linear regression in the Exeter Family Study of Childhood Health (EFSOCH; n =872) and UK Biobank (UKB; n =133 187). We conducted two-sample MR to test for a causal effect of maternal urate [114 single-nucleotide polymorphisms (SNPs); n =288 649 European ancestry] on offspring birthweight (n =406 063 European ancestry; maternal SNP effect estimates adjusted for fetal effects). We assessed a causal relationship between urate and SBP using one-sample MR in UKB women (n =199 768).
Results
Higher maternal urate was associated with lower offspring birthweight with similar confounder-adjusted magnitudes in EFSOCH [22 g lower birthweight per 1-SD higher urate (95% CI: –50, 6); P =0.13] and UKB [–28 g (95% CI: –31, –25); P = 1.8 × 10–75]. The MR causal effect estimate was directionally consistent, but smaller [–11 g (95% CI: –25, 3); PIVW=0.11]. In women, higher urate was causally associated with higher SBP [1.7 mmHg higher SBP per 1-SD higher urate (95% CI: 1.4, 2.1); P =7.8 × 10–22], consistent with that previously published in women and men.
Conclusion
The marked attenuation of the MR result of maternal urate on offspring birthweight compared with the multivariable regression result suggests previous observational associations may be confounded. The 95% CIs of the MR result included the null but suggest a possible small effect on birthweigh t. Maternal urate levels are unlikely to be an important contributor to offspring birthweight.
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Κυριακή 2 Οκτωβρίου 2022

First Line Treatment of Adult Glioblastoma Patients in England 2103-2018 from the GlioCova Project

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Abstract
AIMS
The Gliocova dataset uses linked English national cancer data on all 51,775 adult primary brain tumour patients diagnosed between 2013-2018. Here we present detailed analysis of first-line treatments of adult glioblastoma (GBM) patients.
METHOD
We identified all adults patients diagnosed with a GBM. We focused on the first line of treatment and we defined 'maximal' first-line treatment as surgical resection followed by chemo-radiotherapy with 59-60 Gy and with at least one cycle of adjuvant chemotherapy Temozolomide.
RESULTS
15,294 patients were diagnosed with a glioblastoma (60% male) with a median age of 66. 79% of patients received some treatment, with younger patients more likely to be treated (>90%, 18 - 59; < 30%, > 80). 54% underwent debulking surgery; 23%, biopsy. 14% received 'maximal' treatment and 21%, none. Patients who had no treatment had a median survival of 2 months whereas patient s who received 'maximal' treatment had a median survival of 16 months.
CONCLUSION
Most adult patients with a GBM in England have a histological diagnosis, and some oncological treatment. However, only 14% receive 'maximal' treatment. Of the 3222 patients who received none, some of these may have had purely private treatment; however, our dataset includes any private sector work undertaken in NHS hospitals. Survival remains poor, but outcomes in those receiving maximal treatment match those from clinical trials. However, most patients do not receive maximal treatment, and so the easiest route to improving outcomes may be optimise delivery of treatment in the 65% of patients who receive sub-maximal treatment. More information on https://blogs.imperial.ac.uk/gliocova
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Glioma Cell Invasion Is Dependent Upon the DNA Damage Response Kinase ATR

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Abstract
AIMS
Gliomas have high levels of DNA replication stress and clinical trials of inhibitors of the key replication stress response protein ATR (ataxia telangiectasia and rad 3 related protein) as radiosensitisers are planned. We aimed to investigate the effect of ATR inhibition on the ability of glioma cells to infiltrate and invade the brain.
METHOD
Live cell imaging in a panel of primary glioma cultures following siRNA or pharmacological inhibition of ATR. Invasion following treatment of murine orthotopic gliomas was determined by immunohistochemistry. Intravital imaging of GFP expressing murine orthotopic xenografts via an intracranial window model of glioma was undertaken.
RESULTS
Invading margins of human glioma samples demonstrated increased pATR expression relative to core. Live cell imaging demonstrated reduced cell velocity following ATR inhibition (Berzosertib/BAY1895344) or siRNA. Cytoplasmic vacuolation occur red following ATRi or siRNA which were single walled structures which engulf high molecular weight dextran, compatible with blockade of macropinosome processing. Live cell imaging with GFP-integrin α5 and integrin recycling assays showed sequestration of integrins within macropinosomes and reduced integrin cycling. Intravital in vivo imaging of murine xenograft tumours confirmed vacuolation and dextran uptake following ATRi, whilst a further in vivo study demonstrated a reduction in invading tumour cells.
CONCLUSION
We demonstrate a novel role for ATR in facilitating macropinocytic vesicle trafficking and integrin recycling in GBM cells which results in a profound motility defect in vitro and in vivo. ATR inhibitors are entering early phase trials as radiation sensitisers and we propose that therapeutic benefit will extend beyond DNA damage potentiation.
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Photodynamics of Subependymal Giant Cell Astrocytoma (SEGA) with 5-Aminolevulinic Acid (5-ALA/Gliolan©)

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Abstract
AIMS
5-ALA (Gliolan©) is a valuable surgical tool used predominantly in high grade tumours, which utilises tissue fluorescence to improve the visualisation of the brain-tumour interface. This ensures safe maximal resection, while preserving healthy brain. While Gliolan© use in low grade tumours has previously been reported with variable results, reports of its use and success in the context of SEGA are extremely rare. This report highlights the use of Gliolan© in a patient presenting with a Subependymal Giant Cell Astrocytoma (in a background of tuberous sclerosis), facilitating maximal safe resection and preserving eloquent tissue.
METHOD
Tumour resection was performed with pre-operative DTI-fiber tracking and mapping. A transsulcal minimal invasive parafascicular approach (tsMIPS) was carried out with assistance of NICO BrainPath© tubular retractor system (60x13.5), neuronaviagtion, Gliolan©, intra-operative neuro monito ring (IONM), and ultrasound guidance
RESULTS
The tumour was found to have both bright and pale fluorescence in the cystic and solid components respectively. Resection was limited to the soft cystic component only, as the solid tumour component showed anatomical attachment to the subgenual area and the fornix. No fluorescence was perceived at the end of resection. The patient made a good recovery with no post-operative deficits. Histopathology confirmed subependymal giant cell astrocytoma (SEGA, WHO grade I). No adjuvant treatment was required
CONCLUSION
This reports suggests 5-ALA may be beneficial in the safe resection of SEGAs. Further studies and technological advances in the area of photodynamics, imaging, and intra-operative mapping may be helpful to fully evaluate the efficacy of 5-ALA in SEGAs and other low-grade tumours.
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Glioma Espionage From Longitudinal CSF Proteomics

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Abstract
AIMS
Rapid, detailed feedback is needed to understand the individualized biological impacts of novel glioma therapies. We are performing glioma biomarker discovery by serial cerebrospinal fluid (CSF) sampling from Ommaya reservoirs to determine how the CSF proteome can reveal early longitudinal intelligence regarding glioma status, biology, and therapeutic response.
METHOD
Global proteomic analysis of CSF was performed on the Somalogic platform – an aptamer-based technology for highly sensitive and specific analysis of over 7,000 proteins. Discovery analysis comprised of the top-500 ranked proteins in CSF from seven patients with high-grade gliomas (HGG) versus non-glioma controls. The top-500 HGG proteins were then preliminarily filtered to include only proteins that met two additional criteria of decrease with resection and increase with recurrence in individual paired patient samples.
RESULTS
Proteomic enrichment analysis revealed a conserved HGG CSF proteomic signature defined by 79 proteins, including ones known to be over-expressed in solid tumor malignancies, such as retinoblastoma binding protein 4, heat shock protein 90, and sorcin. The HGG proteomic signature was consistently enriched in an independent validation cohort consisting of 13 gliomas diverse in primary versus recurrent status, subtype, and grade, when compared to control CSF samples. Encouragingly, proteins in the HGG signature decreased in the two patients for whom CSF was collected prior to and after resection (both at POD16 and POD18) with decreased tumor burden.
CONCLUSION
Our data demonstrate the ability to gain detailed, individualized insights regarding glioma biology, tumor burden, and evolution through global CSF proteomics acquired from longitudinal access to gliomas via Ommaya reservoirs.
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IDHwt Glioblastomas Show Opposing Resistance Mechanisms Across Patients in Response to Standard Treatment

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Abstract
AIMS
Glioblastoma (GBM) is the most common primary malignant brain tumour in adults. Despite aggressive treatment, a resistant tumour recurs in practically all patients. We therefore aimed to better understand the mechanisms driving this treatment resistance through investigating changes in gene expression across pairs of primary and recurrent GBM tumours.
METHOD
We generated or acquired bulk tumour RNA sequencing data for primary and first recurrent tumours from 107 patients who received standard treatment. Differential expression analysis between primary and recurrent samples found that the most dysregulated genes were involved in neurodevelopment and neurodifferentiation. We therefore used a publicly available ChIP-seq database to identify DNA binding factors for which binding sites are enriched in the promotors of genes with the largest expression changes from primary to recurrent.
RESULTS
Jumonji and AT-Rich Inter acting Domain 2 (JARID2) was the most strongly enriched for binding to promotors of dysregulated genes. 65 patients showed an up-regulation and 42 showed a down-regulation of genes bound by this protein. The same set of JARID2 bound genes were found to be dysregulated in each direction, and correlated with the largest source of variation between samples in their response to treatment. Further enrichment analyses indicated that 'Up' responders may resist treatment through reduced proliferation and increased interaction with the tumour microenvironment, whereas 'Down' responders instead rely on a shift to mesenchymal cell states.
CONCLUSION
These results indicate that GBM tumours can be split into two subtypes that transcriptionally reprogramme in different directions through treatment and may benefit from different treatment approaches.
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