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These results were confirmed by capillary electrophoresis analysis and were not reversed by a chronic exposition to an antiepileptic drug (carbamazepine). Then, using in vivo noninvasive GABA-edited MRS, we confirmed that a high GABA increase is specific to the injected hippocampus of KA-MTLE mice.
Our strategy using ex vivo MRS-based untargeted metabolomics to select the most discriminant metabolite(s), followed by in vivo MRS-based targeted metabolomics, is an unbiased approach to accurately define the EZ in a mouse model of focal epilepsy. Results suggest that GABA is a specific biomarker of the EZ in MTLE.
Our strategy using ex vivo MRS-based untargeted metabolomics to select the most discriminant metabolite(s), followed by in vivo MRS-based targeted metabolomics, is an unbiased approach to accurately define the EZ in a mouse model of focal epilepsy. Results suggest that GABA is a specific biomarker of the EZ in MTLE.
To further clinically characterize lingual hamartomas, and to consolidate literature by analyzing clinical presentation, diagnostic evaluation, treatment, and outcomes.
Retrospective chart review and literature review.
Case series from 1989 to 2020 at a tertiary pediatric center; follow-up ranging from 2 months to 12 years. Patient demographics, clinical presentations, physical examination findings, surgical pathology, operative methods, pre-operative imaging, and follow-up. A review of English-language literature from 1945 to 2020 was conducted.
Seven patients (four male, three female) with nine lingual hamartomas were identified. Average age at surgical excision was 7.9 months (SD 3.5 months, range 3 to 14 months). Follow-up ranged from 2 months to 12 years, with all patients having no recurrence. Physical examination identified five pedunculated hamartomas and two sessile hamartomas. One patient had a neck CT, one had neck ultrasound, and two had facial MRIs. CT and ultrasounds confirmed presence of cervical thyroid. MRI suggested no muscular invasion for one patient, whereas motion artifact obscured findings for the other patient. Most patients who presented with dysphagia or poor weight gain achieved post-surgical improvement. The present cases combined with the literature review identified 57 patients with 63 lingual hamartomas.
Lingual hamartomas appear as hypovascular pedunculated masses near the foramen cecum. There is no demographic predisposition, and most are identified during infancy. Imaging is not necessary, unless there is concern for lingual thyroid, in which case thyroid ultrasound should be performed. Surgical excision is curative, with dysphagia resolution and low likelihood for recurrence.
4 Laryngoscope, 2020.
4 Laryngoscope, 2020.
Dose escalated radiation therapy (RT) combined with long-term androgen deprivation therapy (ADT) is a standard of care option for men with high-risk and locally advanced prostate cancer (PCa). However, the optimal dose of escalated RT and ADT is not known. Here we assessed the impact of radiation dose and length of ADT on biochemical recurrence in a multi-institutional cohort stratified by the Cambridge prognostic group (CPG). We hypothesized that radiation dose and length of ADT would impact outcome in similar risk groups of our patients.
Two-hundred and forty-four patients were included, 132 from Oslo University Hospital, Department of Oncology and 112 from Johns Hopkins Hospital, Department of Radiation Oncology. Biochemical recurrence was defined as prostate-specific antigen (PSA) nadir +2 ng/mL. Time to recurrence was estimated using Kaplan-Meier analysis and when stratified by CPG the log-rank test was used. Cox regression analysis was performed to identify factors associated with risk of recurrencesk PCa. Further studies are needed to identify the optimal combination of ADT and RT.
Genome-wide association studies have identified over 100 single-nucleotide polymorphisms (SNPs) associated with prostate cancer (PrCa), and polygenic risk scores (PRS) based on their combined genotypes have been developed for risk stratification. We aimed to assess the contribution of PRS to PrCa risk in a large multisite study.
The sample included 1972 PrCa cases and 1919 unaffected controls. Next-generation sequencing was used to assess pathogenic variants in 14 PrCa-susceptibility genes and 72 validated PrCa-associated SNPs. We constructed a population-standardized PRS and tested its association with PrCa using logistic regression adjusted for age and family history of PrCa.
The mean age of PrCa cases at diagnosis and age of controls at testing/last clinic visit was 59.5 ± 7.2 and 57.2 ± 13.0 years, respectively. Among 1740 cases with pathology data, 57.4% had Gleason score ≤ 6, while 42.6% had Gleason score ≥ 8. TW-37 In addition, 39.6% cases and 20.1% controls had a family history of PrCa. The PRS was significantly higher in cases than controls (mean ± SD 1.42 ± 1.11 vs 1.02 ± 0.76; P < .0001). Compared with men in the 1st quartile of age-adjusted PRS, those in the 2nd, 3rd, and 4th quartile were 1.58 (95% confidence interval [CI] 1.31-1.90), 2.36 (95% CI 1.96-2.84), and 3.98 (95% CI 3.29-4.82) times as likely to have PrCa (all P < .0001). Adjustment for family history yielded similar results. PRS predictive performance was consistent with prior literature (area under the receiver operating curve = 0.64; 95% CI 0.62-0.66).
These data suggest that a 72-SNP PRS is predictive of PrCa, supporting its potential use in clinical risk assessment.
These data suggest that a 72-SNP PRS is predictive of PrCa, supporting its potential use in clinical risk assessment.
Reduced vitamin D receptor (VDR) expression prompts skeletal muscle atrophy. Atrophy occurs through catabolic processes, namely the induction of autophagy, while anabolism remains unchanged. In response to VDR-knockdown mitochondrial function and related gene-set expression is impaired. In vitro VDR knockdown induces myogenic dysregulation occurring through impaired differentiation. These results highlight the autonomous role the VDR has within skeletal muscle mass regulation.
Vitamin D deficiency is estimated to affect ∼40% of the world's population and has been associated with impaired muscle maintenance. Vitamin D exerts its actions through the vitamin D receptor (VDR), the expression of which was recently confirmed in skeletal muscle, and its down-regulation is linked to reduced muscle mass and functional decline. To identify potential mechanisms underlying muscle atrophy, we studied the impact of VDR knockdown (KD) on mature skeletal muscle in vivo, and myogenic regulation in vitro in C2C12 cells. Male Wistar rats underwent in vivo electrotransfer (IVE) to knock down the VDR in hind-limb tibialis anterior (TA) muscle for 10days.
Website: https://www.selleckchem.com/products/TW-37.html
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