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Biology subjects

Yu, J. C.

Publications and source records attributed to Yu, J. C..

4 recordsLinked to original sources

Optimization of Seizure Prevention by Cannabidiol (CBD)

ObjectiveCannabidiol (CBD) is one of the most prominent non-psychotropic cannabinoids with known therapeutic potentials. Based on its anti-seizure efficacy, the first cannabis derived, pharmaceutical grade CBD-based medication was approved in the USA in 2018 for the treatment of seizures in patients 2 years and older. Despite the effectiveness in reducing seizures, there remain several major questions on the optimization of CBD therapy for epilepsy such as the optimal dosage, composition, and route of delivery, which are the main objective of this current study. MethodsWe evaluated the antiseizure effects of CBD through different compositions, routes of delivery, and dosages in a pre-clinical model. We used a kainic acid-induced epilepsy model in C57BL/6 mice, treated them with placebo and/or CBD through inhalation, oral and injection routes. We used CBD broad spectrum (inhaled and injection) versus CBD isolate formulations. We employed the Racine scaling system to evaluate the severity of the seizures, flow cytometry for measuring Immune biomarkers and neurotrophic factors, and histologic analysis to examine and compare the groups. ResultsOur findings showed that all forms of CBD reduced seizures severity. Among the combination of CBD tested. CBD broad spectrum via inhalation was the most effective in the treatment of epileptic seizures (p<0.05) compared to other forms of CBD treatments. ConclusionOur data suggest that route and CBD formulations affect its efficacy in the prevention of epileptic seizures. Inhaled broad spectrum CBD showed a potential superior effect compared to other delivery routes and CBD formulations in the prevention of epileptic seizures, warrants further research.

neuroscience↗

Cannabidiol reverses fentanyl-induced addiction and modulates neuroinflammation

IntroductionFentanyl and non-pharmaceutical fentanyl use have been the leading causes of opioid-induced death worldwide. Being 50 times stronger than heroin and 100 times stronger than morphine, fentanyl is a potent opioid with overdoses causing over 250,000 deaths since 2018 in the US alone. The treatment of fentanyl addiction is a complex process and a clinical challenge. There is a dire need to find other innovative and alternative modalities in the fight against fentanyl crisis. Increasing evidence suggests a correlation between neuroinflammation and symptoms of drug abuse, opening up the possibility of immunoregulatory agents as therapy for fentanyl addiction as well as a other opioid-induced addiction. Cannabidiol (CBD) is a non-opioid, relatively safe, non-psychoactive phyto-cannabinoid produced by cannabis plants. Importantly, recent reports have documented benefits of CBD in the treatment and management of complications related to opioid withdrawal. We investigated if inhaled CBD could reverse the fentanyl addiction and whether the CBD treatment could ameliorate the addiction symptoms by regulating neuroinflammatory signals and re-establishing the homeostasis in CNS. MethodWe used a fentanyl-induced conditioned place preference (CPP) model in mouse to test whether inhaled CBD could reverse the fentanyl addiction and ameliorate the adversarial symptoms. By employing a combination of flow cytometry as well as behavioral tests, we further assessed the impact of fentanyl addiction on cells and neuroinflammatory signals in CNS and we measured the effects of CBD in the treatment of addiction symptoms and inflammatory signals. ResultsOur findings suggest that CBD inhalation could be used effectively in the treatment of fentanyl addiction. CBD mitigated the excessive fentanyl-induced neuroinflammatory responses and decreased cellular stress and senescence. Conclusioninhaled CBD could alleviate the fentanyl addiction and regulate neuroinflammatory responses. This novel approach is non-invasive, accessible, effective, and warrants further, translational and research.

animal behavior and cognition↗

The synergy between cannabidiol and probiotics curtails the glycemic indicators, enhances insulin production, and alleviates the symptoms of type 2 diabetes.

Diabetes continues to challenge healthcare system as one of the most growing epidemics with staggering economic burden. It is estimated that 783 million by 2045 will live with diabetes worldwide, 90% of those cases are type 2 diabetes (T2D). T2D is a multifaceted disease, its treatment requires a holistic approach, beyond single target medications with high efficacy. There is a dire need to explore and invent new and effective therapeutic modalities for T2D. In this study we tested whether a combined formulation of cannabidiol (CBD) and probiotics could control glycemic indices and alleviate symptoms of T2D. We used a mouse model of T2D, replaced their drinking water with a combination of CBD and probiotics formulated as a commercially available beverage. Our findings demonstrated that combination of CBD and probiotics not only reduced the glycemic indices (HbA1c & FBG), but also altered the microbiome profile, promoted beneficial bacteria. Further, the CBD/probiotic combination reduced peripheral inflammatory cytokines and enhanced insulin production in pancreatic islets. In conclusion, our results suggest that consumption of combined CBD and probiotics could be used as a natural, practical, affordable, and safe alternative and complementary therapeutic modality to treat T2D.

molecular biology↗

Conformationally Adaptive Dyes Enable Protein-Adaptive Differential Scanning Fluorometry

Flexible in vitro methods alter the course of biological discoveries. Differential Scanning Fluorimetry (DSF) is a particularly versatile technique which reports protein thermal unfolding via fluorogenic dye. However, applications of DSF are limited by widespread protein incompatibilities with the available DSF dyes. Here, we enable DSF applications for 66 of 70 tested proteins (94%) including 10 from the SARS-CoV2 virus using a chemically diverse dye library, Aurora, to identify compatible dye-protein pairs in high throughput. We find that this protein-adaptive DSF platform (paDSF) not only triples the previous protein compatibility, but also fundamentally extends the processes observable by DSF, including interdomain allostery in O-GlcNAc Transferase (OGT). paDSF enables routine measurement of protein stability, dynamics, and ligand binding. One-Sentence SummaryNext generation protein-adaptive DSF (paDSF) enables rapid and general measurements of protein stability and dynamics.

biochemistry↗