Neuronal Differentiation: is the process by which a neural stem cell changes to a specific neuron subtype. This occurs during early nervous system development and is a complex process that is orchestrated by intrinsic and environmental factors that guide each individual neural stem cell into its final form and location within the brain.
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AUG 01, 2023 | 10:00 PM
C.E. CREDITS
Stem cells have the capability to develop into any specialized cell type, which makes them a valuable resource in research and regenerative medicine. Differentiated stem cell models provide...
Date: October 04, 2022 Time: 7:00am (PDT), 10:00am (EDT), 4:00pm (CEST) The ability to derive induced pluripotent stem cells (iPSCs) from differentiated cell types such as fibroblasts, has r...
Date: September 27, 2022 Time: 10:00am (PDT), 1:00pm (EDT), 7:00pm (CEST) Alzheimer’s disease is the most common cause of dementia and the seventh leading cause of death in the United...
Chromatin Immunoprecipitation, coupled with sequencing, has shaped our understanding of how transcriptional machinery interacts with genomes to facilitate gene regulation. These protein-DNA...
Date: April 15, 2021 Time: 8:00am PST Stem cell’s unique properties confer them a multitude of potential applications in the fields of cellular therapy, disease modelling and drug scre...
Reactive oxygen species (ROS) are well-known for their detrimental effects leading to oxidative stress, cell death, aging, and degenerative disorders. However, there is increasing evidence t...
DATE: March 24, 2020 TIME: 11:00am PT, 2:00pm ET While in vitro cell culture has long been used to study neurological diseases, researchers have come to the realization that 2-D systems do n...
Learning is often an emotional process. Emotional stimuli with different valences, such as threat and reward, can transform an otherwise neutral sensory input into one that can trigger disti...
Brain function is remarkably reliable despite the imprecise performance of neurons, and the continuous perturbations caused by aging, disease or injury. How does the brain succeed in produci...
DATE: June 19, 2019TIME: 11:00am PDT, 2:00pm EDT Abstract:...
DATE: June 19, 2019TIME: 10:00am PDT, 1:00pm EDT As we develop new methods to create more biologically relevant models for research in understanding disease etiology and in...
Generation of robust iPSC-derived neural stem cell cultures and neurons with shorter maturation times provide opportunities for quick and reliable generation of neuronal in vitro models. This...
The complexity of the human brain, with thousands of neuronal types, permits the development of sophisticated behavioral repertoires, such as language, tool use, self-awareness, symbolic thou...
The use of human pluripotent stem cells (hPSCs) for in vitro disease-modeling is limited by the lack of robust and efficient protocols for the differentiation of relevant adult cell types. Pr...
DATE: October 30, 2018TIME: 8:00am PDT, 11:00am EDT Does your PSC medium support cell therapy? In this webinar, learn about Cell Therapy Systems™ (CTS...
DATE: May 3, 2018TIME: 11:00AM PDT, 2:00PM EDTWhile stress is one of the leading causes of neuropsychiatric disorders, the molecular underpinnings of how stress induces alterations in b...
The isolation of human embryonic stem cells (hESCs) and the discovery of human induced pluripotent stem cell (hiPSC) reprogramming have sparked a renaissance in stem cell biology, in vitro di...
The capacity to generate disease-relevant cell populations from human pluripotent stem cells has tremendous potential for shedding light on human disease mechanisms. I will discuss basic prin...
My talk shall encompass how the stem cell research field has evolved from embryonic stem cells to adult stem cells and currently induced pluripotent stem cells with special reference to the f...
Therapeutic development for human diseases continues to face obstacles, particularly in translating targets or compounds identified by in vitro screening campaigns to valid targets or efficac...