9 research outputs found

    Small Molecules Greatly Improve Conversion of Human-Induced Pluripotent Stem Cells to the Neuronal Lineage

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    Efficient in vitro differentiation into specific cell types is more important than ever after the breakthrough in nuclear reprogramming of somatic cells and its potential for disease modeling and drug screening. Key success factors for neuronal differentiation are the yield of desired neuronal marker expression, reproducibility, length, and cost. Three main neuronal differentiation approaches are stromal-induced neuronal differentiation, embryoid body (EB) differentiation, and direct neuronal differentiation. Here, we describe our neurodifferentiation protocol using small molecules that very efficiently promote neural induction in a 5-stage EB protocol from six induced pluripotent stem cells (iPSC) lines from patients with Parkinson's disease and controls. This protocol generates neural precursors using Dorsomorphin and SB431542 and further maturation into dopaminergic neurons by replacing sonic hedgehog with purmorphamine or smoothened agonist. The advantage of this approach is that all patient-specific iPSC lines tested in this study were successfully and consistently coaxed into the neural lineage

    Cutaneous Rosai-Dorfman disease: A separate clinical entity

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    Rosai-Dorfman disease is a benign, self-limited non-Langerhans cell histiocytosis of unknown etiology. Its most common clinical feature is extraordinary massive painless cervical lymphadenopathy. This entity may be limited to the lymph nodes; however, more than 40% of patients have extranodal involvement, with the skin being the most frequently affected site. Cutaneous disease without the presence of lymphadenopathy is extremely rare but has been reported. We report the intriguing case of exclusively cutaneous Rosai-Dorfman disease in an 80-year-old African-American woman

    Human oncoviruses: Mucocutaneous manifestations, pathogenesis, therapeutics, and prevention

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