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			<title>Download | Generation of Alzheimer’s Disease Model Using Human iPSC-Derived Neurons and Astrocytes Produced by a Transcription Factor-Based Differentiation Protocol</title>
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			<title>Human iPSC-Derived Tri-Culture System of Excitatory Neurons, Astrocytes, and Microglia Enabled by Quick-Tissue™ Technology for Functional Neuroinflammation Modeling</title>
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			<title>Rapid Differentiation of Functional Microglia from Human iPSCs by Transduction of Transcription Factors Using Sendai Virus</title>
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			<title>2D and 3D iPSC-Derived Platforms for Neurotoxicity Screening Demonstrate Compound Effects on Calcium Activity, Synapses, Viability, and Cell Proliferation</title>
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			<title>Anti-Retroviral Therapy is Toxic to iPSC-Derived NPCs In Vitro and Alters Neuronal Calcium Transients in Differentiated NPCs</title>
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			<title>Application of Rapid iPSC Differentiation to Neurotoxicity Assays</title>
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			<guid><![CDATA[https://biosciences.ricoh.com/resource/development-of-electrophysiological-toxicity-assay-system-with-ipsc-derived-gabaergic-neurons-generated-by-a-rapid-differentiation-method-safety-pharmacology-society-2023/]]></guid>
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			<title>Download | Establishment of High-Throughput Toxicity Assay System with iPSC-derived GABAergic Neurons Generated by a Rapid Differentiation Method</title>
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			<title>Establishment of High-Throughput Toxicity Assay System with iPSC-derived GABAergic Neurons Generated by a Rapid Differentiation Method</title>
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			<title>Download | Development of Electrophysiological Toxicity Assay System with iPSC-Derived GABAergic Neurons Generated by a Rapid Differentiation Method</title>
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			<title>Establishment of High-Throughput Toxicity Assay System with iPSC-derived GABAergic Neurons Generated by a Rapid Differentiation Method (Safety Pharmacology Society 2023)</title>
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			<guid><![CDATA[https://biosciences.ricoh.com/resource/human-ipsc-derived-tri-culture-system-of-excitatory-neurons-astrocytes-and-microglia-enabled-by-quick-tissue-technology-for-functional-neuroinflammation-modeling/]]></guid>
			<link><![CDATA[https://biosciences.ricoh.com/resource/human-ipsc-derived-tri-culture-system-of-excitatory-neurons-astrocytes-and-microglia-enabled-by-quick-tissue-technology-for-functional-neuroinflammation-modeling/]]></link>
			<title>Human iPSC-Derived Tri-Culture System of Excitatory Neurons, Astrocytes, and Microglia Enabled by Quick-Tissue™ Technology for Functional Neuroinflammation Modeling</title>
			<pubDate><![CDATA[Fri, 28 Aug 2026 13:05:12 +0000]]></pubDate>
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