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Your search keyword '"Goh, Pollyanna"' showing total 23 results

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23 results on '"Goh, Pollyanna"'

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2. Targeting Histone Demethylases in MYC-Driven Neuroblastomas with Ciclopirox

3. Patient-specific Alzheimer-like pathology in trisomy 21 cerebral organoids reveals BACE2 as a gene dose-sensitive AD suppressor in human brain

4. Mislocalisation of BEST1 in iPSC-derived retinal pigment epithelial cells from a family with autosomal dominant vitreoretinochoroidopathy (ADVIRC).

5. Mislocalisation of BEST1 in iPSC-derived retinal pigment epithelial cells from a family with autosomal dominant vitreoretinochoroidopathy (ADVIRC)

6. Cerebral organoids with chromosome 21 trisomy secrete Alzheimer’s disease-related soluble aggregates detectable by single-molecule-fluorescence and super-resolution microscopy

9. Correction: Patient-specific Alzheimer-like pathology in trisomy 21 cerebral organoids reveals BACE2 as a gene dose-sensitive AD suppressor in human brain

10. Data from Targeting Histone Demethylases in MYC-Driven Neuroblastomas with Ciclopirox

11. Figure S1-S6, Table S1-S2 from Targeting Histone Demethylases in MYC-Driven Neuroblastomas with Ciclopirox

14. Alzheimer‐like pathology in trisomy 21 cerebral organoids amenable to pharmacological inhibition reveals BACE2 as a gene‐dose‐sensitive AD‐suppressor in human brain

16. Differential Coassembly of α1-GABAARs Associated with Epileptic Encephalopathy.

18. [P3-168]: GENETIC DISSECTION OF SEVERITY AND ONSET MODULATORS FOR ALZHEIMER's PATHOLOGY IN DOWN SYNDROME USING CELLULAR SYSTEMS

19. Brief Report: Isogenic Induced Pluripotent Stem Cell Lines From an Adult With Mosaic Down Syndrome Model Accelerated Neuronal Ageing and Neurodegeneration

20. GENETIC DISSECTION OF SEVERITY AND ONSET MODULATORS FOR ALZHEIMER’S PATHOLOGY IN DOWN SYNDROME USING CELLULAR SYSTEMS

22. Brief Report: Isogenic Induced Pluripotent Stem Cell Lines From an Adult With Mosaic Down Syndrome Model Accelerated Neuronal Ageing and Neurodegeneration.

23. Generation of Integration-Free Patient Specific iPS Cells Using Episomal Plasmids Under Feeder Free Conditions.

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