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2. Mechanical Strain Promotes Oligodendrocyte Differentiation by Global Changes of Gene Expression

3. A synthetic transcription platform for programmable gene expression in mammalian cells.

4. Systemic biodistribution and hepatocyte-specific gene editing with CRISPR/Cas9 using hyaluronic acid-based nanoparticles.

5. Genetic rearrangement during site specific integration event facilitates cell line development of a bispecific molecule.

6. Fc-GDF15 glyco-engineering and receptor binding affinity optimization for body weight regulation.

7. Discovery and optimization of a novel anti-GUCY2c x CD3 bispecific antibody for the treatment of solid tumors.

8. Engineering protein-protein devices for multilayered regulation of mRNA translation using orthogonal proteases in mammalian cells.

9. Engineering modular intracellular protein sensor-actuator devices.

10. A multi-landing pad DNA integration platform for mammalian cell engineering.

11. A novel Bxb1 integrase RMCE system for high fidelity site-specific integration of mAb expression cassette in CHO Cells.

12. Mechanical Strain Promotes Oligodendrocyte Differentiation by Global Changes of Gene Expression.

13. Mammalian synthetic circuits with RNA binding proteins for RNA-only delivery.

14. Systematic transfer of prokaryotic sensors and circuits to mammalian cells.

15. A platform for rapid prototyping of synthetic gene networks in mammalian cells.

16. Rapid, modular and reliable construction of complex mammalian gene circuits.

17. Learning Protein Folding Energy Functions.

18. Multi-input RNAi-based logic circuit for identification of specific cancer cells.

19. Protein model refinement using an optimized physics-based all-atom force field.

20. Development of a physics-based force field for the scoring and refinement of protein models.

21. Can a physics-based, all-atom potential find a protein's native structure among misfolded structures? I. Large scale AMBER benchmarking.

22. Analysis of TASSER-based CASP7 protein structure prediction results.

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