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34 results on '"Dao Pan"'

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1. Synthesis and antiviral activity of lycorine derivatives

2. New function of a well-known promoter: Enhancer activity of minimal CMV promoter enables efficient dual-cassette transgene expression

3. Loss of BRUCE reduces cellular energy level and induces autophagy by driving activation of the AMPK-ULK1 autophagic initiating axis

4. RUNX represses Pmp22 to drive neurofibromagenesis

5. Hematopoietic Stem cell transplantation and lentiviral vector‐based gene therapy for Krabbe's disease: Present convictions and future prospects

6. Comprehensive evaluation of blood-brain barrier-forming micro-vasculatures: Reference and marker genes with cellular composition

7. Normalization and Improvement of CNS Deficits in Mice With Hurler Syndrome After Long-term Peripheral Delivery of BBB-targeted Iduronidase

8. The Removal of Mercury from Wasterwater by Using Fishwater Fish Scales

9. Synthesis and antitumor activity of novel substituted uracil-1'(N)-acetic acid ester derivatives of 20(S)-camptothecins

10. Correction of metabolic, craniofacial, and neurologic abnormalities in MPS I mice treated at birth with adeno-associated virus vector transducing the human α-l-iduronidase gene

11. Improved gene transfer and normalized enzyme levels in primitive hematopoietic progenitors from patients with mucopolysaccharidosis type I using a bioreactor

12. Biodistribution and Toxicity Studies of VSVG-Pseudotyped Lentiviral Vector after Intravenous Administration in Mice with the Observation of in Vivo Transduction of Bone Marrow

13. Platelets are efficient and protective depots for storage, distribution, and delivery of lysosomal enzyme in mice with Hurler Syndrome

14. Retroviral vector design studies toward hematopoietic stem cell gene therapy for mucopolysaccharidosis type I

15. Closed hollow-fiber bioreactor: a new approach to retroviral vector production

16. Real-Time Quantitative Polymerase Chain Reaction to Assess Gene Transfer

17. Mobilization and Transduction of Peripheral Blood Progenitor Cells in Patients with Mucopolysaccharidosis I

18. Retroviral transduction of peripheral blood leukocytes in a hollow- fiber bioreactor

19. Engineering a lysosomal enzyme with a derivative of receptor-binding domain of apoE enables delivery across the blood–brain barrier

20. Preclinical Studies of Lymphocyte Gene Therapy for Mild Hunter Syndrome (Mucopolysaccharidosis Type II)

21. Secreted luciferase for in vivo evaluation of systemic protein delivery in mice

22. K-Cl Cotransporter Gene Expression during Human and Murine Erythroid Differentiation*

23. Cell- and gene-based therapeutic approaches for neurological deficits in mucopolysaccharidoses

24. Rac1 and Rac2 GTPases are necessary for early erythropoietic expansion in the bone marrow but not in the spleen

25. Reprogramming erythroid cells for lysosomal enzyme production leads to visceral and CNS cross-correction in mice with Hurler syndrome

26. In Situ (In Vivo) Gene Transfer into Murine Bone Marrow Stem Cells

27. Co-expression of MGMT(P140K) and alpha-L-iduronidase in primary hepatocytes from mucopolysaccharidosis type I mice enables efficient selection with metabolic correction

28. In Vivo Gene Transfer into Adult Stem Cells in Unconditioned Mice by in Situ Delivery of a Lentiviral Vector

29. Combined ultrafiltration-transduction in a hollow-fiber bioreactor facilitates retrovirus-mediated gene transfer into peripheral blood lymphocytes from patients with mucopolysaccharidosis type II

30. Platelets: An Efficient Depot for Generation and Distribution of Lysosomal Idua in Enzyme-Deficient MPS I Mice

31. High Level Production of a Lysosomal Enzyme from HSC-Derived Erythroid Cells for Therapeutic Correction of Hurler Syndrome in Mice

32. 97. Translational Studies toward Optimizing In Vivo Bone Marrow Stem Cell Gene Transfer Using Lentiviral Vector

33. 6. In Vivo Adult Stem Cell Gene Transfer in Mice by In Situ Delivery of a Self-Inactivating Lentiviral Vector Using Intrafemoral Injection

34. In Vivo Bone Marrow Stem Cell Gene Transfer in Mice by In Situ Delivery of a 3rd-Generation Lentiviral Vector Using Intrafemoral Injection

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