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24 results on '"Buchholz CJ"'

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1. T-cell specific in vivo gene delivery with DART-AAVs targeted to CD8.

2. Dasatinib is a potent enhancer for CAR T cell generation by CD3-targeted lentiviral vectors.

3. Expansion of T memory stem cells with superior anti-tumor immunity by Urolithin A-induced mitophagy.

4. Precision medicine: In vivo CAR therapy as a showcase for receptor-targeted vector platforms.

5. In vivo generation of CAR T cells in the presence of human myeloid cells.

7. Oncolytic measles vaccines encoding PD-1 and PD-L1 checkpoint blocking antibodies to increase tumor-specific T cell memory.

8. Monitoring CAR T cell generation with a CD8-targeted lentiviral vector by single-cell transcriptomics.

9. Lentiviral and adeno-associated vectors efficiently transduce mouse T lymphocytes when targeted to murine CD8.

11. Quantitative assays reveal cell fusion at minimal levels of SARS-CoV-2 spike protein and fusion from without.

12. In Vivo Generation of CAR T Cells Selectively in Human CD4 + Lymphocytes.

13. GluA4-Targeted AAV Vectors Deliver Genes Selectively to Interneurons while Relying on the AAV Receptor for Entry.

14. Highly Efficient and Selective CAR-Gene Transfer Using CD4- and CD8-Targeted Lentiviral Vectors.

15. Surface-Engineered Lentiviral Vectors for Selective Gene Transfer into Subtypes of Lymphocytes.

16. A Library-Based Screening Strategy for the Identification of DARPins as Ligands for Receptor-Targeted AAV and Lentiviral Vectors.

17. Immune Modulatory Cell Therapy for Hemophilia B Based on CD20-Targeted Lentiviral Gene Transfer to Primary B Cells.

18. Enhanced lysis by bispecific oncolytic measles viruses simultaneously using HER2/neu or EpCAM as target receptors.

19. CD133-targeted gene transfer into long-term repopulating hematopoietic stem cells.

20. DARPin-targeting of measles virus: unique bispecificity, effective oncolysis, and enhanced safety.

21. Displaying high-affinity ligands on adeno-associated viral vectors enables tumor cell-specific and safe gene transfer.

22. DARPins: an efficient targeting domain for lentiviral vectors.

23. Targeted cell entry of lentiviral vectors.

24. Targeted retroviral vectors displaying a cleavage site-engineered hemagglutinin (HA) through HA-protease interactions.

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