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43 results on '"Gough G"'

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1. Additional file 13 of The swan genome and transcriptome, it is not all black and white

2. Additional file 16 of The swan genome and transcriptome, it is not all black and white

3. Additional file 4 of The swan genome and transcriptome, it is not all black and white

4. Additional file 14 of The swan genome and transcriptome, it is not all black and white

5. Additional file 5 of The swan genome and transcriptome, it is not all black and white

6. Additional file 1 of The swan genome and transcriptome, it is not all black and white

7. Additional file 10 of The swan genome and transcriptome, it is not all black and white

8. Additional file 12 of The swan genome and transcriptome, it is not all black and white

9. Additional file 7 of The swan genome and transcriptome, it is not all black and white

10. Additional file 17 of The swan genome and transcriptome, it is not all black and white

11. Additional file 2 of The swan genome and transcriptome, it is not all black and white

12. Additional file 15 of The swan genome and transcriptome, it is not all black and white

13. Additional file 18 of The swan genome and transcriptome, it is not all black and white

14. Additional file 11 of The swan genome and transcriptome, it is not all black and white

15. Additional file 6 of The swan genome and transcriptome, it is not all black and white

16. Additional file 3 of The swan genome and transcriptome, it is not all black and white

17. Additional file 8 of The swan genome and transcriptome, it is not all black and white

18. Additional file 19 of The swan genome and transcriptome, it is not all black and white

19. A Time-Series Metabolomic Analysis of SARS-CoV-2 Infection in a Ferret Model

20. Type I Hypersensitivity in Ferrets Following Exposure to SARS-CoV-2 Inoculum: Lessons Learned

21. ChAdOx1 nCoV-19 (AZD1222) vaccine candidate significantly reduces SARS-CoV-2 shedding in ferrets

22. Characterisation and natural progression of SARS-CoV-2 infection in ferrets

23. In vitro characterisation of SARS-CoV-2 and susceptibility of domestic ferrets (Mustela putorius furo)

24. Experimental and in silico evidence suggests vaccines are unlikely to be affected by D614G mutation in SARS-CoV-2 spike protein

25. Oncolytic Immunotherapy for Bladder Cancer Using Coxsackie A21 Virus

26. Phase I Trial of an ICAM-1-Targeted Immunotherapeutic-Coxsackievirus A21 (CVA21) as an Oncolytic Agent Against Non Muscle-Invasive Bladder Cancer

27. Oncolytic Coxsackievirus A21 as a novel therapy for multiple myeloma

28. Enterovirus Capsid Interactions with Decay-Accelerating Factor Mediate Lytic Cell Infection

29. Systemic Therapy of Malignant Human Melanoma Tumors by a Common Cold-Producing Enterovirus, Coxsackievirus A21

30. Cellular receptor interactions of C-cluster human group A coxsackieviruses

31. Localisation of tachykinin NK1 and NK3 receptors in the human prefrontal and visual cortex

32. Phase I/II CANON study: oncolytic immunotherapy for the treatment of non-muscle invasive bladder (NMIBC) cancer using intravesical coxsackievirus A21

33. Abstract 2341: Elevated immune activity following an anticancer combination therapy of a novel oncolytic immunotherapeutic agent, CAVATAK (Coxsackievirus A21), and immune checkpoint blockade

34. Phase I/II canon study: Oncolytic immunotherapy for the treatment of non-muscle invasive bladder (NMIBC) cancer using intravesical coxsackievirus A21

35. Oncolysis of malignant human melanoma tumors by Coxsackieviruses A13, A15 and A18

36. Regional administration of oncolytic Echovirus 1 as a novel therapy for the peritoneal dissemination of gastric cancer

37. Potent oncolytic activity of human enteroviruses against human prostate cancer

38. Oncolysis of vascular malignant human melanoma tumors by Coxsackievirus A21

39. Mitochondrial DNA neutrophil extracellular traps are formed after trauma and subsequent surgery

40. Combination of a Novel Oncolytic Immunotherapeutic Agent, Coxsackievirus A21 and Pd-1 Blockade Significantly Reduces Tumor Growth and Improves Survival in an Immune Competent Mouse Melanoma Model

41. Tachykinin NK1 and NK3 receptors in the prefrontal cortex of the human brain

42. 2-chloroadenosine 5'-phosphate and 2-chloroadenosine 5'-diphosphate, pharmacologically active nucleotide analogs

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