285 results on '"Baum, Bruce J."'
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2. Supplementary Table 1, Supplementary Figures 1 through 9, and Supplementary Materials and Methods from Radiation-Induced Loss of Salivary Gland Function Is Driven by Cellular Senescence and Prevented by IL6 Modulation
3. Supplementary Table 1, Supplementary Figures 1 through 9, and Supplementary Materials and Methods from Radiation-Induced Loss of Salivary Gland Function Is Driven by Cellular Senescence and Prevented by IL6 Modulation
4. Ahead of her time: The multidimensional impact of Marie Ussing Nylen
5. Gene Therapy for Radiation-Induced Salivary Hypofunction
6. Gene Therapy of Salivary Diseases
7. Gene Therapy for Xerostomia
8. Xerostomia
9. Gene Therapy of Salivary Diseases
10. Evaluation of Promoters for Use in Tissue-Specific Gene Delivery
11. Gene Transfer to Salivary Glands
12. Foreword
13. [3] Dispersed salivary gland acinar cell preparations for use in studies of neuroreceptor-coupled secretory events
14. Preface
15. Professor Crispian Scully
16. Outcomes From the NIH Clinical Research Training Program
17. Radiation-Induced Loss of Salivary Gland Function Is Driven by Cellular Senescence and Prevented by IL6 Modulation
18. Radiation‐induced salivary hypofunction may become a thing of the past
19. Advances in salivary gland gene therapy – oral and systemic implications
20. Training specialists in oral medicine
21. 325. Persistence of hAQP1 Expression in Human Salivary Gland Cells Following AdhAQP1 Transduction Is Associated With a Lack of Methylation of hCMV Promoter
22. Crown-Size Reduction in Congenital Defects
23. Aquaporin-1 Gene Transfer to Correct Radiation-Induced Salivary Hypofunction
24. Saliva Secretion and Composition
25. Oral Diseases; 20 years on
26. Salivary gland gene therapy: Personal reflections
27. Integration of the Hybrid Adenoretroviral Vector AdLTR-luc Involves Both MoMLV Elements Flanking the Transgene
28. All Human EF1α Promoters Are Not Equal: Markedly Affect Gene Expression in Constructs from Different Sources
29. Recovery of Radiation-Induced Dry Eye and Corneal Damage by Pretreatment with Adenoviral Vector-Mediated Transfer of Erythropoietin to the Salivary Glands in Mice
30. Expression and Secretion of Human Proinsulin-B10 from Mouse Salivary Glands: Implications for the Treatment of Type I Diabetes Mellitus
31. Early responses to adenoviral-mediated transfer of the aquaporin-1 cDNA for radiation-induced salivary hypofunction
32. Distribution of Y-Receptors in Murine Lingual Epithelia
33. Pharmacological Protection From Radiation ± Cisplatin-Induced Oral Mucositis
34. A Novel Hybrid Adenoretroviral Vector with More Extensive E3 Deletion Extends Transgene Expression in Submandibular Glands
35. Gene delivery in salivary glands: From the bench to the clinic
36. Salivary PYY: A Putative Bypass to Satiety
37. Assessment of the Safety and Biodistribution of a Regulated AAV2 Gene Transfer Vector after Delivery to Murine Submandibular Glands
38. Prevention of Radiation-Induced Salivary Hypofunction Following hKGF Gene Delivery to Murine Submandibular Glands
39. Microchimerism in Salivary Glands after Blood- and Marrow-Derived Stem Cell Transplantation
40. Clinical Management of Salivary Gland Hypofunction and Xerostomia in Head-and-Neck Cancer Patients: Successes and Barriers
41. Effect of Irradiation on Microvascular Endothelial Cells of Parotid Glands in the Miniature Pig
42. Systemic Delivery of Bioactive Glucagon-Like Peptide 1 after Adenoviral-Mediated Gene Transfer in the Murine Salivary Gland
43. Salivary epithelial cells: An unassuming target site for gene therapeutics
44. Conditional overexpression of TGF-β1 disrupts mouse salivary gland development and function
45. Radioprotectors and Mitigators of Radiation-Induced Normal Tissue Injury
46. Production and sorting of transgenic, modified human parathyroid hormone in vivo in rat salivary glands
47. Transient detection of E1-containing adenovirus in saliva after the delivery of a first-generation adenoviral vector to human parotid gland
48. Development of a gene transfer-based treatment for radiation-induced salivary hypofunction
49. In vivo veritas: the power of in situ manipulation of cells in a living animal. Focus on “Expression of plasmid DNA in the salivary gland epithelium: novel approaches to study dynamic cellular processes in live animals”
50. Prevention of Radiation-Induced Oral Mucositis after Adenoviral Vector–Mediated Transfer of the Keratinocyte Growth Factor cDNA to Mouse Submandibular Glands
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