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1. Vaccine hesitancy or hesitancies? A latent class analysis of pediatric patients' parents

2. Development of a clinical and translational research curriculum for undergraduate students

3. Using Focused Ethnography to Inform Biomedical Research Infrastructure Enhancement at Primarily Undergraduate Institutions

4. Impact of the INBRE summer student mentored research program on undergraduate students in Arkansas

5. Impact of estrogen and photoperiod on arginine vasotocin and VT3 receptor expression in the shell gland of quail

6. Distribution of the Vasotocin Subtype Four Receptor (VT4R) in the Anterior Pituitary Gland of the Chicken,Gallus gallus, and its Possible Role in the Avian Stress Response

7. Age-dependent expression of AVT and its oxytocic-like receptor VT3 in the shell gland of Japanese quail, Coturnix coturnix japonica

8. Effect of estrogen and its antagonist on the expression of arginine vasotocin (AVT) and its oxytocic-like receptor VT3 in the shell gland of Japanese quail, Coturnix coturnix japonica

9. Immunohistochemical characterization of chicken pituitary cells containing the vasotocin VT2 receptor

10. Effect of photoperiod and estrogen on expression of arginine vasotocin and its oxytocic-like receptor in the shell gland of the Japanese quail

11. Heterooligomerization between Vasotocin and Corticotropin-Releasing Hormone (CRH) Receptors Augments CRH-Stimulated 3′,5′-Cyclic Adenosine Monophosphate Production

12. The β-agonist isoproterenol attenuates EGF-stimulated wound closure in human airway epithelial cells

13. The cloned avian neurohypophysial hormone receptors

14. Characterization and immunohistochemical visualization of the vasotocin VT2 receptor in the pituitary gland of the chicken, Gallus gallus

15. Molecular cloning and functional characterization of a vasotocin receptor subtype expressed in the pituitary gland of the domestic chicken (Gallus domesticus): avian homolog of the mammalian V1b-vasopressin receptor

16. EXPRESSION OF FUNCTIONAL ß2-ADRENERGIC RECEPTORS IN A RAT AIRWAY EPITHELIAL CELL LINE (SPOC1) AND CELL DENSITY-DEPENDENT INDUCTION BY GLUCOCORTICOIDS

17. A Sexual Dimorphism in Hypothalamic Arginine Vasotocin (AVT) Gene Expression and AVT Plasma Levels in the Japanese Quail (Coturnix coturnix japonica) in Response to Water Deprivation

18. Molecular Cloning and Functional Characterization of a Vasotocin Receptor Subtype That Is Expressed in the Shell Gland and Brain of the Domestic Chicken1

19. c-fos Expression in the forebrain and brainstem of White Leghorn hens following osmotic and cardiovascular challenges

20. Transcription of the β2-adrenergic receptor gene in rat liver is regulated during early postnatal development by an upstream repressor element

21. Arginine Vasotocin Gene Expression and Secretion during Osmotic Stimulation and Hemorrhagic Hypotension in Hens

22. Evidence for Alternative Splicing in Hepatic α1B-Adrenergic Receptor Gene Expression

23. Arginine Vasotocin Gene Expression in Hypothalamic Neurons is Up-Regulated in Chickens Drinking Hypertonic Saline: An In Situ Hybridization Study

24. Structural and functional analysis of the 5′-flanking region of the rat β2-adrenergic receptor gene

25. Association of hepatic ?2-adrenergic receptor gene transcript destabilization during postnatal development in the sprague-dawley rat with a Mr 85,000 protein that binds selectively to the ?2-adrenergic receptor mRNA 3?-untranslated region

26. Regulation of the β2-Adrenergic Receptor and its Mrna in the Rat Lung by Dexamethasone

27. A possible mechanism contributing to the synergistic action of vasotocin (VT) and corticotropin-releasing hormone (CRH) receptors on corticosterone release in birds

28. Effects of the β-agonist, isoprenaline, on the down-regulation, functional responsiveness and trafficking of β2-adrenergic receptors with N-terminal polymorphisms

29. An in situ hybridization and immunohistochemical study of vasotocin neurons in the hypothalamus of water-deprived chickens

30. Two α1b-Adrenergic Receptor Mrnas Expressed in Sprague-Dawley Rat Liver Have Distinct 5′-Regions

31. Transcriptional and posttranscriptional regulation of hepatic ?2-adrenergic receptor gene expression during development

32. Aging: changes in cardiac α1-adrenoceptor responsiveness and

33. Alternative mRNAs Encoding the α1b-Adrenergic Receptor are Expressed in a Tissue-Dependent Manner in the Sprague-Dawley Rat

34. Transmembrane domain IV of the Gallus gallus VT2 vasotocin receptor is essential for forming a heterodimer with the corticotrophin releasing hormone receptor

35. Osmotic stress induced alteration in the expression of arginine vasotocin receptor VT2 in the pituitary gland and adrenal function of domestic fowl

36. Characterization of a panel of six β2-adrenergic receptor antibodies by indirect immunofluorescence microscopy

37. Transmembrane Domain IV of the Gallus gallus VT2 Vasotocin Receptor is Essential for Forming a Heterodimer with the Corticotrophin Releasing Hormone Receptor

39. Detection by Northern analysis of α1-adrenergic receptor gene transcripts in the rat

40. Specific binding sites for prohormone atrial natriuretic peptides 1–30, 31–67 and 99–126

41. Molecular cloning of an oxytocin-like receptor expressed in the chicken shell gland

42. Chromosomal assignment and mapping of the Vasotocin Receptor 1, homologue to the mammalian V1a and Vasotocin Receptor 2 homologue to the mammalian V1b receptors in the domestic fowl

43. Identification of a glucocorticoid response element in the rat beta2-adrenergic receptor gene

44. Changes in poly(A) tail length of arginine vasotocin messenger ribonucleic acid in the hypothalamus of water-deprived chickens

45. Regulation of alpha 1b-adrenergic receptor gene expression in rat liver cell lines

46. Arginine vasotocin gene expression in neuroendocrine, reproductive and gastrointestinal tissues of the domestic fowl: detection by reverse transcriptase polymerase chain reaction

47. Steady state levels of hepatic alpha 1- and beta 2-adrenergic receptors and gene transcripts during development of the male rat

48. Identification of the vasotocin VT2 receptors in the pituitary gland and their implication in the functions of the HPA axis of chickens

50. 263 EX VIVO ANALYSIS OF AIRWAY CONTRACTION AND RELAXATION BY A β-AGONIST

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