98 results on '"Balapattabi, Kirthikaa"'
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2. Krüppel-like factor 4 (KLF4) in Transcriptional Control of The Three Unique Isoforms of Agouti-Related Peptide (Agrp) in Mice
3. Krüppel-like factor 4 in transcriptional control of the three unique isoforms of Agouti-related peptide in mice.
4. Single-Nucleus RNA Sequencing of the Hypothalamic Arcuate Nucleus of C57BL/6J Mice After Prolonged Diet-Induced Obesity
5. β-Arrestin–Biased Agonist Targeting the Brain AT1R (Angiotensin II Type 1 Receptor) Increases Aversion to Saline and Lowers Blood Pressure in Deoxycorticosterone Acetate–Salt Hypertension
6. Angiotensin AT1A Receptor Signaling in AgRP Neurons in Metabolism Control
7. Altered control of AgRP and metabolic rate during obesity via ERK and KLF4
8. Cardiometabolic Consequences of Deleting the Regulator of G protein Signaling-2 ( Rgs2 ) From Cells Expressing Agouti-Related Peptide or the ANG (Angiotensin) II Type 1A Receptor in Mice
9. Chronic intracerebroventricular infusion of angiotensin II causes dose- and sex-dependent effects on intake behaviors and energy homeostasis in C57BL/6J mice
10. Case report: A rare occurrence of triple malignancy of the stomach, rectum and liver in a single patient
11. Abstract 108: Altered Erk / Klf4-mediated Control Of Agrp And Metabolic Rate During Obesity
12. Abstract P040: Angiotensin II Type 1 Receptor Is Expressed In Agouti-related Peptide Neurons Of The Hypothalamic Arcuate Nucleus Within Adult Human Brain
13. Abstract 114: Metabolic Adaptation During Obesity Is Associated With G Protein Switching By The Angiotensin At1a Receptor In Agrp Neurons
14. Patch-to-Seq and Transcriptomic Analyses Yield Molecular Markers of Functionally Distinct Brainstem Serotonin Neurons
15. Cardiometabolic effects of DOCA-salt in male C57BL/6J mice are variably dependent on sodium and nonsodium components of diet
16. Melanocortin MC4R receptor is required for energy expenditure but not blood pressure effects of angiotensin II within the mouse brain
17. Altered ERK‐mediated control of AgRP and metabolic rate during obesity
18. Cardiometabolic Consequences of Deleting the Regulator of G protein Signaling-2 ( ) From Cells Expressing Agouti-Related Peptide or the ANG (Angiotensin) II Type 1A Receptor in Mice.
19. Abstract P157: Altered ERK-mediated Control Of AgRP And Metabolic Rate During Obesity
20. Abstract P249: Angiotensin At1a Receptor Signaling In Agrp Neurons In Metabolism Control
21. Chronic intracerebroventricular infusion of angiotensin II causes dose- and sexdependent effects on intake behaviors and energy homeostasis in C57BL/6J mice.
22. Melanocortin MC4R receptor is required for energy expenditure but not blood pressure effects of angiotensin II within the mouse brain.
23. Dissociable effects of dietary sodium in early life upon somatic growth, fluid homeostasis, and spatial memory in mice of both sexes
24. β-Arrestin–Biased Agonist Targeting the Brain AT 1 R (Angiotensin II Type 1 Receptor) Increases Aversion to Saline and Lowers Blood Pressure in Deoxycorticosterone Acetate–Salt Hypertension
25. Quantification of body fluid compartmentalization by combined time-domain nuclear magnetic resonance and bioimpedance spectroscopy
26. Abstract P249: ICV Infusion Of AgRP Modulates Feeding Behavior And Energy Expenditure In Mice
27. Abstract MP47: Cardiac Compensation And Altered CREB/ERK Signaling Within The Arcuate Nucleus In The C57BL/6J Mouse Model Of Selective Leptin Resistance
28. Exploration of cardiometabolic and developmental significance of angiotensinogen expression by cells expressing the leptin receptor or agouti-related peptide
29. Sex Differences in the Regulation of Vasopressin and Oxytocin Secretion in Bile Duct-Ligated Rats
30. CREB and ERK Activation by Leptin and Angiotensin in the GT1‐7 Cell Model by Capillary Electrophoresis‐Based Western Blotting
31. Role of Estrogen Receptors in a Model of Dilutional Hyponatremia
32. Assessing the Effects of Leptin and Angiotensin II Upon Expression of Agouti‐Related Peptide in the GT1‐7 Cell Model
33. Common Laboratory Chow Diets Differentially Affect Energy Homeostasis and Modify Metabolic and Electrolyte Balance Effects of DOCA‐salt in Wildtype Mice
34. Chronic Low‐Dose ICV Infusion of Agrp in Mice May Suppress Indices of Resting Metabolism in Brown Adipose Tissue Independent of Effects on Feeding Behavior
35. Brain-Derived Neurotrophic Factor and Supraoptic Vasopressin Neurons in Hyponatremia
36. Effects of salt‐loading on supraoptic vasopressin neurones assessed by ClopHensorN chloride imaging
37. OR06-4 Brain Derived Neurotrophic Factor in the Regulation of Supraoptic Vasopressin Neurons in Development of Hyponatremia
38. Sex Difference and Hormones in the Regulation of Vasopressin Secretion during Dilutional Hyponatremia
39. Intracellular Chloride Regulation of Supraoptic Vasopressin Neurons during Salt Loading
40. Sex Differences in the Regulation of Vasopressin and Oxytocin Secretion in Bile Duct-Ligated Rats.
41. β-Arrestin-Biased Agonist Targeting the Brain AT1R (Angiotensin II Type 1 Receptor) Increases Aversion to Saline and Lowers Blood Pressure in Deoxycorticosterone Acetate-Salt Hypertension.
42. Brain-Derived Neurotrophic Factor and Supraoptic Vasopressin Neurons in Hyponatremia.
43. Exploration of cardiometabolic and developmental significance of angiotensinogen expression by cells expressing the leptin receptor or agoutirelated peptide.
44. AT1a influences GABAA-mediated inhibition through regulation of KCC2 expression
45. High salt loading increases brain derived neurotrophic factor in supraoptic vasopressin neurones
46. Virally Mediated ClopHensorN Chloride Imaging in the Supraoptic Vasopressin Neurons
47. Role of Brain Derived Neurotrophic Factor in the Supraoptic Nucleus on Response to Salt Loading
48. AT1a influences GABAA-mediated inhibition through regulation of KCC2 expression.
49. Angiotensin AT1Areceptor signal switching in Agouti-related peptide neurons mediates metabolic rate adaptation during obesity
50. Mitochondrial-targeted antioxidant attenuates preeclampsia-like phenotypes induced by syncytiotrophoblast-specific Gαq signaling.
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