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106 results on '"Mirko Peitzsch"'

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1. Metabolomic profiling of pheochromocytomas in dogs: Catecholamine phenotype and tricarboxylic acid cycle metabolites

2. Association of adrenal steroids with metabolomic profiles in patients with primary and endocrine hypertension

3. A Humanized and Viable Animal Model for Congenital Adrenal Hyperplasia–CYP21A2-R484Q Mutant Mouse

4. Succinate mediates inflammation-induced adrenocortical dysfunction

5. Crosstalk between androgen receptor and WNT/β-catenin signaling causes sex-specific adrenocortical hyperplasia in mice

6. Innovative multidimensional models in a high-throughput-format for different cell types of endocrine origin

7. Correction: Sigala et al. A Comprehensive Investigation of Steroidogenic Signaling in Classical and New Experimental Cell Models of Adrenocortical Carcinoma. Cells 2022, 11, 1439

8. Machine learning for classification of hypertension subtypes using multi-omics: A multi-centre, retrospective, data-driven study

9. Optimized procedures for testing plasma metanephrines in patients on hemodialysis

10. Biochemical Diagnosis of Catecholamine-Producing Tumors of Childhood: Neuroblastoma, Pheochromocytoma and Paraganglioma

11. Adrenocortical Tumors and Pheochromocytoma/Paraganglioma Initially Mistaken as Neuroblastoma—Experiences From the GPOH-MET Registry

12. Developmental endothelial locus-1 protects from hypertension-induced cardiovascular remodeling via immunomodulation

13. Generation and characterization of a mitotane-resistant adrenocortical cell line

14. Plasma Metabolome Profiling for the Diagnosis of Catecholamine Producing Tumors

15. Long-Term Excessive Dietary Phosphate Intake Increases Arterial Blood Pressure, Activates the Renin–Angiotensin–Aldosterone System, and Stimulates Sympathetic Tone in Mice

16. The longevity gene mIndy (I’m Not Dead, Yet) affects blood pressure through sympathoadrenal mechanisms

17. A Comprehensive Investigation of Steroidogenic Signaling in Classical and New Experimental Cell Models of Adrenocortical Carcinoma

18. Pheochromocytoma Concealed By Chronic Methamphetamine Abuse

19. Differential Responses of Urinary Epinephrine and Norepinephrine to 24-h Shift-Work Stressor in Physicians

20. Targeted Quantification of Carbon Metabolites Identifies Metabolic Progression Markers and an Undiagnosed Case of SDH-Deficient Clear Cell Renal Cell Carcinoma in a German Cohort

21. Compensation for chronic oxidative stress in ALADIN null mice

22. Report from the HarmoSter study

23. Integration of artificial intelligence and plasma steroidomics with laboratory information management systems: application to primary aldosteronism

24. Plasma Steroid Profiling in Patients With Adrenal Incidentaloma

25. Effect of Dietary Sodium Modulation on Pig Adrenal Steroidogenesis and Transcriptome Profiles

26. CYP21A2 Gene Expression in a Humanized 21-Hydroxylase Mouse Model Does Not Affect Adrenocortical Morphology and Function

27. Report from the HarmoSter study:Impact of calibration on comparability of LC-MS/MS measurement of circulating cortisol, 17OH-progesterone and aldosterone

28. Mass spectrometry-based steroid profiling in primary bilateral macronodular adrenocortical hyperplasia

29. The RNA binding protein human antigen R is a gatekeeper of liver homeostasis

30. Strain-specific metastatic phenotypes in pheochromocytoma allograft mice

31. Optimized procedures for diagnostic testing for pheochromocytoma and paraganglioma in patients on hemodialysis

32. HIF1α is a direct regulator of steroidogenesis in the adrenal gland

33. HIF2α regulates the synthesis and release of epinephrine in the adrenal medulla

34. GLS-driven glutamine catabolism contributes to prostate cancer radiosensitivity by regulating the redox state, stemness and ATG5-mediated autophagy

35. The longevity gene mIndy (I’m Not Dead, Yet) affects blood pressure through sympathoadrenal mechanisms

36. GLS-driven glutamine catabolism contributes to prostate cancer radiosensitivity by regulating the redox state, stemness and ATG5-mediated autophagy

37. Harmonization of LC-MS/MS Measurements of Plasma Free Normetanephrine, Metanephrine, and 3-Methoxytyramine

38. Plasma metanephrines and prospective prediction of tumor location, size and mutation type in patients with pheochromocytoma and paraganglioma

39. Mutation of the Cell Cycle Regulator p27kip1 Drives Pseudohypoxic Pheochromocytoma Development

40. Mass spectrometry imaging identifies metabolic patterns associated with malignant potential in pheochromocytoma and paraganglioma

41. Hypoxia pathway proteins regulate the synthesis and release of epinephrine in the mouse adrenal gland

42. Obesity-associated lipidomic remodeling of the adrenal gland indicates an important role of the FADS2-arachidonic acid axis in adrenocortical hormone production

43. Differential Responses of Urinary Epinephrine and Norepinephrine to 24-h Shift-Work Stressor in Physicians

44. HIF1α is an essential regulator of steroidogenesis in the adrenal gland

45. SUN-222 Pre- and Post-Pubertal Reference Ranges for Oxygenated Androgens in Saliva

46. Metabolomics, machine learning and immunohistochemistry to predict succinate dehydrogenase mutational status in phaeochromocytomas and paragangliomas

48. Mass spectrometry reveals misdiagnosis of primary aldosteronism with scheduling for adrenalectomy due to immunoassay interference

49. Overnight/first-morning urine free metanephrines and methoxytyramine for diagnosis of pheochromocytoma and paraganglioma: is this an option?

50. Plasma Steroid Metabolome Profiling for Diagnosis and Subtyping Patients with Cushing Syndrome

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