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  1. Vitamin D Status in Distinct Types of Ichthyosis: Importance of Genetic Type and Severity of Scaling
  2. Very High Dehydroepiandrosterone Sulfate (DHEAS) in Serum of an Overweight Female Adolescent Without a Tumor
  3. Profile of bile acid subspecies is similar in blood and follicular fluid of cattle
  4. Temporal expression pattern of steroid-metabolizing enzymes in bovine COC during in vitro maturation employing different gonadotropin concentrations
  5. Higher steroid sulfation is linked to successful weight loss in obese children
  6. Estrone-3-Sulfate Stimulates the Proliferation of T47D Breast Cancer Cells Stably Transfected With the Sodium-Dependent Organic Anion Transporter SOAT (SLC10A6)
  7. Characterizing the steroidal milieu in amniotic fluid of mid-gestation: A LC–MS/MS study
  8. Cortisol, cortisone, and BDNF in amniotic fluid in the second trimester of pregnancy: Effect of early life and current maternal stress and socioeconomic status
  9. Occurrence of sulfonated steroids and ovarian expression of steroid sulfatase and SULT1E1 in cyclic cows
  10. Efficiency of the sulfate pathway in comparison to the Δ4- and Δ5-pathway of steroidogenesis in the porcine testis
  11. Simultaneous profiles of sulfonated androgens, sulfonated estrogens and sulfonated progestogens in postpubertal boars (sus scrofa domestica) measured by LC–MS/MS
  12. Increased Prevalence of Filaggrin Deficiency in 51 Patients with Recessive X-Linked Ichthyosis Presenting for Dermatological Examination
  13. The Art of Measuring Steroids
  14. Transport of steroid 3-sulfates and steroid 17-sulfates by the sodium-dependent organic anion transporter SOAT (SLC10A6)
  15. Sodium-dependent organic anion transporter ( Slc10a6−/− ) knockout mice show normal spermatogenesis and reproduction, but elevated serum levels for cholesterol sulfate
  16. The steroid metabolite 16(β)-OH-androstenedione generated by CYP21A2 serves as a substrate for CYP19A1
  17. Role of steroid sulfatase in steroid homeostasis and characterization of the sulfated steroid pathway: Evidence from steroid sulfatase deficiency
  18. Changes in the Metabolome in Response to Low-Dose Exposure to Environmental Chemicals Used in Personal Care Products during Different Windows of Susceptibility
  19. The role of sulfated steroid hormones in reproductive processes
  20. Higher diet-dependent renal acid load associates with higher glucocorticoid secretion and potentially bioactive free glucocorticoids in healthy children
  21. Profiling of bile acids in bovine follicular fluid by fused-core-LC-MS/MS
  22. Simultaneous quantification of cholesterol sulfate, androgen sulfates, and progestagen sulfates in human serum by LC-MS/MS
  23. Higher Glucocorticoid Secretion in the Physiological Range Is Associated With Lower Bone Strength at the Proximal Radius in Healthy Children: Importance of Protein Intake Adjustment
  24. High levels of oxysterol sulfates in serum of patients with steroid sulfatase deficiency
  25. A steroidogenic pathway for sulfonated steroids: The metabolism of pregnenolone sulfate
  26. Transport of the placental estriol precursor 16α-hydroxy-dehydroepiandrosterone sulfate (16α-OH-DHEAS) by stably transfected OAT4-, SOAT-, and NTCP-HEK293 cells
  27. Free and sulfated steroids secretion in postpubertal boars (Sus scrofa domestica)
  28. Determination of free cortisol and free cortisone in human urine by on-line turbulent flow chromatography coupled to fused-core chromatography–tandem mass spectrometry (TFC–HPLC–MS/MS)
  29. Profiling intact steroid sulfates and unconjugated steroids in biological fluids by liquid chromatography-tandem mass spectrometry (LC-MS-MS)
  30. Introduction to Gas Chromatography-Mass Spectrometry
  31. Changes in membrane lipids and carotenoids during light acclimation in a marine cyanobacterium Synechococcus sp.
  32. Determination of lipoic acid, Trolox methyl ether and tocopherols in human plasma by liquid-chromatography and ion-trap tandem mass spectrometry
  33. Stable ion complexes of vitamin A species (retinol) in solution as detected by mass spectrometry