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Bedeutung der Retikulozytenbestimmung zur Differenzierung und Behandlungskontrolle der Anämie
(1994)
Die Retikulozytenbestimmung hat eine wesentliche Bedeutung in der Differenzierung und Behandlungskontrolle von Anämien. Dies insbesondere, seitdem die mikroskopische Retikulozytenzählung durch die Bestimmung mit automatisierten Blutzellzählgeräten abgelöst und somit die Retikulozytenzahl mit geringer Impräzision bestimmt werden kann. Somit ist es möglich, die Regeneration derErythropoese gut zu verfolgen. In der Differenzierung der Anämien hat die Retikulozytenbestimmung ihre wesentliche Bedeutung zur Unterscheidung der nprmozytären Anämie formen. Ist bei normozytärer Anämie die Retikulozytenzahl normal oder vermindert, muß eine Knochenmarkpunktion in Erwägung gezogen werden. Bei mikro- und makrozytären Anämien ist die Retikulozytenbestimmung weniger bedeutsam. Für die Behandlungskontrolle der Anämien kann die Retikulozytenzahl ein wichtiger Indikator sowohl für eine beginnende Regeneration der Erythropoese als auch für die erfolgreiche Behandlung einer die Erythrozytenlebenszeit verkürzenden Erkrankung sein.
Das Hormon Erythropoetin (EPO) ist ein hitzestabiles Glykoprotein, welches als wesentlicher Wachstumsfaktor an der Erythropoese beteiligt ist. EPO wird sauerstoffabhängig in Leber und Niere synthetisiert. Da EPO in Zellen nicht gespeichert wird, ist seine Sekretionsrate durch die Syntheserate bestimmt. Unter Hypoxie wird über einen hypoxieinduzierbaren Faktor (HIF-1) die Transkription des EPO-Gens angeregt. Mycophenolat Mofetil (MMF) wird erfolgreich bei transplantierten Patienten als Immunsuppressivum eingesetzt. MMF ist ein nichtkompetitiver, reversibler Hemmer der Inosinmonophosphatdehydrogenase (IMPDH), die essentiell für die de novo Purinsynthese in Lymphozyten ist. MMF soll selektiv antiproliferativ auf Lymphozyten wirken, ohne einen unspezifischen knochenmarkdepressiven Effekt zu haben. Trotzdem wurden bei bis zu 15% der nierentransplantierten und nahezu der Hälfte aller herztransplantierten Patienten unter immunsuppressiver Therapie mit MMF Anämien beschrieben. Die Genese dieser Anämien ist noch unklar und könnte durch eine reduzierte EPO-Produktion unter MMF bedingt sein. In dieser Untersuchung wird deshalb der Effekt von MMF auf die EPO-Freisetzung aus HepG2-Zellen in vitro analysiert. HepG2 und Hep3B Zellen sind ein etabliertes Zellkulturmodell zur Untersuchung der Regulierung hypoxieabhängiger EPO-Sekretion. MMF vermindert zeit- und konzentrationsabhängig die mittels ELISA gemessene EPO-Konzentration im Zellüberstand von HepG2-Zellen – im Mittel etwa auf die Hälfte des Ausgangswertes (p < 0, 001). Dieser Effekt ist signifikant ab einer Konzentration von 0,1 µM MMF und maximal bei 5 µM MMF. Eine signifikante Inhibition der EPO-Sekretion war erst nach 48stündiger Inkubation mit MMF nachweisbar. Unspezifische Effekte auf Proliferation und Proteinsynthese sowie zytotoxische Effekte wurden mittels verschiedener unabhängiger Methoden weitgehend ausgeschlossen. Der Effekt von MMF auf die EPO-Sekretion konnte durch Zugabe von Guanosin aufgehoben werden, was für eine kausale Rolle der IMPDH in diesem Zusammenhang spricht. Analog zu der sezernierten EPO-Menge verminderte sich auch die Menge der gebildeten EPO-mRNA unter MMF. Zudem ist die Aktivität von HIF-1 unter MMF gemindert. Im Gegensatz zu MMF zeigen andere Immunsuppressiva wie der Purinsynthesehemmer Azathioprin und die Calcineurininhibitoren Cyclosporin A und Tacrolimus keinen spezifischen Effekt auf die EPO-Freisetzung von HepG2-Zellen. Die Ergebnisse weisen darauf hin, daß die Minderung der EPO-Sekretion im Zellkulturmodell ein Erklärungsansatz für die beobachteten Anämien unter MMF sein könnte. Eine Therapie der Anämie mittels EPO-Substitution erscheint daher sinnvoll.
Background: Both EPO levels and anemia have shown prognostic value in several cardiac disorders. An observational study with a prospective follow-up was performed to investigate their independent prognostic roles in severe aortic stenosis. Methods: An up to 36-month follow-up of consecutive patients with severe aortic stenosis undergoing TAVR in a high-volume center was performed. Patients with eGRF <30 mL/min/1.73 m2 were excluded. EPO levels and/or anemia status and its association with mid-term mortality were assessed. Results: Out of 407, 360 met eligibility criteria. Median age was 83 years, with 71.4% having a NYHA class III/IV. Anemia was present in 51.9%, and iron deficiency in 52.8%. Median (IQR) EPO levels were 14.4 (9.30–24.30) mIU/mL. Median follow-up was 566 days. Anemia was associated with overall mortality (HR 2.40, 95% CI 1.51–3.80, p < 0.001). Higher logEPO levels were associated with mid-term mortality (HR 4.05, 95% CI 2.29–7.16, p < 0.001), even after adjusting for clinically and/or statistically relevant factors (multivariate HR 2.25, 95 CI 1.09–4.66, p = 0.029). Kaplan-Meier analyses showed early diverging curves for anemia vs. non-anemia, whereas curves for patients in various EPO level quartiles started to diverge at about 100 days, with differences consistently increasing during the subsequent entire follow-up period. Conclusions: Differently from anemia, which was a strong predictor for both early and late mortality in severe aortic stenosis after TAVR, independent prognostic value of EPO only emerged after post-TAVR recovery. EPO prognostic value was independent from anemia and mild-to-moderate renal dysfunction. High EPO levels could be useful to identify patients with severe aortic stenosis showing a compromised mid-term survival in spite of TAVR use and independently from early TAVR results.
Erythropoietin (Epo) is a crucial hormone regulating red blood cell number and consequently the hematocrit. Epo is mainly produced in the kidney by interstitial fibroblast-like cells. Previously, we have shown that in cultures of the immortalized mouse renal fibroblast-like cell line FAIK F3-5, sphingosine 1-phosphate (S1P), by activating S1P1 and S1P3 receptors, can stabilize hypoxia-inducible factor (HIF)-2α and upregulate Epo mRNA and protein synthesis. In this study, we have addressed the role of intracellular iS1P derived from sphingosine kinases (Sphk) 1 and 2 on Epo synthesis in F3-5 cells and in mouse primary cultures of renal fibroblasts. We show that stable knockdown of Sphk2 in F3-5 cells increases HIF-2α protein and Epo mRNA and protein levels, while Sphk1 knockdown leads to a reduction of hypoxia-stimulated HIF-2α and Epo protein. A similar effect was obtained using primary cultures of renal fibroblasts isolated from wildtype mice, Sphk1−/−, or Sphk2−/− mice. Furthermore, selective Sphk2 inhibitors mimicked the effect of genetic Sphk2 depletion and also upregulated HIF-2α and Epo protein levels. The combined blockade of Sphk1 and Sphk2, using Sphk2−/− renal fibroblasts treated with the Sphk1 inhibitor PF543, resulted in reduced HIF-2α and Epo compared to the untreated Sphk2−/− cells. Exogenous sphingosine (Sph) enhanced HIF-2α and Epo, and this was abolished by the combined treatment with the selective S1P1 and S1P3 antagonists NIBR-0213 and TY52156, suggesting that Sph was taken up by cells and converted to iS1P and exported to then act in an autocrine manner through S1P1 and S1P3. The upregulation of HIF-2α and Epo synthesis by Sphk2 knockdown was confirmed in the human hepatoma cell line Hep3B, which is well-established to upregulate Epo production under hypoxia. In summary, these data show that sphingolipids have diverse effects on Epo synthesis. While accumulation of intracellular Sph reduces Epo synthesis, iS1P will be exported to act through S1P1+3 to enhance Epo synthesis. Furthermore, these data suggest that selective inhibition of Sphk2 is an attractive new option to enhance Epo synthesis and thereby to reduce anemia development in chronic kidney disease.
Background: Iron deficiency (ID) is one of the most common nutritional deficiencies in children worldwide and may result in iron deficiency anemia (IDA). The reticulocyte hemoglobin equivalent (Ret-He) provides information about the current availability of iron in erythropoiesis. This study aims to examine the validation of Ret-He as a screening marker for ID and IDA in children. Methods: Blood samples were retrospectively obtained from medical records. Anemia was defined according to the definition provided by the World Health Organization (WHO) for children. ID was defined by transferrin saturation (TSAT) < 20% and ferritin < 100 ng/mL. Children were classified into four groups: IDA, non-anemia iron deficiency (NAID), control and others. Results: Out of 970 children, 332 (34.2%) had NAID and 278 (28.7%) presented with IDA. Analysis revealed that Ret-He significantly correlates with ferritin (rho = 0.41; p < 0.001), TSAT (rho = 0.66; p < 0.001) and soluble transferrin receptor (sTfR) (rho = −0.72; p < 0.001). For ROC analysis, the area under the curve (AUC) was 0.771 for Ret-He detecting ID and 0.845 for detecting IDA. The cut-off value for Ret-He to diagnose ID was 33.5 pg (sensitivity 90.7%; specificity 35.8%) and 31.6 pg (sensitivity 90.6%; specificity 50.4%) to diagnose IDA. Conclusions: The present study demonstrates Ret-He to be a screening marker for ID and IDA in children. Furthermore, Ret-He can be used as a single screening parameter for ID and IDA in children without considering other iron parameters. Economically, the use of Ret-He is highly relevant, as it can save one blood tube per patient and additional costs.
Iron deficiency (ID) is a common manifestation of inflammatory bowel disease (IBD), arising primarily due to chronic inflammation and/or blood loss. There is no gold standard for ID diagnosis, which is often complicated by concomitant inflammation. Zinc protoporphyrin (ZnPP) correlates with parameters of iron homeostasis and has been identified as a promising marker for ID, irrespective of inflammation. We investigated the diagnostic performance of ZnPP in ID, iron deficiency anemia, anemia of chronic disease and mixed anemia in a cross-sectional study in 130 patients with IBD. Different parameters were compared by receiver operator characteristic (ROC) analysis as detectors of iron-restricted erythropoiesis (IRE). IRE was detected in 91 patients (70.0%); fifty-nine (64.8%) had absolute ID and 23 (25.4%) functional ID. When inflammation was present, ZnPP was a more reliable sole biomarker of IRE than MCV, transferrin saturation (TSAT) or ferritin (AUC; 0.855 vs. 0.763, 0.834% and 0.772, respectively). The specificity of TSAT was significantly lower than ZnPP when inflammation was present (38% vs. 71%, respectively). We conclude that ZnPP is a reliable biomarker of functional ID in patients with IBD and more dependable than ferritin or TSAT, which are influenced by chronic inflammation. We propose that ZnPP may also have utility in patients with other chronic diseases.