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1. Fetal hemoglobin and [alpha](1)-microglobulin as first- and early second-trimester predictive biomarkers for preeclampsia.

2. The radical-binding lipocalin A1M binds to a Complex I subunit and protects mitochondrial structure and function.

3. Pathological conditions involving extracellular hemoglobin: molecular mechanisms, clinical significance, and novel therapeutic opportunities for α(1)-microglobulin.

4. Review: Biochemical markers to predict preeclampsia.

5. Increased levels of hemoglobin and alpha1-microglobulin in Huntington's disease.

6. [The cause of pre-eclampsia on its way to be elucidated. Fetal hemoglobin can be the key to prediction, diagnostics and treatment].

7. Fetal hemoglobin and α1-microglobulin as first- and early second-trimester predictive biomarkers for preeclampsia.

8. Perfusion of human placenta with hemoglobin introduces preeclampsia-like injuries that are prevented by α1-microglobulin.

9. Up-regulation of A1M/α1-microglobulin in skin by heme and reactive oxygen species gives protection from oxidative damage.

10. Bystander cell death and stress response is inhibited by the radical scavenger α(1)-microglobulin in irradiated cell cultures.

11. Increased levels of cell-free hemoglobin, oxidation markers, and the antioxidative heme scavenger alpha(1)-microglobulin in preeclampsia.

12. Perfusion of the human placenta with red blood cells and xanthine oxidase mimics preeclampsia in-vitro.

13. The lipocalin alpha1-microglobulin protects erythroid K562 cells against oxidative damage induced by heme and reactive oxygen species.

14. Up-regulation of alpha1-microglobulin by hemoglobin and reactive oxygen species in hepatoma and blood cell lines.

20. Impaired function of postoperative macrophages from zinc-deficient rats decreases collagen contraction. Brief report.

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