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5. Pro 12Ala polymorphism of the PPARγ2 locus modulates the relationship between energy intake and body weight in type 2 diabetic patients

7. DNA damage signatures in peripheral blood cells (PBMC) as biomarkers in prodromal Huntington's disease

9. DNA Damage Signatures in Peripheral Blood Cells as Biomarkers in Prodromal Huntington's Disease

10. DNA damage signatures in peripheral blood cells as biomarkers in prodromal huntington disease.

11. Recombinant human erythropoietin increasesfrataxin protein expression without increasing mRNA expression

12. PPAR-gamma agonist Azelaoyl PAF increases frataxin protein and mRNA expression: new implications for the Friedreich's ataxia therapy.

16. Predictors of Survival in a Huntington's Disease Population from Southern Italy

19. Reduced striatal [123I]FP‐CIT binding in SCA2 patients without parkinsonism

22. Autosomal dominant cerebellar ataxia type I. Clinical and molecular study in 36 Italian families including a comparison between SCA1 and SCA2 phenotypes

23. Pro 1 2Ala Polymorphism of the PPARγ2 Locus Modulates the Relationship Between Energy Intake and Body Weight in Type 2 Diabetic Patients.

24. DNA damage signatures in peripheral blood cells (PBMC) as biomarkers in prodromal Huntington's disease

25. Predictors of Survival in a Huntington's Disease Population from Southern Italy

26. Pro12Ala Polymorphism of the PPARγ2 Locus Modulates the Relationship Between Energy Intake and Body Weight in Type 2 Diabetic Patients

27. Can telomere shortening in human peripheral blood leukocytes serve as a disease biomarker of Friedreich's ataxia?

28. Reduced striatal [123 I]FP-CIT binding in SCA2 patients without parkinsonism.

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