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3. Resolving Phenotypic Variability in Mitochondrial Diseases: Preliminary Findings of a Proteomic Approach.

5. Phenotyping Tumor Heterogeneity through Proteogenomics: Study Models and Challenges.

7. Thymosin β 4 and β 10 Expression in Human Organs during Development: A Review.

11. Mitochondrial Biomarkers in the Omics Era: A Clinical-Pathophysiological Perspective.

16. SPTBN1 Mediates the Cytoplasmic Constraint of PTTG1, Impairing Its Oncogenic Activity in Human Seminoma.

19. Aggressive PitNETs and Potential Target Therapies: A Systematic Review of Molecular and Genetic Pathways.

20. Synthesis of 9,10‐Dibenzoyl‐phenanthrene Derivatives Through a Palladium‐Catalyzed Domino Approach.

23. The Post-Translational Modifications of Human Salivary Peptides and Proteins Evidenced by Top-Down Platforms.

24. Combined Salivary Proteome Profiling and Machine Learning Analysis Provides Insight into Molecular Signature for Autoimmune Liver Diseases Classification.

27. Characterization of Cystatin B Interactome in Saliva from Healthy Elderly and Alzheimer's Disease Patients.

30. Top-Down Proteomics Detection of Potential Salivary Biomarkers for Autoimmune Liver Diseases Classification.

32. The Functional Characteristics of Goat Cheese Microbiota from a One-Health Perspective.

33. Salivary Proteomics Reveals Significant Changes in Relation to Alzheimer's Disease and Aging.

37. The Anfinsen Dogma: Intriguing Details Sixty-Five Years Later.

38. Pediatric Brain Tumors: Signatures from the Intact Proteome.

41. Investigation by top‐down high‐performance liquid chromatography–mass spectrometry of glutathionylation and cysteinylation of salivary S100A9 and cystatin B in preterm newborns.

42. Trypsinogen and chymotrypsinogen: the mysterious hyper‐reactivity of selected cysteines is still present after their divergent evolution.

43. β-thymosins and interstitial lung disease: study of a scleroderma cohort with a one-year follow-up

44. Top-Down Proteomics of Human Saliva Highlights Anti-inflammatory, Antioxidant, and Antimicrobial Defense Responses in Alzheimer Disease.

47. Enrichments of post‐translational modifications in proteomic studies.

48. Investigating the Protein Signature of Adamantinomatous Craniopharyngioma Pediatric Brain Tumor Tissue: Towards the Comprehension of Its Aggressive Behavior.

50. Cryptides: latent peptides everywhere.

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