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2. Harnessing secretory pathway differences between HEK293 and CHO to rescue production of difficult to express proteins.

4. Distinct roles of vaccine-induced SARS-CoV-2-specific neutralizing antibodies and T cells in protection and disease

7. Prevalent and persistent new-onset autoantibodies in mild to severe COVID-19

8. Machine learning in computational biology to accelerate high-throughput protein expression.

9. High throughput generation of a resource of the human secretome in mammalian cells

12. A subcellular map of the human proteome

13. SARS-CoV-2 exposure, symptoms and seroprevalence in healthcare workers in Sweden

14. A Proof of Principle Proteomic Study Detects Dystrophin in Human Plasma: Implications in DMD Diagnosis and Clinical Monitoring

15. A Proof of Principle Proteomic Study Detects Dystrophin in Human Plasma : Implications in DMD Diagnosis and Clinical Monitoring

16. An easy-to-use high-throughput selection system for the discovery of recombinant protein binders from alternative scaffold libraries

18. Deciphering the determinants of recombinant protein yield across the human secretome

19. Orthogonal proteomics methods warrants development of Duchenne Muscular Dystrophy biomarkers

20. A universal SARS‐CoV DNA vaccine inducing highly cross‐reactive neutralizing antibodies and T cells

21. Correction to “Small Bispecific Affinity Proteins for Simultaneous Target Binding and Albumin-Associated Half-Life Extension”

22. Enhanced validation of antibodies for research applications

23. Harnessing secretory pathway differences between HEK293 and CHO to rescue production of difficult to express proteins

24. SARS-CoV-2 induces a durable and antigen specific humoral immunity after asymptomatic to mild COVID-19 infection

25. Identification of four novel T cell autoantigens and personal autoreactive profiles in multiple sclerosis

26. Robust humoral and cellular immune responses and low risk for reinfection at least 8 months following asymptomatic to mild COVID-19

27. Long-term SARS-CoV-2-specific and cross-reactive cellular immune responses correlate with humoral responses, disease severity, and symptomatology

28. A universal SARS-CoV DNA vaccine inducing highly cross-reactive neutralizing antibodies and T cells

29. Identification of four novel T cell autoantigens and personal autoreactive profiles in multiple sclerosis

30. Long‐term SARS‐CoV‐2‐specific and cross‐reactive cellular immune responses correlate with humoral responses, disease severity, and symptomatology

31. Novel universal SARS-CoV DNA vaccine inducing neutralizing antibodies to huCoV-19/WH01, Beta, Delta and Omicron variants and T cells to Bat-CoV

32. SARS-CoV-2 induces a durable and antigen specific humoral immunity after asymptomatic to mild COVID-19 infection

33. Robust humoral and cellular immune responses and low risk for reinfection at least 8 months following asymptomatic to mild COVID‐19

34. PROTEOMICS: Tissue-based map of the human proteome

35. Small Bispecific Affinity Proteins for Simultaneous Target Binding and Albumin-Associated Half-Life Extension

36. Secretome screening reveals immunomodulating functions of IFN alpha-7, PAP and GDF-7 on regulatory T-cells

37. T cell reactivity screening reveals four novel CNS autoantigens in multiple sclerosis

38. Systematic evaluation of SARS-CoV-2 antigens enables a highly specific and sensitive multiplex serological COVID-19 assay

39. Improvements of a high-throughput protein purification process using a calcium-dependent setup

40. An Affibody Molecule Is Actively Transported into the Cerebrospinal Fluid via Binding to the Transferrin Receptor

41. SARS-CoV-2 induces a durable and antigen specific humoral immunity after asymptomatic to mild COVID-19 infection

42. Systematic evaluation of SARS‐CoV‐2 antigens enables a highly specific and sensitive multiplex serological COVID‐19 assay

46. SARS-CoV-2 exposure, symptoms and seroprevalence in health care workers

48. Phenotypic Screen with the Human Secretome Identifies FGF16 as Inducing Proliferation of iPSC-Derived Cardiac Progenitor Cells

49. The human secretome

50. The human secretome

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