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1. Lysosomal dysfunction results in lamina-specific meganeurite formation but not apoptosis in frontal cortex.

2. Suppression of cathepsins B and L causes a proliferation of lysosomes and the formation of meganeurites in hippocampus.

5. Discussion of “Grinter on Direct Method of Moment Distribution”

7. Evolution of STAT2 resistance to flavivirus NS5 occurred multiple times despite genetic constraints.

8. SARS-CoV-2 vaccination, booster, and infection in pregnant population enhances passive immunity in neonates.

9. Memory B cell responses to Omicron subvariants after SARS-CoV-2 mRNA breakthrough infection in humans.

10. Humoral immunity to SARS-CoV-2 elicited by combination COVID-19 vaccination regimens.

11. Plasma and memory antibody responses to Gamma SARS-CoV-2 provide limited cross-protection to other variants.

12. Antibody and Memory B-Cell Immunity in a Heterogeneously SARS-CoV-2-Infected and -Vaccinated Population.

13. Antibody evolution to SARS-CoV-2 after single-dose Ad26.COV2.S vaccine in humans.

14. Increased memory B cell potency and breadth after a SARS-CoV-2 mRNA boost.

15. Analysis of memory B cells identifies conserved neutralizing epitopes on the N-terminal domain of variant SARS-Cov-2 spike proteins.

16. Severe Acute Respiratory Syndrome Coronavirus 2 Neutralization After Messenger RNA Vaccination and Variant Breakthrough Infection.

17. Increased Potency and Breadth of SARS-CoV-2 Neutralizing Antibodies After a Third mRNA Vaccine Dose.

18. Plasma Neutralization of the SARS-CoV-2 Omicron Variant.

19. Conserved Neutralizing Epitopes on the N-Terminal Domain of Variant SARS-CoV-2 Spike Proteins.

20. Plasma neutralization properties of the SARS-CoV-2 Omicron variant.

21. Anti-SARS-CoV-2 receptor-binding domain antibody evolution after mRNA vaccination.

22. High genetic barrier to SARS-CoV-2 polyclonal neutralizing antibody escape.

23. Naturally enhanced neutralizing breadth against SARS-CoV-2 one year after infection.

24. Naturally enhanced neutralizing breadth to SARS-CoV-2 after one year.

25. Measuring SARS-CoV-2 neutralizing antibody activity using pseudotyped and chimeric viruses.

26. EED-Targeted PROTACs Degrade EED, EZH2, and SUZ12 in the PRC2 Complex.

27. Incorporating patient preferences into orthopaedic practice: should the orthopaedic encounter change?

28. Selective suppression of cathepsin L results from elevations in lysosomal pH and is followed by proteolysis of tau protein.

29. Lysosomal dysfunction reduces brain-derived neurotrophic factor expression.

30. Cytosolic proteolysis of tau by cathepsin D in hippocampus following suppression of cathepsins B and L.

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