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1. Structural insights into the assembly and regulation of distinct viral capsid complexes

2. Broad Adaptability of Coronavirus Adhesion Revealed from the Complementary Surface Affinity of Membrane and Spikes.

3. Gutless Helper-Dependent and First-Generation HAdV5 Vectors Have Similar Mechanical Properties and Common Transduction Mechanisms.

4. Single-Molecule Analysis of Genome Uncoating from Individual Human Rhinovirus Particles, and Modulation by Antiviral Drugs.

5. Atomic Force Microscopy of Viruses: Stability, Disassembly, and Genome Release.

6. Mechanical Properties of Viruses.

7. Atomic Force Microscopy of Viruses.

8. Mechanical disassembly of human picobirnavirus like particles indicates that cargo retention is tuned by the RNA-coat protein interaction.

9. Mechanical tomography of an archaeal lemon-shaped virus reveals membrane-like fluidity of the capsid and liquid nucleoprotein cargo.

10. Adenovirus core protein V reinforces the capsid and enhances genome release from disrupted particles.

11. Exploring nucleic acid condensation and release from individual parvovirus particles with different physicochemical cues.

12. Surface characterization of alkane viral anchoring films prepared by titanate-assisted organosilanization.

13. Electromechanical Photophysics of GFP Packed Inside Viral Protein Cages Probed by Force-Fluorescence Hybrid Single-Molecule Microscopy.

14. Monitoring SARS-CoV-2 Surrogate TGEV Individual Virions Structure Survival under Harsh Physicochemical Environments.

15. Symmetry disruption commits vault particles to disassembly.

16. Seeing and touching adenovirus: complementary approaches for understanding assembly and disassembly of a complex virion.

17. Acidification induces condensation of the adenovirus core.

18. Enhancing Visible-Light Photocatalysis via Endohedral Functionalization of Single-Walled Carbon Nanotubes with Organic Dyes.

19. Fluctuating nonlinear spring theory: Strength, deformability, and toughness of biological nanoparticles from theoretical reconstruction of force-deformation spectra.

20. Virucidal Action Mechanism of Alcohol and Divalent Cations Against Human Adenovirus.

21. Cryo-electron Microscopy Structure, Assembly, and Mechanics Show Morphogenesis and Evolution of Human Picobirnavirus.

22. Dynamic competition for hexon binding between core protein VII and lytic protein VI promotes adenovirus maturation and entry.

23. Multifunctional carbon nanotubes covalently coated with imine-based covalent organic frameworks: exploring structure-property relationships through nanomechanics.

24. Adenovirus major core protein condenses DNA in clusters and bundles, modulating genome release and capsid internal pressure.

25. Loading the dice: The orientation of virus-like particles adsorbed on titanate assisted organosilanized surfaces.

26. The application of atomic force microscopy for viruses and protein shells: Imaging and spectroscopy.

27. Structural and Mechanical Characterization of Viruses with AFM.

28. Atomic Force Microscopy of Viruses.

29. The 2018 correlative microscopy techniques roadmap.

30. Biophysical properties of single rotavirus particles account for the functions of protein shells in a multilayered virus.

31. Changes in the stability and biomechanics of P22 bacteriophage capsid during maturation.

32. Direct visualization of single virus restoration after damage in real time.

33. Exploring the role of genome and structural ions in preventing viral capsid collapse during dehydration.

34. Atomic Force Microscopy of Protein Shells: Virus Capsids and Beyond.

35. Atomic force microscopy of virus shells.

36. Atomic force microscopy of virus shells.

37. Structural Analysis of a Temperature-Induced Transition in a Viral Capsid Probed by HDX-MS.

38. Decrease in pH destabilizes individual vault nanocages by weakening the inter-protein lateral interaction.

39. Structural insights into the assembly and regulation of distinct viral capsid complexes.

40. Tuning Viral Capsid Nanoparticle Stability with Symmetrical Morphogenesis.

41. Fluorescence Tracking of Genome Release during Mechanical Unpacking of Single Viruses.

42. Mechanics of Viral Chromatin Reveals the Pressurization of Human Adenovirus.

43. Quantitative nanoscale electrostatics of viruses.

44. A protein with simultaneous capsid scaffolding and dsRNA-binding activities enhances the birnavirus capsid mechanical stability.

45. Calcium ions modulate the mechanics of tomato bushy stunt virus.

46. Improving the lateral resolution of quartz tuning fork-based sensors in liquid by integrating commercial AFM tips into the fiber end.

47. Structural insights into magnetic clusters grown inside virus capsids.

48. Cementing proteins provide extra mechanical stabilization to viral cages.

49. Interplay between the mechanics of bacteriophage fibers and the strength of virus-host links.

50. The interplay between mechanics and stability of viral cages.

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