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1. Distinct types of VHHs in Alpaca.

2. Distinct types of VHHs in Alpaca

3. Antibody Binding Captures High Energy State of an Antigen: The Case of Nsp1 SARS-CoV-2 as Revealed by Hydrogen–Deuterium Exchange Mass Spectrometry.

4. Specific attributes of the VL domain influence both the structure and structural variability of CDR-H3 through steric effects.

5. SARS-CoV-2 Spike Protein Interaction Space.

6. A comparison of the binding sites of antibodies and single-domain antibodies.

7. The resurgence of structure in deep neural networks

8. Using data to characterise the relationship between nanobody sequence, structure and function

9. Unveiling CD59-Antibody Interactions to Design Paratope-Mimicking Peptides for Complement Modulation.

10. Specific attributes of the VL domain influence both the structure and structural variability of CDR-H3 through steric effects

11. A comparison of the binding sites of antibodies and single-domain antibodies

12. Switching Heavy Chain Constant Domains Denatures the Paratope 3D Architecture of Influenza Monoclonal Antibodies.

13. Structural basis for the inhibition of βFXIIa by garadacimab.

14. Basic Immunology

15. When monoclonal antibodies are not monospecific: Hybridomas frequently express additional functional variable regions

16. Structural trends in antibody-antigen binding interfaces:a computational analysis of 1833 experimentally determined 3D structures

17. FvFold: A model to predict antibody Fv structure using protein language model with residual network and Rosetta minimization.

18. Structure-Based Antibody Paratope Prediction with 3D Zernike Descriptors and SVM

19. In silico proof of principle of machine learning-based antibody design at unconstrained scale

20. Research progress on unique paratope structure, antigen binding modes, and systematic mutagenesis strategies of single-domain antibodies

21. Understanding and Modulating Antibody Fine Specificity: Lessons from Combinatorial Biology.

22. Conformational epitope matching and prediction based on protein surface spiral features

23. Complexity of Viral Epitope Surfaces as Evasive Targets for Vaccines and Therapeutic Antibodies.

24. Antibodies validated for routinely processed tissues stain frozen sections unpredictably

25. Complexity of Viral Epitope Surfaces as Evasive Targets for Vaccines and Therapeutic Antibodies

26. Antibody‐mediated enzyme formation: Its legacy at age fifty‐four.

27. Switching Heavy Chain Constant Domains Denatures the Paratope 3D Architecture of Influenza Monoclonal Antibodies

28. Understanding and Modulating Antibody Fine Specificity: Lessons from Combinatorial Biology

29. Mapping Paratope and Epitope Residues of Antibody Pembrolizumab via Molecular Dynamics Simulation

30. Conformational epitope matching and prediction based on protein surface spiral features.

31. Polyreactivity and polyspecificity in therapeutic antibody development: risk factors for failure in preclinical and clinical development campaigns

32. Ab-Ligity: identifying sequence-dissimilar antibodies that bind to the same epitope

33. A computational method for immune repertoire mining that identifies novel binders from different clonotypes, demonstrated by identifying anti-pertussis toxoid antibodies

34. An Antigenic Space Framework for Understanding Antibody Escape of SARS-CoV-2 Variants

35. Epitope–Paratope Interaction of a Neutralizing Human Anti-Hepatitis B Virus PreS1 Antibody That Recognizes the Receptor-Binding Motif

36. Antibody Specific B-Cell Epitope Predictions: Leveraging Information From Antibody-Antigen Protein Complexes

37. Mapping the epitope of PD-L1 to the paratope of the antibody durvalumab using molecular dynamics simulation.

38. Impact of antibody architecture and paratope valency on effector functions of bispecific NKp30 x EGFR natural killer cell engagers.

39. Unveiling CD59-Antibody Interactions to Design Paratope-Mimicking Peptides for Complement Modulation

40. Attentive Cross-Modal Paratope Prediction.

41. Antibody Specific B-Cell Epitope Predictions: Leveraging Information From Antibody-Antigen Protein Complexes.

42. Widespread impact of immunoglobulin V-gene allelic polymorphisms on antibody reactivity.

43. Leveraging Sequential and Spatial Neighbors Information by Using CNNs Linked With GCNs for Paratope Prediction

44. Antibody and antigen interface binding prediction using experimental methods compared to solutions utilizing machine learning

45. Antikörper- und Antigenbindungsstellenermittlung durch Parapred im Vergleich zu anderen Deep Learning Algorithmen

46. Structural trends in antibody-antigen binding interfaces: a computational analysis of 1833 experimentally determined 3D structures.

47. Indirect Microcontact Printing to Create Functional Patterns of Physisorbed Antibodies.

48. Analysis of nanobody paratopes reveals greater diversity than classical antibodies.

49. Polyclonal alpaca antibodies protect against hantavirus pulmonary syndrome in a lethal Syrian hamster model

50. Immunological Cross-Reactivity : Construction of a Workflow That Enables Cross-Reactivity Predictions

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