172 results on '"Ludwig, Anna-Kristin"'
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2. Exploring the In situ pairing of human galectins toward synthetic O-mannosylated core M1 glycopeptides of α-dystroglycan
3. Characterizing ligand-induced conformational changes in clinically relevant galectin-1 by HN/H2O (D2O) exchange
4. Exploring the Galectin Network by Light and Fluorescence Microscopy
5. Imitating evolution’s tinkering by protein engineering reveals extension of human galectin-7 activity
6. Probing sulfatide-tissue lectin recognition with functionalized glycodendrimersomes
7. Design–functionality relationships for adhesion/growth-regulatory galectins
8. Influence of protein (human galectin-3) design on aspects of lectin activity
9. Chicken lens development: complete signature of expression of galectins during embryogenesis and evidence for their complex formation with α-, β-, δ-, and τ-crystallins, N-CAM, and N-cadherin obtained by affinity chromatography
10. Lectinology 4.0: Altering modular (ga)lectin display for functional analysis and biomedical applications
11. Exploring functional pairing between surface glycoconjugates and human galectins using programmable glycodendrimersomes
12. Chicken GRIFIN: Structural characterization in crystals and in solution
13. Chicken GRIFIN: binding partners, developmental course of localization and activation of its lens-specific gene expression by L-Maf/Pax6
14. Mesenchymal stem cell-derived extracellular vesicles ameliorate inflammation-induced preterm brain injury
15. Chemokines and galectins form heterodimers to modulate inflammation
16. From glycophenotyping by (plant) lectin histochemistry to defining functionality of glycans by pairing with endogenous lectins
17. Altering the Modular Architecture of Galectins Affects its Binding with Synthetic α‐Dystroglycan O ‐Mannosylated Core M1 Glycoconjugates In situ
18. Altering the Modular Architecture of Galectins Affects its Binding with Synthetic a-Dystroglycan O-Mannosylated Core M1 Glycoconjugates In situ
19. Chicken GRIFIN: A homodimeric member of the galectin network with canonical properties and a unique expression profile
20. Correction to: Influence of protein (human galectin-3) design on aspects of lectin activity
21. Multipotent Hematopoietic Progenitors Divide Asymmetrically to Create Progenitors of the Lymphomyeloid and Erythromyeloid Lineages
22. Probing sulfatide-tissue lectin recognition with functionalized glycodendrimersomes
23. Galectin-glycan interaction: guideline for monitoring by 77Se NMR spectroscopy and solvent (H2O/D2O) impact on binding
24. Lipid raft redistribution and morphological cell polarization are separable processes providing a basis for hematopoietic stem and progenitor cell migration
25. Exosomes: Small vesicles participating in intercellular communication
26. Characterisation of exosomes derived from human cells by nanoparticle tracking analysis and scanning electron microscopy
27. Design–functionality relationships for adhesion/ growth-regulatory galectins
28. Structural Characterization of Rat Galectin-5, an N-Tailed Monomeric Proto-Type-like Galectin
29. Structural Characterization of Rat Galectin-5, an N-Tailed Monomeric Proto-Type-like Galectin
30. What Cyto- and Histochemistry Can Do to Crack the Sugar Code
31. Calorimetric Analysis of the Interplay between Synthetic Tn Antigen-Presenting MUC1 Glycopeptides and Human Macrophage Galactose-Type Lectin
32. Galectin–Glycan Interactions: Guidelines for Monitoring by77Se NMR Spectroscopy, and Solvent (H2O/D2O) Impact on Binding
33. Glycobiology of developing chicken kidney: Profiling the galectin family and selected β‐galactosides
34. Glycobiology of developing chicken kidney: Profiling the galectin family and selected β‐galactosides.
35. Members of the galectin network with deviations from the canonical sequence signature. 1. Galectin-related inter-fiber protein (GRIFIN)
36. Chicken lens development: complete signature of expression of galectins during embryogenesis and evidence for their complex formation with α-, β-, δ-, and τ-crystallins, N-CAM, and N-cadherin obtained by affinity chromatography
37. How altering the modular architecture affects aspects of lectin activity: case study on human galectin-1
38. Precipitation with polyethylene glycol followed by washing and pelleting by ultracentrifugation enriches extracellular vesicles from tissue culture supernatants in small and large scales
39. Galectin–Glycan Interactions: Guidelines for Monitoring by 77Se NMR Spectroscopy, and Solvent (H2O/D2O) Impact on Binding.
40. Chicken GRIFIN: binding partners, developmental course of localization and activation of its lens-specific gene expression by L-Maf/Pax6
41. Precipitation with polyethylene glycol followed by washing and pelleting by ultracentrifugation enriches extracellular vesicles from tissue culture supernatants in small and large scales
42. Adhesion/growth-regulatory galectins tested in combination: evidence for formation of hybrids as heterodimers
43. Members of the Galectin Network with Deviations from the Canonical Sequence Signature. 1. Galectin-Related Inter-Fiber Protein (GRIFIN)
44. Reaction of a Programmable Glycan Presentation of Glycodendrimersomes and Cells with Engineered Human Lectins To Show the Sugar Functionality of the Cell Surface
45. Studying the Structural Significance of Galectin Design by Playing a Modular Puzzle: Homodimer Generation from Human Tandem-Repeat-Type (Heterodimeric) Galectin-8 by Domain Shuffling
46. Untersuchung des Einflusses von Rab-GTPasen und Endozytose-Inhibitoren auf die Zellbiologie und Zellschicksalsspezifikation von hämatopoetischen Stamm- und Vorläuferzellen
47. Playing Modular Puzzle with Adhesion/Growth-Regulatory Galectins: Design and Testing of a Hybrid to Unravel Structure-Activity Relationships
48. Mesenchymal Stromal Cell-Derived Extracellular Vesicles Protect the Fetal Brain After Hypoxia-Ischemia
49. Exploring functional pairing between surface glycoconjugates and human galectins using programmable glycodendrimersomes.
50. Cover Feature: Altering the Modular Architecture of Galectins Affects its Binding with Synthetic α‐Dystroglycan O‐Mannosylated Core M1 Glycoconjugates In situ (ChemBioChem 14/2023).
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