Tarkoititko:
justification » purification (Laajenna hakua), certification (Laajenna hakua)
codification » notification (Laajenna hakua), certification (Laajenna hakua), clarification (Laajenna hakua)
justification » purification (Laajenna hakua), certification (Laajenna hakua)
codification » notification (Laajenna hakua), certification (Laajenna hakua), clarification (Laajenna hakua)
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61
Linker Modification Enables Control of Key Functional Group Orientation in Macrocycles
Julkaistu 2025Aiheet: -
62
Linker Modification Enables Control of Key Functional Group Orientation in Macrocycles
Julkaistu 2025Aiheet: -
63
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64
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65
Linker Modification Enables Control of Key Functional Group Orientation in Macrocycles
Julkaistu 2025Aiheet: -
66
Modification effects of county characteristics on the association between SPEI-6 and HFRS.
Julkaistu 2025Aiheet: -
67
Chemical Composition and Backbone Modifications Define Deformability of Nucleic Acid Nanoparticles
Julkaistu 2025“…Finally, different chemical modifications introduced to the strands can be used to fine-tune the mechanical properties of the NANPs.…”
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68
AUTO-SP: Automated Sample Preparation for Analyzing Proteins and Protein Modifications
Julkaistu 2025Aiheet: -
69
Chemical Composition and Backbone Modifications Define Deformability of Nucleic Acid Nanoparticles
Julkaistu 2025“…Finally, different chemical modifications introduced to the strands can be used to fine-tune the mechanical properties of the NANPs.…”
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70
Uncovering hidden protein modifications with native top-down mass spectrometry
Julkaistu 2025Aiheet: “…post-translational modifications…”
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71
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72
Chemical Composition and Backbone Modifications Define Deformability of Nucleic Acid Nanoparticles
Julkaistu 2025“…Finally, different chemical modifications introduced to the strands can be used to fine-tune the mechanical properties of the NANPs.…”
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73
Functional impact of PG modifications on colony opacity of <i>S. pneumoniae.</i>
Julkaistu 2025“…<p><b>(A)</b> Illustrative depiction of the two post-synthetic PG modifications. M, <i>N</i>-acetylmuramic acid (NAM). …”
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74
Chemical Composition and Backbone Modifications Define Deformability of Nucleic Acid Nanoparticles
Julkaistu 2025“…Finally, different chemical modifications introduced to the strands can be used to fine-tune the mechanical properties of the NANPs.…”
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75
Chemical Composition and Backbone Modifications Define Deformability of Nucleic Acid Nanoparticles
Julkaistu 2025“…Finally, different chemical modifications introduced to the strands can be used to fine-tune the mechanical properties of the NANPs.…”
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76
Linker Modification Enables Control of Key Functional Group Orientation in Macrocycles
Julkaistu 2025Aiheet: -
77
Molecular masses of the fractions obtained as a result of lysozyme modification with pepsin.
Julkaistu 2025Aiheet: -
78
Linker Modification Enables Control of Key Functional Group Orientation in Macrocycles
Julkaistu 2025Aiheet: -
79
Improved Pharmacokinetic Profiles of HDAC6 Inhibitors via Cap Group Modifications
Julkaistu 2025“…Hydroxamic acid (HA)-based HDAC inhibitors often suffer from poor pharmacokinetic (PK) profiles, limiting their in vivo applications. Cap group modification offers a promising strategy to address these challenges. …”
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80
Improved Pharmacokinetic Profiles of HDAC6 Inhibitors via Cap Group Modifications
Julkaistu 2025“…Hydroxamic acid (HA)-based HDAC inhibitors often suffer from poor pharmacokinetic (PK) profiles, limiting their in vivo applications. Cap group modification offers a promising strategy to address these challenges. …”