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Structure-activity Relationship and Biological Evaluation of 12 N-substituted Aloperine Derivatives As PD-L1 Down-Regulatory Agents Through Proteasome Pathway.

Bioorganic chemistry(2021)

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Abstract
Twenty-nine 12 N-substituted aloperine derivatives were synthesized and screened for suppression on PD-L1 expression in H460 cells, as a continuation of our work. Systematic structural modifications led to the identification of compound 6b as the most active PD-L1 modulator. Compound 6b could significantly down-regulate both constitutive and inductive PD-L1 expression in NSCLC cells, and successively enhance the cytotoxicity of co cultured T cells against tumor cells at the concentration of 20 mu M. Also, it exhibited a moderate in vivo anticancer efficacy against Lewis tumor xenograft with a stable PK and safety profile. The mechanism study indicated that 6b mediated the degradation of PD-L1 through a proteasome pathway, rather than a lysosome route. These results provided the powerful information for cancer immunotherapy of aloperine derivatives with unique endocyclic skeleton by targeting PD-L1 to activate immune cells to kill cancer cells.
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Key words
Aloperine,PD-L1,Structure-activity relationship,Cancer immunotherapy,Proteasome
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