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      Synthesis and evaluation of multivalent M2pep peptides for targeting alternatively activated M2 macrophages

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          Abstract

          The tumor microenvironment in the majority of cancers is known to favor polarization of tumor-associated macrophages (TAMs) to alternatively activated M2 phenotype, promoting disease progression and reducing patient survival. Effective therapy targeting this M2 macrophage population is thus a promising adjuvant to approved cancer therapies. One of the challenges in targeting M2-like TAMs is a lack of high affinity targeting ligand with good selectivity over anti-tumor M1-like TAMs. We have previously identified an M2 macrophage-targeting peptide (M2pep) that binds preferentially to murine M2 macrophages and M2-like TAMs. A fusion peptide of M2pep with pro-apoptotic peptide KLA (M2pepKLA) was further used to reduce TAM population in vivo but high concentrations and frequent dosing were required due to low binding affinity of M2pep for M2 macrophage. The goal of this study was to develop more potent TAM depletion constructs by increasing the valency of both the M2pep targeting and KLA drug domains. Divalent and tetravalent displays of M2pep ([M2pep] 2-Biotin and [M2pep] 4-Biotin) were synthesized and evaluated for improvement in binding avidity to the murine macrophages. High avidity and selective binding of [M2pep] 2-Biotin to M2 macrophages was achieved with at least 10-fold lower concentration than required for monovalent M2pep activity. Increasing M2pep valency to four, however, resulted in a reduction in both binding activity and selectivity. Surprisingly, both divalent and tetravalent M2pep, without conjugation of any cytotoxic drug cargo, exhibited M2 macrophage-selective toxicity not observed in monovalent M2pep treatment. We next synthesized divalent M2pep with monovalent and divalent KLA ([M2pep] 2-[KLA] and [M2pep] 2-[KLA] 2) to evaluate its enhanced potency compared to M2pepKLA. While both constructs were significantly more toxic than M2pepKLA to primary, bone marrow-derived M2 macrophage, desired selectivity was retained only with [M2pep] 2-[KLA]. Finally, we evaluated all multivalent M2pep and M2pepKLA analogs using a syngeneic CT-26 tumor cell suspension. In this setting, [M2pep] 4-Biotin and [M2pep] 2-[KLA] 2 exhibited selective toxicity to both M2-like TAMs and malignant cells but not to M1-like TAMs. Therefore, these constructs are promising anti-cancer constructs with dual-modality mechanisms: malignant cell killing and TAM-based immunomodulation.

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          Author and article information

          Journal
          8607908
          21032
          J Control Release
          J Control Release
          Journal of controlled release : official journal of the Controlled Release Society
          0168-3659
          1873-4995
          21 January 2016
          07 January 2016
          28 February 2016
          28 February 2017
          : 224
          : 103-111
          Affiliations
          [a ]Department of Bioengineering and Molecular Engineering and Sciences Institute, University of Washington, Seattle, WA 98195, United States
          Author notes
          [* ]Corresponding Author: spun@ 123456uw.edu , 3720 15 th Ave NE, Foege N530P, Box 355061, Seattle, WA 98195
          [1]

          Current affiliation: Department of Chemistry and Biochemistry, University of San Diego, San Diego, CA 92110, United States

          Article
          PMC4747818 PMC4747818 4747818 nihpa752605
          10.1016/j.jconrel.2015.12.057
          4747818
          26772876
          8b1d40e5-af1a-49f7-a411-38d88a862654
          History
          Categories
          Article

          multivalent display,M2 macrophages,targeted drug delivery

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