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"Clicking" trimeric peptides onto hybrid T8POSS nanocages and identifying synthesis limitations.
Anderson, Lewis R; Hunter, Ann P; Kershaw, Matthew J; Bylikin, Sergey Y; Bowen, James; Taylor, Peter G; Birchall, Martin A; Mehrban, Nazia.
Affiliation
  • Anderson LR; University College London, Ear Institute, 332 Grays Inn Rd, London WC1X 8EE, UK.
  • Hunter AP; University of Bath, Department of Life Sciences, Claverton Down, Bath BA2 7AX, UK. nm2051@bath.ac.uk.
  • Kershaw MJ; NMSF, Swansea University Medical School, Singleton Park, Swansea, SA2 8PP, UK.
  • Bylikin SY; The Open University, School of Life, Health & Chemical Sciences, Walton Hall, Kents Hill, Milton Keynes MK7 6AA, UK.
  • Bowen J; The Open University, School of Life, Health & Chemical Sciences, Walton Hall, Kents Hill, Milton Keynes MK7 6AA, UK.
  • Taylor PG; The Open University, School of Engineering & Innovation, Walton Hall, Kents Hill, Milton Keynes MK7 6AA, UK.
  • Birchall MA; The Open University, School of Life, Health & Chemical Sciences, Walton Hall, Kents Hill, Milton Keynes MK7 6AA, UK.
  • Mehrban N; University College London, Ear Institute, 332 Grays Inn Rd, London WC1X 8EE, UK.
Nanoscale ; 16(31): 14802-14812, 2024 Aug 13.
Article in En | MEDLINE | ID: mdl-39028306
ABSTRACT
Macromolecule branching upon polyhedral oligomeric silsesquioxanes (POSS) via "click" chemistry has previously been reported for promoting natural biological responses in vitro, particularly when regarding their demonstrated biocompatibility and structural robustness as potential macromolecule anchoring points. However, "clicking" of large molecules around POSS structures uncovers two main challenges (1) a synthetic challenge encompassing multi-covalent attachment of macromolecules to a single nanoscale-central position, and (2) purification and separation of fully adorned nanocages from those that are incomplete due to their similar physical characteristics. Here we present peptide decoration to a T8POSS nanocage through the attachment of azido-modified trimers. Triglycine- and trialanine-methyl esters "clicked" to 97% and 92% completion, respectively, resulting in 84% and 68% yields of the fully-adorned octamers. The "clicks" halt within 27-h of the reaction time, and efforts to further increase the octamer yield were of negligible benefit. Exploration of reaction conditions reveals multiple factors preventing full octa-arm modification to all available POSS nanocages, and offers insights into macromolecule attachment between both peptides and small inorganic-organic structures, all of which require consideration for future work of this nature.
Subject(s)

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Peptides / Organosilicon Compounds / Click Chemistry Language: En Journal: Nanoscale Year: 2024 Document type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Peptides / Organosilicon Compounds / Click Chemistry Language: En Journal: Nanoscale Year: 2024 Document type: Article