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pH-Dependent nanostructure based on isoquinoline-cyclodextrin conjugate for thrombosis therapy

Received 13 March 2011; accepted 27 December 2011. published online 16 January 2012.
Corrected Proof

Abstract 

The modification of 3S-1,2,3,4-tetrahydroisoquinoline-3-carboxylic acid (THIQA) with β-cyclodextrin (β-CD) provides an oral antithrombotic agent, 6-(3′S-isoquinoline-3′-carboxylaminoethylamino)-6-deoxy-β-CD (THIQA-β-CD). In aqueous solution THIQA-β-CD undergoes intermolecular inclusion complexation and forms pH-dependent nanostructures. The morphological feature of THIQA-β-CD is a nanocloud consisting of numerous particles that are 5 nm–6 nm in diameter at pH 3.0. The nanocloud switches to a nanorod ranging from 100 nm to 385 nm in length at pH 7.2, then to nanowires of 50 nm to 530 nm in length at pH 10.1. THIQA-β-CD, which has unusual nanostructures, offers enhanced stability in blood. Inhibition of thrombin-induced platelet aggregation in vitro and demonstrated antithrombotic efficacy in vivo. This investigation demonstrated that the modification of THIQA with β-CD is a promising approach for clinical therapy of thrombus disease. The pH-dependent nanostructures of conjugate provide the desired in vivo antithrombotic activity and in vitro stability in blood.

Graphical Abstract 

The modification of 3S-1,2,3,4-tetrahydroisoquinoline-3-carboxylic acid (THIQA) with β-cyclodextrin (β-CD) provides an oral anti-thrombotic agent, THIQA-β-CD. In aqueous solution THIQA-β-CD undergoes self-assembly and forms pH-dependent nanostructures via intermolecular inclusion complexation. THIQA-β-CD with unusual nanostructures offers enhanced stability in blood, inhibition of thrombin induced platelet aggregation in vitro and high in vivo anti-thrombotic efficacy.

Key words: 3S-1,2,3,4-Tetrahydroisoquinoline-3-carboxylic acid, β-cyclodextrin, Anti-thrombotic activity, Nanostructure

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 No conflict of interest was reported by the authors of this paper.

 This work was supported by Beijing Area Major Laboratory of Peptide and Small Molecular Drugs, Funding Project for PHR (PHR201007114, IHLB, KZ200910025-004), Innovation Platform Project of Education Committee of Beijing, Beijing Municipal Natural Science Foundation (2102013), the Star Program of Beijing Science and Technology (2009A48) and the Natural Scientific Foundation of China (81072522, 21103115).

PII: S1549-9634(12)00002-0

doi:10.1016/j.nano.2011.12.008

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