Oral delivery of nanomedicine for genetic kidney disease

纳米医学 疾病 医学 生物信息学 生物 内科学 纳米技术 材料科学 纳米颗粒
作者
Yi Huang,Jonathan Wang,Valeria Mancino,Jessica Pham,Colette O’Grady,Hui Li,Kairui Jiang,Deborah D. Chin,Christopher Poon,Pei‐Yin Ho,Georgina Gyarmati,János Peti‐Peterdi,Kenneth R. Hallows,Eun Ji Chung
出处
期刊:PNAS nexus [Oxford University Press]
卷期号:3 (5): pgae187-pgae187 被引量:9
标识
DOI:10.1093/pnasnexus/pgae187
摘要

Abstract Chronic and genetic kidney diseases such as autosomal dominant polycystic kidney disease (ADPKD) have few therapeutic options, and clinical trials testing small molecule drugs have been unfavorable due to low kidney bioavailability and adverse side effects. Although nanoparticles can be designed to deliver drugs directly to the diseased site, there are no kidney-targeted nanomedicines clinically available, and most FDA-approved nanoparticles are administered intravenously which is not ideal for chronic diseases. To meet these challenges of chronic diseases, we developed a biomaterials-based strategy using chitosan particles (CP) for oral delivery of therapeutic, kidney-targeting peptide amphiphile micelles (KMs). We hypothesized that encapsuling KMs into CP would enhance the bioavailability of KMs upon oral administration given the high stability of chitosan in acidic conditions and mucoadhesive properties enabling absorption within the intestines. To test this, we evaluated the mechanism of KM access to the kidneys via intravital imaging and investigated the KM biodistribution in a porcine model. Next, we loaded KMs carrying the ADPKD drug metformin into CP (KM-CP-met) and measured in vitro therapeutic effect. Upon oral administration in vivo, KM-CP-met showed significantly greater bioavailability and accumulation in the kidneys as compared to KM only or free drug. As such, KM-CP-met treatment in ADPKD mice (Pkd1fl/fl;Pax8-rtTA;Tet-O-Cre which develops the disease over 120 days and mimics the slow development of ADPKD) showed enhanced therapeutic efficacy without affecting safety despite repeated treatment. Herein, we demonstrate the potential of KM-CP as a nanomedicine strategy for oral delivery for the long-term treatment of chronic kidney diseases.

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