| Literature DB >> 26714858 |
Haizhao Luo1, Xianbao Wang2, Ruyi Zhang3, Youping Chen4, Yi Shu5, Huixian Li6, Hong Chen7.
Abstract
Gene therapeutics provides great opportunities for curing diabetes. Numerous attempts have been made to establish a safe and high-efficiency gene delivery strategy, but all of them are unsuccessful. To achieve an ideal transfection, a novel gene delivery strategy was presented in this research. The novel system proposed was transfection mediated by the combination of ultrasound with microbubbles and cross-linked polyethylenimines (PEIs). Ultrasound with microbubbles enhances the permeability of target cells; moreover, cross-linked PEIs enabled DNA to escape from endosomes into the cytoplasm. If the proposed method is feasible and effective, the endogenous secretion system of insulin would be re-established in patients with diabetes.Entities:
Keywords: Cross-linked polyethylenimines; Gene therapeutics; Microbubbles; Ultrasound
Year: 2015 PMID: 26714858 PMCID: PMC4695475 DOI: 10.1186/s11671-015-1193-8
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Fig. 1Schematic drawing of gene transfection by the combination of US with microbubbles and cross-linked PEIs. On one hand, sonoporation of US allows cross-linked PEI-DNA complexes into the cytoplasm. On the other hand, US can enhance endocytosis. The complexes will escape from the endosome to the cytoplasm. After reaching the cytoplasm, all the complexes will degrade into their low molecular-weight components and release DNA to enter the nucleus for transcription
Fig. 2Scheme of the patient-specific therapy using cell-reprogramming technology. Hepatocytes are obtained from a diabetic patient by a laparoscopic partial hepatectomy. Cross-linked polyethylenimine (PEI)-DNA complexes are transfected into these hepatocytes with the aid of ultrasound (US) with microbubbles. The transfection leads to trans-differentiation from hepatocytes into insulin-producing cells (IPCs). The induced IPCs are auto-transplanted to the liver via laparoscopic portal injection, to re-establish the endogenous secretion system of insulin