Journal articleNonviral gene delivery systems have a number of limitations including low transfection efficiency, specificity, and cytotoxicity, especially when the target cells are macrophages. To address these issues, the hypothesis tested in this study was that mannose functionalized nanohybrids composed of synthetic and natural polymers will improve transfection efficiency, cell viability, and cell specificity in macrophages. Robust nanohybrids were designed from hyaluronic acid (HA) and branched polyethyleneimine (bPEI) using carbodiimide chemistry. The reaction product, i.e., branched polyethyleneimine-hyaluronic acid (bPEI-HA) copolymer was subsequently functionalized with mannose at the terminal end of the copolymer to obtain mannos...
In this report, two biodegradable star-shaped polyasparamide derivatives and four analogues modified...
A possible solution to enhance existing drug and gene therapies is to develop hybrid nanocarriers ca...
Bhavin K Patel, Rajesh H Parikh, Nilesh Patel Department of Pharmaceutics and Pharmaceutical Techno...
Our goal was to design nanocarriers that specifically target and deliver therapeutics to polarized m...
Macrophages are desirable targets for gene therapy of cancer and other diseases. Cationic diblock co...
Coating the polycation/DNA binary complexes with PEGylated polyanions can improve long-circulation a...
Macrophages (MΦ) are involved in a number of pathological conditions, such as HIV infection/AIDS, tu...
The mechanisms associated with the cellular internalization of nanomedicines must be carefully consi...
AbstractPolyethylenimine (PEI) has been used as a vehicle to deliver genes to cancer cells and somat...
Yanliang Zhu,1 Gaofeng Liang,2 Bo Sun,1 Tian Tian,3 Feihu Hu,1 Zhongdang Xiao11State Key Laboratory ...
Background: To establish a potential gene-delivery system with the ability to deliver plasmid DNA to...
In this study, we tested the use of cationic polymer derivatives of biocompatible hyaluronic acid (H...
Macrophages (MΦ) are involved in a number of pathological conditions, such as HIV infection/AIDS, tu...
Hyaluronic-acid (HA)-coated LOX-1-specific siRNA-condensed cell-penetrating peptide (CPP) nanocomple...
Gene delivery is an important tool used in the study and manipulation of human pluripotent stem cell...
In this report, two biodegradable star-shaped polyasparamide derivatives and four analogues modified...
A possible solution to enhance existing drug and gene therapies is to develop hybrid nanocarriers ca...
Bhavin K Patel, Rajesh H Parikh, Nilesh Patel Department of Pharmaceutics and Pharmaceutical Techno...
Our goal was to design nanocarriers that specifically target and deliver therapeutics to polarized m...
Macrophages are desirable targets for gene therapy of cancer and other diseases. Cationic diblock co...
Coating the polycation/DNA binary complexes with PEGylated polyanions can improve long-circulation a...
Macrophages (MΦ) are involved in a number of pathological conditions, such as HIV infection/AIDS, tu...
The mechanisms associated with the cellular internalization of nanomedicines must be carefully consi...
AbstractPolyethylenimine (PEI) has been used as a vehicle to deliver genes to cancer cells and somat...
Yanliang Zhu,1 Gaofeng Liang,2 Bo Sun,1 Tian Tian,3 Feihu Hu,1 Zhongdang Xiao11State Key Laboratory ...
Background: To establish a potential gene-delivery system with the ability to deliver plasmid DNA to...
In this study, we tested the use of cationic polymer derivatives of biocompatible hyaluronic acid (H...
Macrophages (MΦ) are involved in a number of pathological conditions, such as HIV infection/AIDS, tu...
Hyaluronic-acid (HA)-coated LOX-1-specific siRNA-condensed cell-penetrating peptide (CPP) nanocomple...
Gene delivery is an important tool used in the study and manipulation of human pluripotent stem cell...
In this report, two biodegradable star-shaped polyasparamide derivatives and four analogues modified...
A possible solution to enhance existing drug and gene therapies is to develop hybrid nanocarriers ca...
Bhavin K Patel, Rajesh H Parikh, Nilesh Patel Department of Pharmaceutics and Pharmaceutical Techno...