Gene therapy is a targeted therapy which can be used in the treatment of various acquired and inherited diseases. Inhabitation of a gene function, restoring or improving a gene, or gaining a new function can be achieved by gene therapy strategies. The most crucial step in this therapy is delivering the therapeutic material to the target. Nanosized calcium phosphates (CaPs) have been considered as promising carriers due to their excellent biocompatibility. In this chapter, the delivery of DNA, siRNA, and miRNA by using CaP nanocarriers were compiled in detail and the main parameters which can affect the carrier properties and thus the gene transfer efficiency were also discussed
Yachun Liu1,2,*, Tao Wang1,*, Fangli He1,*, Qian Liu1,*, Dexi Zhang2, Shuanglin Xiang1, Shengpei Su2...
The present study describes hybrid nanoparticles, built by alternate deposition of siRNA and modifie...
Calcium phosphate system has been used widely in in vitro gene delivery for almost four decades. Exc...
Gene therapy is a targeted therapy which can be used in the treatment of various acquired and inher...
[[abstract]]A major aim of gene therapy is the efficient and specific delivery of therapeutic gene i...
Bone-related injury and disease constitute a significant global burden both socially and economicall...
Despite the long history of nanoparticulate calcium phosphate (CaP) as a non-viral transfection agen...
The first part of this review looks at the fundamental properties of hydroxyapatite (HAP), the basic...
To explore an efficient gene vector in cancer gene therapy, a novel nonviral vector calcium phosphat...
A lipid coated calcium phosphate (LCP) nanoparticle (NP) formulation was developed for efficient del...
Small interfering RNAs (siRNA) are short nucleic acid fragments of about 20–27 nucleotides, which ca...
Bone injuries and diseases constitute a burden both socially and economically, as the consequences ...
The optimized lipid coated calcium phosphate nanoparticles more efficiently deliver functional siRNA...
The first part of this review looks at the fundamental properties of hydroxyapatite (HAP), the basic...
Xia Cao*, Wenwen Deng*, Yuan Wei*, Weiyan Su, Yan Yang, Yawei Wei, Jiangnan Yu, Ximing XuDepartment ...
Yachun Liu1,2,*, Tao Wang1,*, Fangli He1,*, Qian Liu1,*, Dexi Zhang2, Shuanglin Xiang1, Shengpei Su2...
The present study describes hybrid nanoparticles, built by alternate deposition of siRNA and modifie...
Calcium phosphate system has been used widely in in vitro gene delivery for almost four decades. Exc...
Gene therapy is a targeted therapy which can be used in the treatment of various acquired and inher...
[[abstract]]A major aim of gene therapy is the efficient and specific delivery of therapeutic gene i...
Bone-related injury and disease constitute a significant global burden both socially and economicall...
Despite the long history of nanoparticulate calcium phosphate (CaP) as a non-viral transfection agen...
The first part of this review looks at the fundamental properties of hydroxyapatite (HAP), the basic...
To explore an efficient gene vector in cancer gene therapy, a novel nonviral vector calcium phosphat...
A lipid coated calcium phosphate (LCP) nanoparticle (NP) formulation was developed for efficient del...
Small interfering RNAs (siRNA) are short nucleic acid fragments of about 20–27 nucleotides, which ca...
Bone injuries and diseases constitute a burden both socially and economically, as the consequences ...
The optimized lipid coated calcium phosphate nanoparticles more efficiently deliver functional siRNA...
The first part of this review looks at the fundamental properties of hydroxyapatite (HAP), the basic...
Xia Cao*, Wenwen Deng*, Yuan Wei*, Weiyan Su, Yan Yang, Yawei Wei, Jiangnan Yu, Ximing XuDepartment ...
Yachun Liu1,2,*, Tao Wang1,*, Fangli He1,*, Qian Liu1,*, Dexi Zhang2, Shuanglin Xiang1, Shengpei Su2...
The present study describes hybrid nanoparticles, built by alternate deposition of siRNA and modifie...
Calcium phosphate system has been used widely in in vitro gene delivery for almost four decades. Exc...