Self-assembled nanoparticles containing hydrophobically modified glycol chitosan for gene delivery

2005 ◽  
Vol 103 (1) ◽  
pp. 235-243 ◽  
Author(s):  
Hyuk Sang Yoo ◽  
Jung Eun Lee ◽  
Hesson Chung ◽  
Ick Chan Kwon ◽  
Seo Young Jeong
2021 ◽  
Vol 19 (1) ◽  
Author(s):  
Chang Seong Kim ◽  
Ansuja Pulickal Mathew ◽  
Arathy Vasukutty ◽  
Saji Uthaman ◽  
Soo Yeon Joo ◽  
...  

Abstract Background Recently, we developed hydrophobically modified glycol chitosan (HGC) nanomicelles loaded with tacrolimus (TAC) (HGC-TAC) for the targeted renal delivery of TAC. Herein, we determined whether the administration of the HGC-TAC nanomicelles decreases kidney injury in a model of lupus nephritis. Lupus-prone female MRL/lpr mice were randomly assigned into three groups that received intravenous administration of either vehicle control, an equivalent dose of TAC, or HGC-TAC (0.5 mg/kg TAC) weekly for 8 weeks. Age-matched MRL/MpJ mice without Faslpr mutation were also treated with HGC vehicle and used as healthy controls. Results Weekly intravenous treatment with HGC-TAC significantly reduced genetically attributable lupus activity in lupus nephritis-positive mice. In addition, HGC-TAC treatment mitigated renal dysfunction, proteinuria, and histological injury, including glomerular proliferative lesions and tubulointerstitial infiltration. Furthermore, HGC-TAC treatment reduced renal inflammation and inflammatory gene expression and ameliorated increased apoptosis and glomerular fibrosis. Moreover, HGC-TAC administration regulated renal injury via the TGF-β1/MAPK/NF-κB signaling pathway. These renoprotective effects of HGC-TAC treatment were more potent in lupus mice compared to those of TAC treatment alone. Conclusion Our study indicates that weekly treatment with the HGC-TAC nanomicelles reduces kidney injury resulting from lupus nephritis by preventing inflammation, fibrosis, and apoptosis. This advantage of a new therapeutic modality using kidney-targeted HGC-TAC nanocarriers may improve drug adherence and provide treatment efficacy in lupus nephritis mice.


2021 ◽  
Vol 17 (9) ◽  
pp. 1765-1777
Author(s):  
Zaiyang Liu ◽  
Yiqun Wu ◽  
Hongjuan Dai ◽  
Shasha Li ◽  
Ying Zhu ◽  
...  

Osteosarcoma is one of the most aggressive cancers which greatly threatens the health of adolescents and surgery is difficult to resect the whole piece of tumor tissue. The residual tumor cells might proliferate at the tumor site and invade into the blood circulation, leading to tumor recurrence and metastasis. Besides, the invasion of tumor cells could also lead to bone injury. We designed a recombinant fibronectin-cadherin fusion protein/hydrophobically modified glycol chitosan-PTX nanoparticles (rFN-CDH/HGC-PTX) layer-by-layer self-assembly polymer based on biphasic calcium phosphate ceramic (BCP) (BCP-PEI-(rFN/CDH-PTX/HGC)n-rFN/CDH). The SEM, FTIR, XPS and contact angle experiments proved the successful synthesis of the polymer. The chemotherapy drug PTX and bone-repairing-related rFN/CDH fusion protein could be stably released within one week and the in vitro experiments exhibited the efficacy of the polymer to kill residual tumor cells and promote the proliferation of osteoblast, confirming that our polymer was a superior material for postoperative osteosarcoma therapy.


Materials ◽  
2019 ◽  
Vol 12 (10) ◽  
pp. 1635 ◽  
Author(s):  
Hee-Jin Kim ◽  
Sungwoo Cho ◽  
Seung Joo Oh ◽  
Sung Gyu Shin ◽  
Hee Wook Ryu ◽  
...  

Hydrogels incorporated with hydrophobic motifs have received considerable attention to recapitulate the cellular microenvironments, specifically for the bio-mineralization of a 3D matrix. Introduction of hydrophobic molecules into a hydrogel often results in irregular arrangement of the motifs, and further phase separation of hydrophobic domains, but limited efforts have been made to resolve this challenge in developing the hydrophobically-modified hydrogel. Therefore, this study presents an advanced integrative strategy to incorporate hydrophobic domains regularly in a hydrogel using self-assembled domains formed with polymer cross-linkers, building blocks of a hydrogel. Self-assemblies formed by polymer cross-linkers were examined as micro-domains to incorporate hydrophobic motifs in a hydrogel. The self-assembled structures in a pre-gelled solution were confirmed with the fluorescence analysis and the hydrophobicity of a hydrogel could be tuned by incorporating the hydrophobic chains in a controlled manner. Overall, the results of this study would greatly serve to tuning performance of a wide array of hydrophobically-modified hydrogels in drug delivery, cell therapies and tissue engineering.


2021 ◽  
Vol 158 ◽  
pp. 62-71
Author(s):  
Alexandru Chivu ◽  
Kantaraja Chindera ◽  
Graça Mendes ◽  
Angela An ◽  
Brian Davidson ◽  
...  

2002 ◽  
Vol 2 (6) ◽  
pp. 251-256 ◽  
Author(s):  
Yoshiyuki Koyama ◽  
Etsuko Yamada ◽  
Tomoko Ito ◽  
Yuri Mizutani ◽  
Tetsuji Yamaoka
Keyword(s):  

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