4.6

CiteScore

2.2

Impact Factor
  • ISSN 1674-8301
  • CN 32-1810/R
Daozhen Chen, Qiusha Tang, Wenqun Xue, Jingying Xiang, Li Zhang, Xinru Wang. The preparation and characterization of folate-conjugated human serum albumin magnetic cisplatin nanoparticles[J]. The Journal of Biomedical Research, 2010, 24(1): 26-32.
Citation: Daozhen Chen, Qiusha Tang, Wenqun Xue, Jingying Xiang, Li Zhang, Xinru Wang. The preparation and characterization of folate-conjugated human serum albumin magnetic cisplatin nanoparticles[J]. The Journal of Biomedical Research, 2010, 24(1): 26-32.

The preparation and characterization of folate-conjugated human serum albumin magnetic cisplatin nanoparticles

Funds: 

This work was supported by a grant 30872999 from the National Natural Science Foundation of China and a grant BK2007023 from Jiangsu Province Natural Science Foundation of China.

More Information
  • Objective: Nanoparticles are becoming an important method of targeted drug delivery. To evaluate the importance of folate-conjugated human serum albumin (HSA) magnetic nanoparticles (Folate-CDDP/HSA MNP), we prepared drug-loaded Folate-CDDP/HSA MNPs and characterized their features. Methods: First, folate was conjugated with HSA under the effect of a condensing agent, and the conjugating rate was evaluated by a colorimetric method using 2, 4, 6 - trinitrobenzene sulfonic acid. Second, under N2 gas, Fe3O4 magnetic nanomaterials were prepared and characterized by using transmission electron microscopy (TEM), SEM-EDS and X-ray diffraction (XRD). Finally, Folate-CDDP/HSA MNP was prepared by using a solvent evaporation technique. TEM was used to observe particle morphology. The particle size and distribution of the prepared complexes were determined by a Laser particle size analyzer. Drug loading volume and drug release were investigated by a high performance liquid chromatography method (HPLC) in vitro. Results: We successfully prepared folate-conjugated HSA and its conjugating rate was 27.26 μg/mg. Under TEM, Fe3O4 magnetic nanoparticles were highly electron density and had an even size distribution in the range of 10-20 nm. It was confirmed by SEM-EDS and XRD that Fe3O4 magnetic nanoparticles had been successfully prepared. Under TEM, drug-loaded magnetic nanoparticles were observed, which had a round shape, similar uniform size and smooth surface. Their average size was 79 nm which was determined by laser scattering, and they exhibited magnetic responsiveness. Encapsulation efficiency was 89.75% and effective drug loading was calculated to be 15.25%. The release results in vitro showed that the half release time (t1/2) of cisplatin in cisplatin Solution and Folate-CDDP/HSA MNP was 65 min and 24 h respectively, which indicated that microspheres had an obvious effect of sustained-release. Conclusion: Folate-CDDP/HSA MNPs were prepared successfully. The preparation process and related characteristics data provided a foundation for further study, including the mechanism of the nanoparticles distribution in vivo and their intake by tumor cells.
  • Related Articles

    [1]Yue Xiao, Yue Peng, Chi Zhang, Wei Liu, Kehan Wang, Jing Li. hucMSC-derived exosomes protect ovarian reserve and restore ovarian function in cisplatin treated mice[J]. The Journal of Biomedical Research, 2023, 37(5): 382-393. DOI: 10.7555/JBR.36.20220166
    [2]Yu Xinyu, Xieripu Adilijiang, Xu Qilan, Zulipikaer Azhati, Song Yiyan, Cai Ling, Chen Jin. GSH-responsive curcumin/doxorubicin encapsulated Bactrian camel serum albumin nanocomposites with synergistic effect against lung cancer cells[J]. The Journal of Biomedical Research, 2020, 34(1): 54-66. DOI: 10.7555/JBR.33.20190036
    [3]Fengzhen Wang, Mingwan Zhang, Dongsheng Zhang, Yuan Huang, Li Chen, Sunmin Jiang, Kun Shi, Rui Li. Preparation, optimization, and characterization of chitosancoated solid lipid nanoparticles for ocular drug delivery[J]. The Journal of Biomedical Research, 2018, 32(6): 411-423. DOI: 10.7555/JBR.32.20160170
    [4]Cuiying Li, Haiyan Gong, Lijun Ling, Liwen Du, Tong Su, Shui Wang, Jie Wang. Diagnostic performance of contrast-enhanced ultrasound and enhanced magnetic resonance for breast nodules[J]. The Journal of Biomedical Research, 2018, 32(3): 198-207. DOI: 10.7555/JBR.32.20180015
    [5]Aline D. Lima, Ning Hua, Raul C. Maranhão, James A. Hamilton. Evaluation of atherosclerotic lesions in cholesterol-fed mice during treatment with paclitaxel in lipid nanoparticles: a magnetic resonance imaging study[J]. The Journal of Biomedical Research, 2017, 31(2): 116-121. DOI: 10.7555/JBR.31.20160123
    [6]Oluyomi S. Adeyemi, Faoziyat A. Sulaiman. Evaluation of metal nanoparticles for drug delivery systems[J]. The Journal of Biomedical Research, 2015, 29(2): 145-149. DOI: 10.7555/JBR.28.20130096
    [7]Amit Kumar Sharma, Rajeev Kumar Tiwari, Mulayam Singh Gaur. Three dimensional structure prediction and proton nuclear magnetic resonance analysis of toxic pesticides in human blood plasma[J]. The Journal of Biomedical Research, 2012, 26(3): 170-184. DOI: 10.7555/JBR.26.20110132
    [8]Qi Zheng, Yu Yao, Kejun Nan. Weekly intravenous nanoparticle albumin-bound paclitaxel for elderly patients with stage IV non-small-cell lung cancer: a series of 20 cases[J]. The Journal of Biomedical Research, 2012, 26(3): 159-164. DOI: 10.7555/JBR.26.20110106
    [9]Ibrahim Mohamed Hamouda. Current perspectives of nanoparticles in medical and dental biomaterials[J]. The Journal of Biomedical Research, 2012, 26(3): 143-151. DOI: 10.7555/JBR.26.20120027
    [10]Lihua Liu, Ming Zhang, Yuan Wang, Min Li. The relationship between the expression of tumor matrix-metalloproteinase and the characteristics of magnetic resonance imaging of human gliomas[J]. The Journal of Biomedical Research, 2010, 24(2): 124-131.

Catalog

    Article Metrics

    Article views (2838) PDF downloads (1572) Cited by()
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return