Literature DB >> 23262833

Drug loading and release on tumor cells using silk fibroin-albumin nanoparticles as carriers.

B Subia1, S C Kundu.   

Abstract

Polymeric and biodegradable nanoparticles are frequently used in drug delivery systems. In this study silk fibroin-albumin blended nanoparticles were prepared using the desolvation method without any surfactant. These nanoparticles are easily internalized by the cells, reside within perinuclear spaces and act as carriers for delivery of the model drug methotrexate. Methotrexate loaded nanoparticles have better encapsulation efficiency, drug loading ability and less toxicity. The in vitro release behavior of methotrexate from the nanoparticles suggests that about 85% of the drug gets released after 12 days. The encapsulation and loading of a drug would depend on factors such as size, charge and hydrophobicity, which affect drug release. MTT assay and conjugation of particles with FITC demonstrate that the silk fibroin-albumin nanoparticles do not affect the viability and biocompatibility of cells. This blended nanoparticle, therefore, could be a promising nanocarrier for the delivery of drugs and other bioactive molecules.

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Year:  2012        PMID: 23262833     DOI: 10.1088/0957-4484/24/3/035103

Source DB:  PubMed          Journal:  Nanotechnology        ISSN: 0957-4484            Impact factor:   3.874


  18 in total

Review 1.  Extended release formulations using silk proteins for controlled delivery of therapeutics.

Authors:  Burcin Yavuz; Laura Chambre; David L Kaplan
Journal:  Expert Opin Drug Deliv       Date:  2019-07-01       Impact factor: 6.648

Review 2.  Silk as an innovative biomaterial for cancer therapy.

Authors:  Katarzyna Jastrzebska; Kamil Kucharczyk; Anna Florczak; Ewelina Dondajewska; Andrzej Mackiewicz; Hanna Dams-Kozlowska
Journal:  Rep Pract Oncol Radiother       Date:  2014-12-18

3.  Manufacture and Drug Delivery Applications of Silk Nanoparticles.

Authors:  Thidarat Wongpinyochit; Blair F Johnston; F Philipp Seib
Journal:  J Vis Exp       Date:  2016-10-08       Impact factor: 1.355

4.  Nanogels of carboxymethyl chitosan and lysozyme encapsulated amorphous calcium phosphate to occlude dentinal tubules.

Authors:  Jinhua Song; Haorong Wang; Yunqi Yang; Zuohui Xiao; Haibao Lin; Lichun Jin; Yan Xue; Mingli Lin; Fuyu Chen; Mengqi Zhu; Yanhong Zhao; Zhongjun Qiu; Yanqiu Li; Xu Zhang
Journal:  J Mater Sci Mater Med       Date:  2018-06-11       Impact factor: 3.896

Review 5.  Harnessing albumin as a carrier for cancer therapies.

Authors:  Ella N Hoogenboezem; Craig L Duvall
Journal:  Adv Drug Deliv Rev       Date:  2018-07-27       Impact factor: 15.470

Review 6.  Silk fibroin-based nanoparticles for drug delivery.

Authors:  Zheng Zhao; Yi Li; Mao-Bin Xie
Journal:  Int J Mol Sci       Date:  2015-03-04       Impact factor: 5.923

7.  Synthetic nanoparticles of bovine serum albumin with entrapped salicylic acid.

Authors:  E S Bronze-Uhle; B C Costa; V F Ximenes; P N Lisboa-Filho
Journal:  Nanotechnol Sci Appl       Date:  2016-12-28

8.  Albumin-based nanoparticles as methylprednisolone carriers for targeted delivery towards the neonatal Fc receptor in glomerular podocytes.

Authors:  Lin Wu; Mingyu Chen; Huijuan Mao; Ningning Wang; Bo Zhang; Xiufen Zhao; Jun Qian; Changying Xing
Journal:  Int J Mol Med       Date:  2017-02-21       Impact factor: 4.101

9.  Formulation of Biologically-Inspired Silk-Based Drug Carriers for Pulmonary Delivery Targeted for Lung Cancer.

Authors:  Sally Yunsun Kim; Deboki Naskar; Subhas C Kundu; David P Bishop; Philip A Doble; Alan V Boddy; Hak-Kim Chan; Ivan B Wall; Wojciech Chrzanowski
Journal:  Sci Rep       Date:  2015-08-03       Impact factor: 4.379

10.  A Biocompatible and Biodegradable Protein Hydrogel with Green and Red Autofluorescence: Preparation, Characterization and In Vivo Biodegradation Tracking and Modeling.

Authors:  Xiaoyu Ma; Xiangcheng Sun; Derek Hargrove; Jun Chen; Donghui Song; Qiuchen Dong; Xiuling Lu; Tai-Hsi Fan; Youjun Fu; Yu Lei
Journal:  Sci Rep       Date:  2016-01-27       Impact factor: 4.379

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