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https://link.springer.com/article/10.1007%2Fs00449-007-0112-5
Feb 04, 2007 · The synthesis of modified hydrophobic starch nanoparticles using long chain fatty acids was accomplished. Grafting of fatty acid on the starch was done using potassium persulphate as catalyst and the formation of graft polymer was confirmed by FTIR spectra. The thermal properties of the native and grafted starch were investigated using simultaneous TG-DTA and DSC. The graft polymerization …Author: C. K. Simi, T. Emilia Abraham
https://www.researchgate.net/publication/6526809_Hydrophobic_grafted_and_cross-linked_starch_nanoparticles_for_drug_delivery
Hydrophobic-grafted and cross-linked starch nanoparticles were used for drug delivery, and indomethacin was incorporated as the model drug ( Abraham and Simi 2007). Hydrophilic amylopectin was ...
http://shodhganga.inflibnet.ac.in/bitstream/10603/1410/11/11_chapter%204.pdf
CHAPTER 4 Hydrophobic grafted and crosslinked starch nano particles for drug delivery The Synthesis of modified hydrophobic starch nanoparticles using long chain fatty acids was accomplished. The modified starch nanoparticles were crosslinked with sodium tripoly phosphate for better stabilisation.
https://www.sciencedirect.com/science/article/pii/S102630981100071X
An efficient method for synthesis of hydrophobically modified starch without using organic solvents is described. The esterification of starch was performed with long chain fatty acid chlorides (C 8, C 12, C 16), in two steps.In the first step, native starch was dispersed in an alkali reaction medium, and in the second step, it was treated for esterification.Author: H. Namazi, F. Fathi, A. Dadkhah
https://www.sciencedirect.com/science/article/pii/S0168365909005768
In addition, we explored the potential of nanoparticles formulated with propyl-starch derivatives for transdermal drug delivery. Both nanoparticle systems, PS-1 and PS-1.45, showed high encapsulation efficiency for a wide range of chemically different drugs. The drug release was driven by hydrophobic character of both the polymer and the drug.Author: M.J. Santander-Ortega, M.J. Santander-Ortega, T. Stauner, B. Loretz, J.L. Ortega-Vinuesa, D. Bastos-...
https://link.springer.com/chapter/10.1007/978-981-10-4732-9_11
Jun 03, 2017 · Recently starch nanoparticles are found to have applications as fat replacers and emulsion stabilizers. Due to growing interest in starch nanoparticles, in the last decade, various methods have been developed for their synthesis. Acid hydrolysis, regeneration, and physical methods are widely used for the preparation of starch nanoparticles.Author: Kawaljit Singh Sandhu, Vikash Nain
https://pubs.acs.org/doi/abs/10.1021/bm901428y
Starch is a natural, renewable, and biodegradable polymer produced by many plants as a source of stored energy. It is the second most abundant biomass material in nature. The starch structure has been under research for years, and because of its complexity, an universally accepted model is still lacking (Buleon, A.; et al. Int. J. Biol. Macromol. 1998, 23, 85−112). However, the predominant ...Author: Le Corre D, Bras J, Dufresne A
https://www.researchgate.net/publication/43225873_Starch_Nanoparticles_A_Review
Starch Nanoparticles: A Review ... this study firstly applied cross-linked starch-based nanocomposite coating on the preservation of pear, which had practical significance for expanding the use of ...
https://www.hindawi.com/journals/jnm/2014/763736/
Journal of Nanomaterials / 2014 / Article. Article Sections. ... precursor material for synthesizing starch-based nanoparticles for various biomedical and industry applications such as drug delivery carriers [4 ... “Hydrophobic grafted and cross-linked starch nanoparticles for drug delivery,” Bioprocess and Biosystems Engineering, vol. 30, ...Author: Suk Fun Chin, Aressa Azman, Suh Cem Pang
https://www.thefreelibrary.com/Size+controlled+synthesis+of+starch+nanoparticles+by+a+microemulsion...-a0423500547
The effects of surfactant concentrations on the particles sizes of starch nanoparticles were investigated by using various concentrations of span 60 (3:1 ratio of cyclohexane and ethanol) as shown in Figure 4. The mean particles sizes of starch nanoparticles decreased from 140 to 96 nm as the concentration of span 60 increases up to 3% (w/v).
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