Effects of Ultrasonic Stimulation on Mechanical and Release Properties of Alginate Beads
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摘要: 为了测量海藻酸钠微球的剪切模量,并检测在超声刺激下海藻酸钠微球的机械特性和释放特性的变化,采用传统挤压方法制备海藻酸钠微球.在稳定状态下,通过压缩实验技术和Hertz理论模型分析得到海藻酸钠微球的剪切模量.采用不同的超声刺激海藻酸钠微球,通过测量其剪切模量,观察超声刺激对微球的机械特性的影响.实验对于包埋牛血清蛋白(bovine serum albumin,BSA)的海藻酸钠微球,采用Higuchi模型分析其释放特性.结果表明:海藻酸钠微球的剪切模量为42.5 kPa,超声刺激对微球的剪切模量无明显影响,而其释放速率受到超声刺激时间和功率的影响.Abstract: The aim of this research is to fabricate alginate beads and measure their mechanical properties;to investigate the changes of mechanical properties and release properties of alginate beads under ultrasonic stimulation.Alginate bead was fabricated with the extrusion method.Centered on bead under stable condition,its shear module was analyzed with the compression test technique and Hertz theory.Alginate bead was sonicated by different ultrasonic stimulations.By measuring the shear module of beads sonicated,effects of ultrasonic stimulation on the mechanical property of alginate beads incorporating bovine serum albumin(BSA) were investigated,and its passive release property was analyzed by Higuchi model.The results show that the shear module of alginate beads is 42.5 kPa,the ultrasonic stimulation has no effect on their mechanical properties,and their release rate can be changed by ultrasonic stimulation power and stimulation time.
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Keywords:
- alginate /
- beads /
- ultrasonic stimulation
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[1] 包敏,周宇峰,周祺惠,等.超声可控释药物体系研究进展[J].中国生物医学工程学报,2013,32(6):731-740.BAO Min,ZHOU Yu-feng,ZHOU Qi-hui,et al.Recent advances in the ultrasound-mediated drug delivery system[J].Chinese Journal of Biomedical Engineering,2013,32(6):731-740.(in Chinese) [2] SCHROEDER A,KOST J,BARENHOLZ Y,et al.Ultrasound,liposomes,and drug delivery:principles for using ultrasound to control the release of drugs from liposomes[J].Chem Phys Lipids,2009,162(1/2):1-16.
[3] 董虹美,王志刚,冉海涛,等.超声辐照载10-HCPT微泡在小鼠H22肝癌移植瘤的定位释放研究[J].中国超声医学杂志,2010,26(7):592-596.DONG Hong-mei,WANG Zhi-gang,RAN Hai-tao,et al.Targeted release of 10-HCPT-loaded microbubbles in mice with H22 tumor with ultrasound irradiation[J].Chinese Journal of Ultrasound in Medicine,2010,26(7):592-596.(in Chinese) [4] SHCHUKIN D G,GORIN D A,MOHWALD H.Ultrasonically induced opening of polyelectrolyte microcontainers[J].Langmuir,2006,22(17):7400-7404.
[5] ZHANG L,SALSA C A-V.Can sonication enhance release from liquid-core capsules with a hydrogel membrane[J].J Colloid Interface Sci,2012,368(1):648-654.
[6] KOST J,LANGER R S.Ultrasound enhancement of membrane permeability[J].J Acoust Soc Am,1989,86(1):855-855.
[7] LAVON I,KOST J.Mass transport enhancement by ultrasound in non-degradable polymeric controlled release systems[J].J Control Release,1998,54(1):1-7.
[8] MOREAU J L,XU H H.Fluoride releasing restorative materials;effects of pH on mechanical properties and ion release[J].Dent Mater,2010,26(11):227-235.
[9] TUNG M A,ROGERS M D H.General compressive measurements[M].New York;John Wiley and Sons,Inc,2001:967.
[10] JOHNSON K,KENDALL L K,ROBERTS A D.Surface energy and the contact of elastic solids[J].Proc R Soc Lond:A Math Phys Sci,1971,324(1558):301-313.
[11] DAVID B,DORE E,JAFFRIN M Y,et al.Mass transfers in a fluidized bed bioreactor using alginate beads for a future bioartificial liver[J].Int J Artif Organs,2004,27(4):284-293.
[12] SALSAC A-V,ZHANG L,GHERBEZZA J,et al.Measurement of mechanical properties of alginate beads using ultrasound[C]//19-(ame)Congres de Mecanique.Marseille;University of Aix-Marseille,2009.
[13] OUWERX C,VELINGS N,MESTDAGH M M,et al.Physico chemical properties and rheology of alginate gel beads formed with various divalent cations[J].Polym Gels Networks,1998,6(1):393-408.
[14] LEROUX M,GUILAK A F,SETTON L A.Compressive and shear properties of alginate gel:effects of sodium ions and alginate concentration[J].J Biomed Mater Res,1999,47(1):46-53.
[15] HIGUCHI T.Mechanism of sustained-action medication theoretical analysis of rate of release of solid drugs dispersed in solid matrices[J].J Pharm Sci,1963,52(12):1145-1149.
[16] 甄卫军,袁龙飞,李先进,等.PLA/CoFe_2O_4载药微球的制备、表征及释药性能[J].中国抗生素杂志,2010,35(2):123-127.ZHEN Wei-jun,YUAN Long-fei,LI Xian-jin,et al.Preparation,characterization and drug release propetirty for PLA/Cofe_2O_4 drug-loaded microsphere[J].Chinese Journal of Antibiotics,2010,35(2):123-127.(in Chinese) [17] 江田民,谭丰苹,杜佳丽,等.格列吡嗪控释微球的制备及体外释药性质[J].清华大学学报:自然科学版,2004,44(6):732-735.JIANG Tian-min,TAN Feng-ping,DU Jia-li,et al.Preparation and in vitro release of glipizide loaded controlled release microspheres[J].Journal of Tsinghua University:Science and Technology,2004,44(6):732-735.(in Chinese) [18] 梁士利,韩冬,徐美玲,等.超声药物释放空化动力学行为研究[J].发光学报,2012,32(2):182-187.LIANG Shi-li,HAN Dong,XU Mei-ling,et al.Investigation of microbubble dynamics in drug release by ultrasound cavitation[J].Chinese Journal of Luminescence,2012,32(2):182-187.(in Chinese) [19] SCOTT F,KASPER L.Acoustically augmented diffusional transport[J].J Acoust Soc Am,1973,53(1):59-64.
[20] LAVON I,KOST J.Ultrasound and transdermal drug delivery[J].Drug Discov Today,2004,9(15):670-676.
[21] 马萍,祝力,孙淑英,等.海藻酸钙凝胶微球的制备和pH依赖性溶胀[J].中国海洋药物杂志,2003(5):35-38.MA Ping,ZHU Li,SUN Shu-ying,et al.Preparation and pH-sensitive reswelling of calcium alginate gel beads[J].Chinese Journal of Marine Drugs,2003(5):35-38.(in Chinese) [22] ASCHKENASY C,KOST J.On-demand release by ultrasound from osmotically swollen hydrophobic matrices[J].J Control Release,2005,110:58-66.
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