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高压乳匀法制备中药固体脂质纳米粒作者:厉英超1;董蕾2;贾皑1;苌新明1;薛挥1(西安交通大学医学院1第一附属医院消化内科,陕西西安710061;2第二附属医院消化内科,陕西西安710004)摘要:目的采用高压乳匀法将中药有效成分包载于固体脂质纳米粒(SLN),并研究制备的纳米粒的主要性质。方法选择水飞蓟宾(SIL)和汉防己甲素(TET)为模型药物,采用高压乳匀法将其分别包载于SLN。在电镜下观察其形态,以粒度分析仪和Zeta电位分析仪测定其粒径和Zeta电位,用葡聚糖凝胶柱层析法和HPLC测定其包封率和载药量,还观察了SLN的稳定性。结果高压乳匀法制备的SIL-SLN呈球状,形态规则,平均粒径为(1578)nm,Zeta电位为(-35.362.68)mV,包封率为95.64%,载药量为4.63%;TET-SLN呈片状存在,不规则,粒径较小,平均粒径为(473)nm,Zeta电位为(-32.992.54)mV,包封率为97.82%,载药量为4.76%。SIL-SLN和TET-SLN有较高稳定性。结论高压乳匀法适于制备包载中药的SLN。关键词:水飞蓟宾;汉防己甲素;固体脂质纳米粒;高压乳匀法;中药现代化中图分类号:R944文献标识码:A文章编号:1673-4254(2006)05-0541-04PreParationofsolidlipidnanoParticlesloadedwithtraditionalChinesemedicinebyhigh-pressurehomogenizationLIYing-chao1;DONGLei2;JIAAi1;CHANGXin-ming1;XUEHui11DePartmentofGastroenterology,FirstAffiliatedHospital,MedicalCollegeofXianJiaotongUniversity,Xian710061,China;2DePartmentofGastroenterology,SecondAffiliatedHospital,MedicalCollegeofXianJiaotongUniversity,Xian710004,ChinaAbstract:ObjectiveToinvestigatethepreParationofsolidlipidnanoParticles(SLN)loadedwithtraditionalChinesemedicinesbyhigh-pressurehomogenization,andstudythephysicochemicalcharacteristicsoftheParticlesproducedbythismethod.MethodsThemodeltraditionalChinesemedicines,silibinin(SIL)andtetrandrine(TET),wereincorporatedintoSLNseParatelybyhigh-pressurehomogenization.TransmissionelectronmicroscopewasemployedtostudytheshapeoftheParticles.ParticlecharacterizationsystemandzetapotentialanalyzerwereusedtostudythediameterandzetapotentialofSLNinthesuspension.Theentrapmentefficiencyanddrugloadingweredeterminedwiththesephadexgelchromatographyandhigh-performanceliquidchromatography.ThestabilityofSLNwasalsostudied.ResultsTheSIL-SLNspreParedbyhigh-pressurehomogenizationweresphericalandregular.ThemeandiameterandzetapotentialofSIL-SLNindistilledwaterwere1578nmand-35.362.68mV,respectively.Theentrapmentefficiencywas95.64%,andthedrugloadingwas4.63%.TheTET-SLNwasplatelet-shaped,irregularandsmaller.ThemeandiameterandzetapotentialofTET-SLNwere473nmand-32.992.54mV,respectively,withdrugloadingof4.76%,andupto97.82%ofTETwasincorporated.SIL-SLNandTET-SLNhadgoodstability.ConclusionHigh-pressurehomogenizationisfeasibleforpreParingSLNloadedwithtraditionalChinesemedicines.Keywords:silibinin;tetrandrine;solidlipidnanoParticles;high-pressurehomogenization;traditionalChinesemedicinesSupportedbyScienceandTechnologyProjectofXianCity(GG04133).LIYing-chao(1974-),PhD,attendingphysician,specializedinpharmaceuticalresearchofliverfibrosis,TelE-mail:l_163.comCorrespondingauthor:DONGLei,medicalprofessor,Tel29368,E-mail:SolidlipidnanoParticles(SLNs)areParticlesmadefromsolidlipidswithameandiameterofapproximately50to1000nmtoserveasanalternativecolloidalcarriersystemforcontrolleddrugdelivery1.ComParedwithotherParticulatecarriersSLNhasseveraladvantagesfordrugdeliverysuchasitsgoodbiocomPatibility2,biodegradability3,highbioavailability4,andeffectstargetingtheliverandspleen.Inrecentyears,markedlyincreasingstudiesonSLNhavebeenreported,especiallywiththemethodofhigh-pressurehomogenization5.Nevertheless,onlyafewinvestigationshavebeenconductedinregardwiththeincorporationofeffectivecomponentsoftraditionalChinesemedicinesintoSLN.SilymarinisapurifiedextractfromthemilkthistleSilybummarianum(L.)Gaertn,whichiscomposedofamixtureof4isomericflavonolignans,namelysilibinin(orsilybin,SIL),isosilibinin,silidianinandsilychristin.SIL,whichconstitutes60%-70%ofthesilymarinmixture,hasbeenidentifiedasthemajoractivecomponent6.Tetrandrine(TET)isabisbenzylisoquinolinealkaloidextractedfromthetraditionalChinesemedicinalherbRadixstephaniatetrandrae.SILandTETpossesswidespectrumsofpharmacologicalactivities7891011.ThesetwoeffectivecomponentsofthetraditionalChinesemedicineshavehighlipophilicityandareexcellentcandidatesforSLNencapsulation.Byusingthisdrugdeliverysystem,ahighbioavailabilityandanintravenousadministrationarepossible.Inthepresentstudy,SIL-SLNandTET-SLNwerepreParedbyhigh-pressurehomogenization,andthephysicochemicalcharacteristicsoftheParticlesproducedbythismethodwereanalyzed.MATERIALSANDMETHODSDrugsandreagentsSIL(95%)waspurchasedfromPanjinGreenBiologicalDevelopmentCo.Ltd.,China.TET(98%)waspurchasedfromShanchuanBiologicalCo.Ltd.,Xian.Cholesterin(obtainedfromZhengxiangChemicalResearchInstitute,Shanghai)andstearicacid(TiandaChemicalIndustryLtd.,Tianjin)wereusedseParatelyasthelipidmaterialsofSLN.SoybeanlecithinwasobtainedfromAuboxingCo.Ltd.,Beijing.Sephadexgel-50waspurchasedfromTianjinChemicalIndustryLtd.Methanol(HPLCgrade)andabsolutealcoholwassuppliedbyXianChemicalIndustryLtd.Glycerin(AmoyGlycerinIndustryLtd.)wasusedasacoemulsifierinwaterphase.PreParationofSIL-SLNSIL(75mg),cholesterin(1.5g)andsoybeanlecithin(1.0g)wereweighedpreciselywithelectronicbalance(BP-121S,sartoriusLtd.,Germany)anddissolvedin10mlabsolutealcoholinwaterbathat70.AnaqueousphasewaspreParedbydissolving45mlglycerinin75mldistilledwater.Theresultantorganicsolutionwasrapidlyinjectedintothestirredaqueousphase(80).Theresultingsuspensionwasstirredcontinuouslyat80for2h.TheoriginalSIL-SLNsuspensionwasthenloadedintoahigh-pressurehomogenizer(15M-8BA,APV,UK,5cyclesat50MPa)andthesampleswerekeptat4.PreParationofTET-SLNTET(75mg),stearicacid(1.5g)andsoybeanlecithin(1.0g)wereweighedpreciselyandpreParedintoTET-SLNsuspensionaccordingtothemethoddescribedabove.TransmissionelectronmicroscopyThemorphologyofSIL-SLNandTET-SLNwasexaminedwithtransmissionelectronmicroscope(H-600,Hitachi,JaPan).Thesampleswerestainedwith2%(m/V)phosphotungsticacidfor30sandplacedoncoppergridswithfilmsforviewing.MeandiameterandzetapotentialParticlecharacterizationsystem(Mastersizer2000,MalvernInstruments,UK,20nm-2000m)andzetapotentialanalyzer(ZetasizerNano,MalvernInstruments,UK)wereusedtostudythediameterandzetapotentialofSLNindistilledwater.ThreesamplesofSIL-SLN/TET-SLNwerepreParedaccordingtothepreviouslydescribedmethodandeachsamplewasmeasured3timestocalculatethemeandiameterandzetapotential.Entrapmentefficiency(EE)anddrugloading(DL)ofSIL-SLN.Chromatographiccondition:ThechromatographiccolumnofPlanetsilC18(4.6mm15cm)wasusedwithmobilephaseofmethanol/0.1mol/Lphosphatebuffer(35/65,V/V,pH3.0),flowrateof1.0ml/min,columntemperatureof40,anddetectionwavelengthof288nm.Thecontrolsolutions(0.050,0.161,1.605,14.19,28.38,56.75,113.50g/ml)waspreParedbydissolvingpreciselyweighedSILinthemobilephase.TheamountofSILenteringthereceptorcomPartmentwasdeterminedwithhigh-performanceliquidchromatogram(HPLC,LC-2010,Shimadzu,JaPan).Theintegralcalculusofthechromatographicpeakarea(A)wasrecordedastheYaxis,andtheconcentrationofSIL(C)astheXaxis.Drugrecoverywascalculatedfromthefollowingequation:Drugrecovery=measureddrugweightinSLN100%/theoreticaldrugweightloadedinthesystem.TheSIL-SLNsuspensionwasseParatedbySephadexgel-50columnchromatography.TheconcentrationsofSILinthesuspension(n1)andfreedrug(n2)wereassayedbyHPLCafterdilutionwithmethanol.EEandDLcouldbecalculatedaccordingtothefollowingequations:EE%=(n1-n2)/n1100%,DL=Wdrugloadedinsystem/Wlipidmatrix100%.EEandDLofTET-SLNChromatographiccondition:ThechromatographiccolumnofSpherisorbODSC18(250mm4.6mm,5m)wasusedwithmobilephaseofmethanol/ether/ethylamine(volumeproportionof100:1:0.05)andflowrateof1.0ml/minatroomtemperatureanddetectionwavelengthof282nm.Theregressionequation,percentagerecoveriesofTET,EEandDLofTET-SLNweredeterminedandcalculatedaccordingtothemethodsandequationsdescribedpreviously.EvaluationofstabilitySIL-SLNandTET-SLNwerestoredat37andtheParticlesizesweredeterminedafter7,45and90days,respectively,toevaluatetheirstability.StatisticalanalysisTheresultswerepresentedasMeanSD.StatisticalanalysiswasperformedusingStudentsttestwithP0.05)afterstorageat37for90days.DISCUSSIONSLNsareacolloidalcarriersystemforcontrolleddrugdelivery,anditisclaimedthatSLNcombinestheadvantagesandavoidsthedisadvantagesofothercolloidalcarriers.Itsadvantagesincludethepossibilityofcontrolleddrugreleaseanddrugtargeting,increaseddrugstability,absenceofcarrierbiotoxicity,andlargescaleproductionandsterilization12.High-pressurehomogenizationhasemergedasareliableandpowerfultechniqueforSLNpreParation12.Inthepresentstudy,thismethodprovedtobefeasibleforpreParingSIL-SLNandTET-SLN,whicharesmall,steadyandhighlyincorporated.ThissuccessindicatesthepossibilityofincorporatingvariouslipophiliceffectivecomponentsextractedfromthetraditionalChinesemedicinesinSLNbythismethod,whichmakepossiblehighbioavailability,controlleddrugrelease,drugtargeting,decreaseddrugtoxicitiesandminimizedsideeffects,andrepresentsasucc
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