Description: -VijaiKrishnanPh.D,LouisianaStateUniversity -HARISHN.RAMANATHANPh.D.,NIDDK,NIH -RadmilaHrdlickova,Ph.D.,UTAustin -DorisBenbrook,Ph.D.,OUHSC Yes,IcertainlydidusethatsampleofPepMuteyougenerouslysentus
anditworkedsowellonHepG2cellsthatIhavesinceorderedafullsizeandamusingitexclusivelyforsiRNA! IcomparedtoRNAiMAXandRochesX-tremeGENEproducts,buttheseproductswerenotaseffectiveasPepMute. Thanksagainforthesample. Itwasfantastic! -MatthewJackson, Ph.D.,USDA
PepMutesiRNATransfectionReagent,formulatedfromsimulationofviruscellpenetratingpeptides(CPPs),isatotalnovelsiRNAdeliverytoolwhichprovidesmorethan95%silencingefficiencyat1nMsiRNAinvarietyofmammaliancells.Withourproprietarypeptidesimulationtechnology(PST),hundredsofviralCPPsweresimulated,synthesizedandscreenedforgenedeliveryefficacyinvarietyofmammaliancells(Figure1).PepMutereagentwasthenidentifiedandvalidatedasanexceptionallyefficientvectorforcondensingandtransfectingshort(under100bp)singleordoublestrandednucleicacidssuchassiRNA,miRNAmimicsandDNAoligoestowidespectrumofmammaliancells.
Figure1.AcartoonshowingPepMutesiRNATransfectionReagentwasdevelopedbyPST
Size:
-PepMuteReagent,1.0mL,sufficientfor~1,333reactionsbasedontransfecting0.5~5.0pmolsiRNAormiRNAmimicsin24-wellplate
-PepMuteTransfectionBuffer(5x),formulatedformaximaltransfectionefficiency,8.0mLat5xconcentratedstocksolutiontomake40mLofworkingsolution
Applications:
-siRNAmiRNAmimicsormRNAtransfection
-DNA/siRNAco-transfection
-DNAoligoestransfection
Storage:
Storeat4°CforPepMuteReagentandRTforPepMuteTransfectionBuffer(5x). Ifstoredproperly,theproductisstablefor12monthsorlonger.
Advantages:
-Excellentsilencingatfinal1.0nMsiRNA
-Over95%genesilencinginawidevarietyofcells
-Onetubereactionwitheasystandardprotocol
-CompatIBLewithserumandantibiotics
-ProtocolsadaptedtoHTS
-Verylowcytotoxicity
-Veryaffordable
SilencingEfficacyComparisonbetweenPepMutesiRNATransfectionReagentandLeADIngProducts
Figure2.ExcellentsilencingofendogenouslyexpressedKIF11(alsoknownasEG5)inHEK293cellswith1.0µlofPepMutereagentand0.5pmolEG5siRNAperwellof24-wellplate.KIF11(alsoknownasEG5)encodesamotorproteinthatbelongstothekinesin-likeproteinfamilyinvolvedinchromosomepositioningandbipolarspindleformationduringcellmitosis.AreductioninKIF11levelscausesmitoticarrest.PepMutereagenteffectivelydeliversEG5siRNA(final1.0nM)toHEK293cells,leadingtomorethan80%of"round-up"phenotypeofHEK293cells48hposttransfectionovernegativecontrol(final1.0nMwithshamEG5siRNA)whileleadingsiRNAtransfectinreagents,LipofectamineRNAiMAX(RNAiMAX,1.0nMEG5siRNA)/INTERFERin(1.0nMEG5siRNA)/Dharmafect(10.0nMEG5siRNA)andjetPRIME(20nMEG5siRNA)giveaverage37%,23%,53%and48%ball-shapedphenotyperespectivelyonHEK293cells.Thephenotypeof"rounded-up"293cellswerevisualized(upperpanel)andquantified(lowerpanel)48hposttransfectionwithaNikonmicroscope.
Figure3.SilencingefficiencycomparisonofPepMuteTransfectionReagent(upperpanel)withDharmafect4(middlepanel)andLipofectamineRNAiMAX(RNAiMAX,lowerpanel)siRNATransfectionReagentsonA549cells.siRNAtargetingrenillaluciferaseatdifferentfinalconcentrationsrangingfrom0.5to20nMwasco-transfectedwithrenillaluciferasegene(0.5µgofpRL-CMVDNAperwell)bytheabovethreetransfectionreagentspermanufacturers"protocolsintoA549cellsgrowingona24-wellplate.Renillaluciferaseactivitywasdetermined36hafterpostco-transfectionwithrenillaluciferasedeterminationsystem(Promega).Theluminescencewasmeasuredfrom5.0µloflysateduring10sintegrationwithaluminometer(BeckmanCoulterLD400).Luciferaseactivitywasexpressedaslightunitsintegratedover10s(RLU)andnormalizedpermgofcellproteinbyusingtheBCAassay.Theerrorsbarsrepresentstandarddeviationderivedfromtriplicateexperiments.Luciferase-silencingefficiencywascalculatedrelativetountreatedcells.WhilePepMuteandDharmafect4reagentsdeliveredsignificantgenesilencingfrom1.0nMofrenillaluciferasesiRNA,LipofectamineRNAiMAXgavegoodknockdownonlyafter20nMwhileenhancedgeneexpressionatlowconcentrationofsiRNA(0.5and1.0nMrespectively)wasobserved.

Figure4.PepMuteTransfectionReagentknockeddownstableGFPexpressioninMCF7cell(upperpanel)andU2OScell(lowerpanel)byreverselytransfecting5.0and1.0nMGFPsiRNArespectively.Greenfluorescenceprotein(GFP)wasstablyexpressedinMCF7andU2OScells.siRNAtargetingGFPgene(rightpanel)andashamsiRNA(leftpanel)wereintroducedintoMCF7andU2OScellswithfinal5.0and1.0nMrespectivelybyreversetransfectionwithPepMuteTransfectionReagent.GFPgenesilencingwasmonitored48hposttransfectionbyaNikonfluorescencemicroscope.QuantitativeanalysisshowedthatGFPsiRNAat5.0and1.0nMdeliveredbyPepMutesiRNATransfectionReagentknockeddown90%and95%stablyexpressedGFPinMCF7andU2OScellsrespectively.
DataSheet&Protocol
-AStandardsiRNATransfectionProtocol![]()
-AStandardsiRNA/DNACo-transfectionProtocol![]()
-AReversesiRNATransfectionProtocolforHTS![]()
Torequestafreetrialsample,pleaseCreateAnAccountwithustoenteryourshippingaddressandemailusatorder@Signagen.com
Testimonials:
IhadtriedyourproductpepMutetransfectionreagentonprimaryretinalneuronsandwassatisfiedwiththetransfectionefficiency.Willorder!
IreallyappreciateyousendingmeasampleofPepMutesiRNAreagent.ItestedDNA/siRNAco-transfectionusing293Tcellsandtheresultswerecompletelysatisfactory.Iwasabletoget95%knockdownofmytargetgeneat1.0nMsiRNAaswellasexpressionofplasmidDNAusingtherecommendedprotocol.Iwillhavetotestandseeifothercelllinesarealsoaseffective.IwilldefinitelythinkaboutmovingtousethisreagentoverDharmafectorOligofectamine.
ItriedPepMutereagentandIlikeit.Ithassohighefficiencyandnocytotoxicity.Iamgoingtouseit.Thankforintroducingittoourlab.
Tried3differentsiRNAswith100%silencingonA2780cell.Thatisamazing!Ialreadyplacedanorder.
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DXY721认为:
悬浮细胞和贴壁细胞在转染过程中差别不大,主要差别在于转染后的筛选,当然如果你做的是瞬时转染就不存在筛选的问题了。
其实转染的过程很简单,问题是能不能转的进去的,转染率能有多少,转进去是否可以稳定表达目的蛋白等等。
我们也是用脂质体做悬浮细胞的转染,说明书上都有具体的操作过程,将脂质体和目的基因按比例混合,然后加到细胞悬液里就OK了,说的简单,实际上还是有一些细节要注意的,比如脂质体和目的基因混合的比例,转染的细胞数,细胞的代数,细胞的状态,有的还要求在转染的前一天传代一次,不过不要怕,这些在脂质体说明书上都有明确的说明,按照说明书做就可以了。
jinghuanlv认为:
悬浮细胞和贴壁细胞转染还是有很大不同的。
脂质体转染的原理基于电荷吸引原理,先形成脂质体-DNA复合物,散布在细胞周围,然后通过细胞的内吞作用,将目的基因导入细胞内,而脂质体复合物与贴壁细胞的接触机会比悬浮细胞高出很多倍,所以,脂质体转染时悬浮细胞的转染效率要明显低于贴壁细胞。
我们实验室转染悬浮细胞是用的电穿孔法,目前为止,悬浮细胞转染的最好方法还是电转,我们实验室用的电转仪是Bio-Rad的,使用条件是电压250V,电容975uF,效果不错,不妨一用。
其次要看下你选择单位的规模如何,上海这边的,你可以看下基尔顿生物,原代细胞培养,动物造模,整体课题外包。
本人研究生
GFP发出绿色荧光的原理是Ca离子进入GFP的beta-barrel结构中引起的特定能级,因此只要这个结构仍然保持着,就可以发出荧光。
由于GFP的beta-barrel结构非常稳定,一些版本的GFP蛋白(如EGFP)甚至能抵抗94C的高温几分钟而不完全变性,因此想在溶液状态下去掉GFP的荧光是很难的,一般需要用光漂白法。
基于其非常稳定的结构,即便细胞被固定了,仍然会有一部分的GFP蛋白保持其构象而发出荧光。此时荧光可能较弱。在荧光显微镜下是有可能看得到的。
各位版友求助,
我使用Hek293构建转染模型,瞬转5质粒,用lipo2000做转染体系。
转染48h,发现荧光较强的细胞都在爬片的边缘,比例十分少。是因为我添加试剂的手法不对吗。
同时也发现加入转染体系后细胞状态特别差。想问一下用lipo2000时可以用无双抗的10%FBSDMEM吗。我转染前6h现在用的是纯DMEM,不含FBS。
请各位大神帮忙
但是有在转染前,将细胞进行重新传代的情况,这样做的目的在于保持细胞的活性状态。
“转染前将细胞以1.5-4.5X104 cells/well 的量(具体接细胞数请参考表1)接种在孔板中,于37℃, 5%CO2 的条件下进行培养,18-24小时( sf9细胞为3-4小时)后转染。”

