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Encapsula/Immunosome®-Glutaryl (Non-PEGylated)/IMS-2055-
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Description

Numerous techniques have been developed to prepare immunoliposomes based on the nucleophilic reactivity of free amine groups of proteins or peptides. One of the most popular and commonly used methods is to covalently couple free carboxylic groups to primary amines through activation of the carboxyl groups with EDC (1-ethyl-3-[3-dimethylaminopropyl] carbodiimide). EDC, which is a so-called zero-length crosslinking agent, reacts with the carboxyl to form an amine reactive intermediate (O-acylisourea). The produced O-acylisourea can be easily displaced by nucleophilic attack from the primary amino groups in the reaction mixture. However, this intermediate is unstable and hydrolyzed in aqueous solutions. In order to prevent the intermediate hydrolysis, sulfo-NHS (N-hydroxysulfosuccinimide) is added to EDC to produce a significantly more stable and more soluble active intermediate (NHS ester).

Consequently, the immunoliposomes are prepared by a two-step coupling procedure: first, activating the free carboxyl group of the linker lipid incorporated in the liposomes with EDC and sulfo-NHS, and then covalently conjugating the antibodies to the lipids through displacement of sulfo-NHS groups by antibody amines, as depicted below. EDC/sulfo-NHS coupling reactions are highly selective and highly efficient, and the biological activity of the protein or peptide is preserved.

Conjugation reaction between N-terminus of antibody and carboxyl group-containing liposome.

Immunosome®-Glutaryl is a non-PEGylated product. For other amine reactive (PEGylated and non-PEGyalated products) and also Immunosome® products suitable for other types conjugation methods see here.

Download Product InsertDownload Safety Datasheet (SDS)

Formulation Information

Immunosome®-Glutaryl (Non-PEGylated)

Lipid CompositionConcentration (mg/ml)Concentration (mM)Molar Ratio Percentage
Total14.80 mg/ml22.45 mM100
L-alpha-Phosphatidylcholine1215.569
Cholesterol2.66.7330
1,2-Dioleoyl-sn-glycero-3-phosphoethanolamine-N-(glutaryl)0.200.221
Buffers and Liposome Size Specification
BufferPhosphate Buffered Saline
pH6 *
Liposome Size100 nm
* In order to have a highly efficientactivation reaction with EDC and Sulfo-NHS, pH of PBS buffer was adjusted to 6.

Conjugation Protocol

Materials and Equipment

In order to conjugate the amine on your antibody, protein or peptide to Immunosome®-Glutaryl (Non-PEGylated) liposomes you will need:

  1. EDC (1-ethyl-3-(3-dimethylaminopropyl)carbodiimide hydrochloride). The solution should be made fresh moments before use.
  2. Sulfo-NHS (N-hydroxysulfosuccinimide). The solution should be made fresh moments before use.
  3. Sephadex® spin column: Sephadex size exclusion spin column can be used for separation of liposomes form free EDC (MW: 191.70). Since EDC is being separated from large liposome particles then any sizes of Sephadex® spin column such as G-10, G-15, G-25, G50 can be used. However keep in mind that you will lose a large percentage of your liposomes on the spin column. Alternatively, instead of removing the EDC by spin column you can quench it by using 2-mercaptoethanol.
  4. 2-Mercaptoethanol: To quench the unreacted EDC, 2-mercaptoethanol is added to form a stable complex with the remaining carbodiimide. The 2-mercaptoethanol might not be necessary if you prefer to clean up your liposome from free EDC using a spin column.
  5. Float-A-Lyzer® with a proper MWCO that easily allows the cleanup of your liposome conjugated ligand from free and non-conjugated protein, peptide or antibody. You need to make sure that the MWCO is below 1,000,000 dalton. At 1,000,000 dalton the pore size on the dialysis membrane gets close to 100 nm and therefore your liposomes can be dialyzed out. You cannot use dialysis cassettes blindly. Please understand the technique before using either spin column or dialysis cassette. If you do not use the correct MWCO you can lose your entire prep. For this protocol we recommend MWCO of 300,000 dalton.

Preparation Method

The two-step protocol includes the activation of carboxyl group-containing liposomes with EDC/sulfo-NHS, and subsequent conjugation with the amine group on the proteins, peptides or antibodies:

  1. In order to activate the carboxyl groups on the liposomes, EDC and sulfo-NHS should be added to the liposomes. The total lipid concentration in Immunosome®-Glutaryl (Non-PEGylated) is 22.45 mM. 1% mol of the lipid in liposomes contains COOH group and only half of them are exposed to the outside of the liposomes, which is equal to 0.11 mM of reactive conjugable lipid. For 2 ml liposomes, this is equal to 2.20×10-7 mol and for 5 ml liposomes, this is equal of 5.50×10-7 mol of COOH. Add 10-fold molar excess of EDC and 25-fold molar excess of sulfo-NHS to Immunosome®-Glutaryl (Non-PEGylated). To aid in aliquoting the correct amount of these reagents, they may be quickly dissolved in the PBS buffer at a higher concentration, and then a proper volume immediately pipetted into the protein solution to obtain the proper molar quantities.
  2. Mix well and allow the reaction to proceed for 15 min at room temperature.
  3. Before adding the protein, peptide or antibody, remove the excess EDC either using a size exclusion spin column, such as Sephadex® spin column or through quenching by 2-mercaptoethanol at a 20 mM final concentration. Addition of 2-mercaptoethanol will not impact the liposomes.
  4. Dissolve the protein, peptide or antibody at 1-10 mg/ml, depending on the antibody, protein or peptide, in PBS or other amine-free, carboxylate free buffer, pH 7-8.
  5. Add the protein, peptide or antibody to the EDC/Sulfo-NHS activated Immunosome®-Glutaryl (Non-PEGylated) liposomes. The molar ratio of the reactive carboxyl lipid to protein, peptide or antibody is preferred to be around 10:1. The total lipid concentration in our liposomes is 22.45 mM. 1% mol of the lipid in liposomes contains COOH group and only half of them are exposed to the outside of the liposomes, which is equal to 0.11 mM of reactive conjugable lipid. For a 2 ml volume liposome this is equal to 2.20×10-7 mol and for 5 ml volume liposomes this is equal of 5.50×10-7 mol of COOH. You will need to calculate the total mol of your peptide, protein or ligand in your solution and add 1:10 molar ratio of ligand to lipid.
  6. Mix well and allow to react for 2 h at room temperature.
  7. Remove the non-conjugated protein, peptide or antibody from the immunoliposomes by dialysis. We prefer dialysis to size exclusion columns. Dialysis is a much slower process but there will be minimum loss of immunoliposomes after the prep is cleaned from non-conjugated protein/peptide/ligand. Spin columns are much faster; however, you can easily lose over 50% of the liposomes on the spin column. We recommend using Float-A-Lyzer® dialysis cassette from Spectrum Labs. You will need to choose a cassette with proper MWCO depending on the MW of your protein, peptide, antibody or antibody fragment. NOTE: If you decide to use a dialysis cassette, you will need to make sure that the MWCO is below 1,000,000 dalton. At 1,000,000 dalton, the pore size on the dialysis membrane gets close to 100 nm and therefore, your liposomes can be dialyzed out. You cannot use dialysis cassettes and spin columns blindly. They come in various sizes and you need to choose the correct size wisely. Dialyze the immunoliposome solution in 1 liter of PBS at pH 7.4 for 8 hours. Change the dialysis buffer with a fresh 1 liter of PBS and let is dialyze for another 8 hours. After this step, your cleaned up immunoliposome is ready to be used.

Liposome Particle Calculator

Immunosomes are unilamellar liposomes and sized to 100 nm. The molar concentration of liposome is 22.45 mM. By having liposome diameter (nm) and lipid concentration (µM), you can calculate the total number of the lipids in one liposome and the number of the liposomes in one milliliter of the liposome solution. To use the calculator click here.

Technical Notes

  • EDC and sulfo-NHS should be prepared immediately before use and kept at room temperature.
  • The activation reaction with EDC and Sulfo-NHS is most efficient at pH 4.5-7.2, and EDC reactions are often performed in at pH 4.7-6.0. For this reason, we have formulated the liposomes in PBS buffer and adjusted the pH to 6.
  • Reaction of Sulfo-NHS-activated molecules with primary amines is most efficient at pH 7-8, and Sulfo-NHS-ester reactions are usually performed in phosphate-buffered saline (PBS) at pH 7.2-7.5
  • Tris buffer should never be used in any step of the process since it contains amine.
  • If you are using a ligand or peptide that is hydrophobic then it is recommended to solubilize it in DMSO or DMF and then add the buffer to it. It is recommended not to use more than 5% volume of DMSO or DMF in the solution. DMF and DMSO are both compatible with liposomes and they are also miscible in water. Other organic solvent such as ethanol and chloroform are not compatible with liposomes and will cause the liposomes to lyse. If you end up using DMSO or DMF then after the conjugation reaction is done, you need to remove DMSO and DMF from the liposomes. In order to do that you need to use a dialysis cassette that is made from REGENERATED CELLULOSE MEMBRANE. NOTE: Not all membranes are compatible with DMF and DMSO. We recommend using a Slide-A-Lyzer™ MINI Dialysis Device with MWCO of 2K made from regenerated cellulose membrane manufactured by ThermoFisher. After DMSO or DMF is removed you can use Float-A-Lyzer® dialysis device for the final step of cleaning up the prep.
  • Liposomes should be kept at 4°C and NEVER be frozen.

Database

Direct link to the database page for easy navigation: Immunoliposomes Conjugation Database

Appearance

Immunosome®-Glutaryl is a white translucent liquid made of nano size unilamellar liposomes. Usually due to the small size of liposomes no settling will occur in the bottom of the vial. The liposomes are packaged in an amber vial.

Ordering/Shipping Information

  • All liposome based formulations are shipped on blue ice at 4°C in insulated packages using overnight shipping or international express shipping.
  • Liposomes should NEVER be frozen. Ice crystals that form in the lipid membrane can rupture the membrane, change the size of the liposomes and cause the encapsulated drug to leak out. Liposomes in liquid form should always be kept in the refrigerator.
  • Clients who order from outside of the United States of America are responsible for their government import taxes and customs paperwork. Encapsula NanoSciences is NOT responsible for importation fees to countries outside of the United States of America.
  • We strongly encourage the clients in Japan, Korea, Taiwan and China to order via a distributor. Tough customs clearance regulations in these countries will cause delay in custom clearance of these perishable formulations if ordered directly through us. Distributors can easily clear the packages from customs. To see the list of the distributors click here.
  • Clients ordering from universities and research institutes in Australia should keep in mind that the liposome formulations are made from synthetic material and the formulations do not require a “permit to import quarantine material”. Liposomes are NOT biological products.
  • If you would like your institute’s FedEx or DHL account to be charged for shipping, then please provide the account number at the time of ordering.
  • Encapsula NanoSciences has no control over delays due to inclement weather or customs clearance delays. You will receive a FedEx or DHL tracking number once your order is confirmed. Contact FedEx or DHL in advance and make sure that the paperwork for customs is done on time. All subsequent shipping inquiries should be directed to Federal Express or DHL.

Storage and Shelf Life

Storage

Immunosome® products should always be stored at in the dark at 4°C, except when brought to room temperature for brief periods prior to animal dosing. DO NOT FREEZE. If the suspension is frozen, the encapsulated drug can be released from the liposomes thus limiting its effectiveness. In addition, the size of the liposomes will also change upon freezing and thawing.

Shelf Life

Immunosome®-Glutaryl is made on daily basis. The batch that is shipped is manufactured on the same day. It is advised to use the products within 4 months of the manufacturing date.

References and background reading

1. Hermanson GT. Bioconjugate techniques. Academic press; 2013 Jul 25.

2. Torchilin V, Weissig V, editors. Liposomes: a practical approach. Oxford University Press; 2003 Jun 5.

3. Grabarek Z, Gergely J. Zero-length crosslinking procedure with the use of active esters. Analytical biochemistry. 1990 Feb 15;185(1):131-5.

4. Yan L, Crayton SH, Thawani JP, Amirshaghaghi A, Tsourkas A, Cheng Z. A pH‐Responsive Drug‐Delivery Platform Based on Glycol Chitosan–Coated Liposomes. Small. 2015 Oct 1;11(37):4870-4.

5. Silva-López EI, Edens LE, Barden AO, Keller DJ, Brozik JA. Conditions for liposome adsorption and bilayer formation on BSA passivated solid supports. Chemistry and physics of lipids. 2014 Oct 31;183:91-9.

6. Hazra M, Singh SK, and Ray S. Surface Modification of Liposomal Vaccines by Peptide Conjugation. Journal of PharmaSciTech, 2011; 1(1): 41-47.

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2019年7月30日-...CIL公司,CDN标准品,quidel,repligen,Dextra,goldbio,exiqon探针,megazyme,macrocyclics,glenresearch,chrono-log,biolog试剂,rpeptide,zeptom... 查看更多>
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脂质体介导的真核细胞转染实验的相关实验步骤、实验技巧、实验protocol、实验经验及常见问题。用脂质体将DNA导人各种真核细胞的效率比其他转染方法更高,重复性更好。 查看更多>
Purpose and BackgroundsCHO lec 3.2.8.1 cellsCHO Lec 3.2.8.1 cells have four independent mutations in the N- and O- glycosylation pathways (Stanley, 1989). N-li 查看更多>
1、pcDNA3.1+-gD的线性化: pcDNA3.1+使用说明书推荐了以下几个酶作为线性化酶(BglⅡ MfeⅡ Bst1107Ⅰ Eam1105Ⅰ PvuⅠ ScaⅠ SspⅠ),通过DNAMAN分析gD序列发现其带有MfeⅡ酶切位点。2、转染前一天,在60mm的dish中接种8×105个细胞,加入5ml培养基 查看更多>
相关专题 脂质体介导是目前条件下最方便的转染方法之一,适用于把DNA转染入悬浮或贴壁培养细胞中,其转染率高,优于磷酸钙法,比它高5~100倍,能把DNA和RNA转染到各种细胞。 用LR进行转染时,首先需优化转染条件,应找出该批LR对转染某一特定细胞适合的用量、作用时间等,对每批LR都要做:第一,先要固定一个DNA的量和DNA/LR混合物与细 ... 查看更多>
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无限稀释法,就是铺到96板的一个孔,然后倍数稀释下去,到最后就会有一个细胞的孔,还有就是细胞计数,然后再铺96孔,也会出现一个细胞,但是对于挑单克隆来说,我觉得没必要单个细胞,单个细胞也不容易长起来,虽然挑克隆可能是混转的,但是不会影响实验需求。
大家都是用什么方法挑选细胞单克隆的
单克隆:单克隆是指‘子代来源于一个母体.
细胞培养:细胞的大规模克隆.细胞培养,既包括微生物细胞的培养,细胞培养技术可以由一个细胞经过大量培养成为简单的单细胞或极少分化的多细胞.
单克隆一般常指动植物细胞的克隆,细胞培养一般是指动物、微生物等细胞的细胞克隆.
二者没有什么明显区别.单克隆在单克隆抗体制备中比较常见.其实是对骨髓瘤细胞的细胞培养.
看了一篇文献说,某某干预对SV40转染的人成纤维细胞有细胞毒性。不明白他想说明什么。#细胞生物学#
可能有多种原因:

目标蛋白对细胞有毒性,导致细胞死亡;
转染试剂以及DNA用量信息需要优化,否则对细胞具有伤害;
细胞贴壁转染之后没有正常换液。
建议:考虑对目标蛋白进行截短构建、尝试其他细胞系统;摸索转染试剂以及DNA用量信息,如果转染试剂毒性太大,可以考虑尝试义翘转染试剂sinofection;对转染后的细胞进行换液处理,如果细胞状态感觉不够理想,可以考虑添加一些血清来帮助细胞恢复健康。
以上所有分析、建议的前提是,细胞培养、无菌操作等等都没有问题。祝顺利,加油~
最近在做movas转染siRNA,用的是lipo2000,siRNA终浓度100nM,转染时细胞密度60%,80%,90%都尝试过,转染后6h换液,24h提RNA,效果一直不好,最好的时候沉默效率60%左右,非常崩溃

我转的是7901、7901/DDP两种细胞,前者7901细胞很容易就转上,并且转后,状态良好,可是7901/DDP一转就死,我用的是吉玛慢病毒,转24小时后换液,刚开始一两天,没有异常,但后来细胞慢慢就死了,并且不是漂浮的,很多是贴着壁死,像是瓦解了一样


这是未转时细胞的样子





这是细胞转后,死亡的样子


并且即使是有些细胞未死,细胞后来也变得很脏,感觉有很破碎的细胞碎片

本人实验小白,**园子里大神指点,急,实在不知道怎么回事

腺相关病毒(AAV)是一种人细小病毒,目前因为能作为一种基因治疗载体而受到广泛关注。构建重组AAV(rAAV)涉及到用一个目的基因替换病毒基因组的大部分,然后将这个重组基因组包装到一个有感染性的病毒颗粒里。目前大多数生成rAAV的实验方案需要共转染一个载体质粒和一个表达病毒复制和结构基因的包装质粒到腺病毒(Ad)感染的培养细胞中。此方法的局限性包括(1) Ad辅助病毒污染rAAV,(2)rAAV的低产出,(3)生成有复制能力的AAV。在此我们描述了新的辅助质粒(pH3和pH5),排除了Ad共转染的需求。辅助质粒表达AAV的rep和cap基因和Ad E2A、VAI和E4基因。当辅助质粒在没有Ad感染的情况下共转染到人293细胞中,rAAV载体产量超过了pAAV/Ad包装质粒的80倍。另外,有复制能力的AAV在rAAV制备过程中少于0.00125%。此系统的主要优点是(1)无需感染性的腺病毒(2)只使用两个质粒就提高了转染效率和载体的产出。我们相信该双质粒转染系统因其简便性和高产出而使AAV载体系统能被更广泛地使用。该系统尤其将对多rAAV载体的临床前分析有用。
转化(transformation)、转导(transduction)、转染(transfection)和感染(infection)是分子生物学实 验中将外源基因导入受体细胞的4 种技术,它们词形相近,概念上容易混淆。
“转化”是指含外源基因的重组质粒(载体)将外源基因直接导入原核细胞(如细菌);
“转导”指通过重组病毒载体将外源基因导入真核细胞或原核细胞;
“转染”指重组质粒载体或游离核苷酸在脂质体等介导下进入真核细胞;
“感染”在基因转移实验中强调重组病毒载体入侵受体细胞的过程。
在使用这4 个名词时, 应仔细分析基因转移实验的四要素——转移物、载体、介导方法、受体细胞类型,而正确区 分载体和受体细胞类型是辨析的关键点。当载体是重组质粒时,如受体细胞是原核细胞应使 用“转化”,如受体细胞是真核细胞则使用“转染”;当载体是重组病毒时,如强调转移物进 入受体细胞应使用“转导”,如强调重组病毒载体进入受体细胞的过程则使用“感染”。

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

可以传代。
转染分2种,一种是瞬时转染,即转染后让细胞表达目的蛋白后即提取蛋白,提一次蛋白,转染一次,这种方式一般不传代;
另一种转染为稳定转染,转染后加入一定选择压力进行筛选,没有转染的细胞不能存活,只留下转染的细胞,这种情况下可以筛选单个转染细胞,构建稳定表达某一特定蛋白或基因的细胞系。
您好,现在这个行业发展的不错,生物实验技术外包也会跟着发展,比如一些高校或者企业部分实验不想自己内部开展,或者涉及的设备比较昂贵,技术要求高,都会寻求外包。但是现在竞争也比较大,的得看单位这边整体做的怎么样。
其次要看下你选择单位的规模如何,做的比较好的,还是上海这边的,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。
用siRNA转染A375细胞,我看到好多说这个细胞转染效率很低,求转染效率高的转染试剂!!