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Encapsula/Immunosome®-Cyanur (PEGylated)/IMS-2005-
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Encapsula
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IMS-2005-
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Description

In order to develop a rapid and straightforward coupling procedure at the PEG terminus, a method of direct coupling antibodies to the PEG terminus of liposomes was introduced by Bendas et al. [1]. In this methodology, antibodies are simply attached to the PEG terminus of liposomes, which had been end-group functionalized with cyanuric chloride, in mild basic conditions (pH 8.8) without prior antibody derivatizations. It has been shown that in order to obtain a stable attachment of proteins on liposome, the DSPE-PEG-cyanur was added into the liposomes to chemically conjugate with proteins to form a stable complex and minimize the denaturation of proteins.

Proteins can be covalently coupled to the liposomes via amine-reactive cyanur-groups, either directly to the vesicle surface using cyanuric chloride-activated DSPE (cyanur-DSPE) or to the distal ends of PEG-spacers using activated cyanur-PEG-PE (ammonium salt). Cyanuric chloride at the PEG terminus functions to link peptides, antibodies and other amine-containing biomolecules or nanoparticles via a nucleophilic substitution reaction under basic conditions. Antibodies or other proteins can be conjugated without any previous derivatization.

Conjugation reaction between liposomes containing cyanur with amine group on ligand.

Immunosome®-Cyanur is a 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®-Cyanur (PEGylated)

Lipid CompositionConcentration (mg/ml)Concentration (mM)Molar Ratio Percentage
Total15.92 mg/ml21.58 mM100
Hydrogenated Soy PC9.5812.2257
Cholesterol3.198.2538
DSPE-PEG(2000)2.50.894
DSPE-PEG(2000)-Cyanur0.650.221
Buffer and Liposome Size Specification
BufferBorate Buffer
pH8.8
Liposome Size100 nm

Conjugation Protocol

Materials and Equipment

In order to conjugate your antibody, protein, peptide or ligand to Immunosome®-Cyanur (PEGylated) you will need:

  1. Float-A-Lyzer® with a proper MWCO that easily allows the cleanup of your liposome conjugated ligand from free and non-conjugated protein/peptide/ligand. 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 columns or dialysis cassettes. If you do not use the correct MWCO you can lose your entire prep. In this case, we recommend using a dialysis cassette with MWCO of 300,000 dalton.
  2. Borate buffer. You can either make the borate buffer or purchase it from a chemical vendor. In any case, you need to make sure that the pH is adjusted to 8.8.

Preparation Method

  1. The total lipid concentration in Immunosome®-Cyanur is 21.58 mM. 1% mol of the lipid in liposomes contains PEG-Cyanur 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 volume liposome, this is equal to 2.2×10-7 mol, and for 5 ml volume liposome, this is equal to 5.5×10-7 mol of PEG-Cyanur.
  2. Add 1:1000 molar ratio of antibody, protein, peptide or ligand to total lipid. This will be equal to 1:5 molar ratio of antibody, protein, peptide or ligand to PEG-Cyanur lipid. For example, in a 2-ml kit, for 2.2×10-7 mol of PEG-Cyanur lipid, 4.4×10-8 mol of antibody, protein, peptide or ligand is needed.
  3. The conjugation must be done under mild basic condition such a borate buffer pH 8.8. Dissolve your antibody, protein, peptide or ligand in borate buffer with pH 8.8.
  4. Incubate Immunosome®-Cynaur with antibody, protein, peptide or ligand for 16 hours at room temperature.
  5. Remove non-conjugated antibody, protein, peptide or ligand 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, but 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 need to choose a cassette with proper MWCO depending on the MW of your protein, ligand, antibody or antibody fragment. In this case we recommend using a dialysis cassette with MWCO of 300,000 dalton. NOTE: If you decide to use a dialysis cassette, 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 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 21.58 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

  • Tris buffer should never be used in any step of the process since it contains amine.
  • Cyanuric chloride is considered as a sensory respiratory irritant. However, despite the name of the cyanur-modified liposomes, they have not shown any sign of acute, chronic or genotoxicity.
  • Cyanur groups are amine-reactive, however, some random attachments of the antibodies can be expected since cyanuric chloride can react with a wide range of nucleophilic functionalities, such as alcohols and thiols. This may interfere with the binding of the antibody to the liposome, and therefore, the binding affinity would change.
  • Size exclusion spin columns such as Sepharose® CL-4B can be used instead of Float-A-Lyzer® dialysis cassette. However, a very large amount of liposomes will stick to the column during the cleanup process and therefore we strongly suggest using dialysis than size exclusive beads.
  • If you are using a ligand or peptide that is hydrophobic, 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®-Cyanur 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. 

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®-Cyanur 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. Bendas G, Krause A, Bakowsky U, Vogel J, Rothe U. Targetability of novel immunoliposomes prepared by a new antibody conjugation technique. International journal of pharmaceutics. 1999 Apr 20;181(1):79-93.

2. Lee HY, Mohammed KA, Kaye F, Sharma P, Moudgil BM, Clapp WL, Nasreen N. Targeted delivery of let-7a microRNA encapsulated ephrin-A1 conjugated liposomal nanoparticles inhibit tumor growth in lung cancer. International journal of nanomedicine. 2013;8:4481.

3. Nyanhongo GS, Steiner W, Gübitz GM, editors. Biofunctionalization of Polymers and their Applications. Springer Science & Business Media; 2011 Aug 6.

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最近在Raw264.7细胞上进行干扰和用质粒进行过表达实验,脂质体根本转不进去,后来又换了一个国产的转染试剂转染效率也很低,现在考虑用电转。
我们实验室有Lonza电转仪,有没有好一点的电转染试剂或者细胞转染试剂?

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。
个人经验,BHK、CHO是很常用的转染用细胞,而且跟抗体非特异性反应也不高。一般来说,大多数可传代细胞的转染效率都是可以的,还要考虑所用转染剂的类型。

不建议你用MDCK细胞,非常难转染。
细胞转染 实验方法 123
一直攀爬的蜗牛2021-07-31
本人最近正在做质粒DNA的293T细胞转染,请问各位大神,有没有用过sigma的转染试剂,我们实验室买了,但是是凝胶状,不知道怎么用,请指教!
细胞转染GFP质粒并进行表达之后,一般细胞内会有大量的GFP蛋白,可以发出绿色荧光。
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。
传统的转染试剂有一定的细胞毒性,在转染过程由于提高细胞的通透性因而不能在培养基中添加抗生素。如,阳离子脂质体。带正电的脂质体与核酸带负电的 磷酸基团 形成复合物被细胞内吞。血清中含有大量的蛋白质,在转染过程中,带负电的蛋白质可能干扰阳离子脂质体对核酸的吸附,影响转染效率。另外,使用脂质体等转染 试剂时,由于含血清转染会将血清中的蛋白带入细胞,引发细胞毒性,导致转染效率降低,故不能有血清转染。这些转染试剂要求在转染前换无血清培养基,转染后 4-6h在更换成有血清培养基,这其实是为了减轻转染造成的细胞毒性。

我刚开始做转染,悬浮细胞,分别做过表达和敲减,看了很多文献,大都没有提及转染后是用转染的这同一批细胞同时做pcr,wb,cck8,凋亡,细胞周期;还是说这次转染只做pcr或wb,再转染一次做cck8或细胞周期。剩下的功能试验均同前,转染一次做一次?我养的是悬浮细胞,转染后做cck8这些功能试验前需要离心换液吗?跪谢解答!

转染6孔板后,一般长到十的六次方级别就可以提蛋白了
可以用移液器将细胞吸出来并高速离心,沉淀重悬于PBS中洗涤,接着就可以裂解提取蛋白了。可以用超声,酶解等等,裂解后离心收集上清。
细胞转染的详细过程123
dppezmiu2017-10-02
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,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。

本人为新手,希望大家能够直到一下细胞转染效率的问题。现在已知的信息如下:

质粒上面包含了萤光虫荧光素酶基因和海参荧光素酶基因,请问我通过什么方法可以测得转染效率?

如果不能测得转染效率,请问怎么优化转染条件呢?

质粒转染细胞后多久能提RNA做PCR
实验室一直都是用日常型质粒抽提试剂盒,转染细胞没问题。
我觉得只要是注意以下2点就可以了:
1,注意大肠杆菌(Escherichia coli)本身的污染,收集菌体沉淀时防止菌液散落,经常用75%的乙醇擦拭手套。
2,最后洗脱时最好使用无内毒素的水,我们是用注射用水的。
无论是小提还是大提我们都是用的日常型的,并没有刻意用转染级的,因为转染量大,去内毒素的操作太麻烦,损失太大。
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。