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Encapsula/Immunodox®-Folate (PEGylated)/IMD-1011-
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Encapsula
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IMD-1011-
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Description

During the past five decades, various types of chemistries have been used for conjugation of molecules such as antibodies, peptides, proteins or other reactive ligands to the surface of liposomes. In general, the conjugation can be achieved through the N-terminus, the C-terminus or the available sulfur (e.g. Fab’ fraction or thiolated antibodies). Not all chemistries have the same yield and efficiency of conjugation and often reproducing biocompatible batches can be a challenge.

Folate binding protein (FBP) is an endogenous protein, which shows a very high affinity for folate. An antibody can be tagged by FBP and an immunoliposome can be formed by non-covalent and high affinity interaction between FBP and folate lipid on the surface of the liposomes. In this method, the antibody, which has been already covalently linked to FBP through a thioether linkage, is conjugated with folate-derivative liposomes. Having a relatively low molecular weight (MW ∼40 kDa) and a single binding site prevents liposomes from crosslinking.

For other reactive Immunodox® products suitable for other types of conjugation method see here.

Download Product InsertDownload Safety Datasheet (SDS)

Formulation Information

Immunodox®-Folate (PEGylated)

Lipid CompositionConcentration (mg/ml)Concentration (mM)Molar Ratio Percentage
Total15.86 mg/ml21.55 mM100
Hydrogenated Soy PC9.5812.2257
Cholesterol3.198.2538
DSPE-PEG(2000)2.70.964.5
DSPE-PEG(2000)-Folate0.390.120.5
Buffers, Liposome Size and Encapsulated Drug ConcentrationSpecification
Inside BufferAmmonium Sulfate
Outside BufferPhosphate Buffered Saline
pH7.4
Liposome Size100 nm
Encapsulated Doxorubicin2 mg/ml (3.45 mM)

Conjugation Protocol

Materials and Equipment

In order to conjugate your antibody or protein tagged with FBP to Immunodox®-Folate liposomes you will need:

  1. Laboratory vortex mixer is recommended to have.
  2. Laboratory magnetic stirrer is needed for dialysis.
  3. 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 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

  1. The total lipid concentration in Immunodox®-Folate is 21.55 mM. 0.5% mol of the lipid in liposomes contains PEG-Folate group and only half of them are exposed to the outside of the liposomes, which is equal to 0.053 mM of reactive conjugable lipid. For 2 ml volume liposome, this is equal to 1.08×10-7 mol, and for 5 ml volume liposome, this is equal to 2.69×10-7 mol of PEG-Folate. Add 1:20 molar ratio of antibody tagged with FBP to PEG-Folate lipid.
  2. Incubate Immunodox®-Folate with antibody-FBP with 1 hour at room temperature.
  3. 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. 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.re using either spin column or dialysis cassette. If you do not use the correct MWCO, you can lose your entire prep.

Liposome Particle Calculator

Immunodox® liposomes are unilamellar and sized to 100 nm. The molar concentration of liposome is 21.55 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

  • Doxorubicin is a fluorescent molecule with λex 470 nm and λem 585 nm. If you are using a fluorescent tag on your antibody or ligand, you need to make sure that they will not interfere with each other.
  • Please keep in mind that the main using for liposomes containing folate on surface is for targeting folate receptors on the cells. Making immunoliposomes using antibodies/proteins or ligands tagged with FBP is a very niche application.
  • The immunoliposomes may disassemble following internalization by endocytosis upon exposure to the low pH environment of the endosomal compartment, due to reduced affinity between folate and FBP under low pH. This internalization-triggered uncoupling may be beneficial to delivery of liposomal drug at the cellular level by allowing the sorting of the internalized liposomes to the appropriate subcellular compartment and/or facilitating intracellular release of drug molecules from the liposomes.
  • 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 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

Immunodox®-Folate is a red 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.

Educational Video

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

Immunodox® 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

Immunodox®-Folate 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.

Reference and background reading

Pan X, Lee RJ. Construction of anti-EGFR immunoliposomes via folate–folate binding protein affinity. International journal of pharmaceutics. 2007 May 24;336(2):276-83.

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:(我第一次用ELISA竞争法来测试样品中抗原含量,发现做出的标准曲线上限,也就是试剂盒中浓度为0的标准品所限定的范围比样品的还低,想不通是哪里出了问题(确保都是按照试剂盒说明书操作)?请哪位高人为我指点迷津。多谢了!!
我做的竞争法ELISA试验,为何同一样品(此为5ng/ml的标准品)用同一酶标仪在不同时间测得的OD值明显不同?(0分钟时OD为0.041;10分钟时OD值为0.063;20分钟时OD值为0.059;25分钟时OD值为0.058;30分钟时OD值为0.045),那我应该取哪个时间点的OD读数呢?
大多数国产试剂盒生产厂家会提供对数坐标纸,可直接手工绘制曲线;如果酶标仪带有分析软件,可由软件直接拟合曲线,并自动计算出样本的浓度值;老式的酶标仪只能打印出OD值,需要实验员自己绘制曲线并计算,下面介绍2种绘制竞争法曲线的方法,希望对大家有帮助:一、在对数坐标纸上手工绘制曲线(Log-logit双对数标准曲线)1.实验做双孔,实验结果如下表所示。标准点浓度OD1OD2OD均结合率S002.2262.1922.209S10.11.7251.6791.70277.0%S20.41.3131.3381.325560.0%S31.60.9070.8340.870539.4%S46.40.5170.5170.51723.4%S525.60.2300.2440.23710.7%2)各标准点吸光值取均值。在表中OD均一列。3)将S1~S5的OD均值与S0的OD均相除,为标准点的百分结合率。4)在log-logit坐标纸上绘图。5)坐标纸上横轴从左至右第一个1-9表示为第一个10进位,第二个1-9表示为第二个10进位。第三个1-9表示为第三个10进位。也就是说,如果第一个1代表1ng/ml,则第二个1代表10ng/ml,第三个1代表100ng/ml。因为本次实验标准曲线范围是从0.1ng/ml到25.6ng/ml,则可以用第一个1代表0.1ng/ml,第二个1代表1ng/ml,第三个1代表10ng/ml。6)坐标纸纵轴为百分比。即各标准吸光值的百分结合率。7)曲线第一个数值点是(0.1,77.0%)。则在横轴左起点的1处向上至70~80之间,由70向上7个小格处。8)曲线第二个数值点是(0.4,60.0%)。则在横轴左起第一个4,向上至60的位置。9)曲线第三个数值点是(1.6,39.4%)。则在横轴左起第二个1至2之间,由第二个1向右6个小格。再向上至30~40之间,由30向上9个半小格处。10)曲线第四个数值点是(6.4,23.4%)。则在横轴左起第二个6至7之间,这里6与7之间分为5小格,则每个小格是0.2。所以由第二个6向右2个小格。再向上至20~30之间,由20向上约3个半小格处。11)曲线第四个数值点是(25.6,10.7%)。则在横轴左起第三个2至3之间,这里2与3之间分为10小格,则每个小格是1。所以由第三个2向右5个半小格。再向上至10~20之间,由10向上约半小格处。12)画一条通过各点的直线。要求尽可能多的点在线上,同时剩余的点均匀分布在直线的两边。13)样品也同样由吸光值计算百分结合率,再从纵轴上的相应结合率找到直线上的点,此点对应的横坐标浓度即为样品的浓度。无须换算。本数据来源于百度地图,最终结果以百度地图最新数据为准。

竞争法ELISA测出标准曲线已有梯度,但样本OD值偏偏低很多,这导致样本浓度是既往文献报道的的100~1000倍会可能是什么原因?

附:

standerdsample1sample2

blank0.0690.1810.189

totalbinding1.9020.320.28

standerd10.1770.260.203

standerd21.0010.1290.136

standerd31.660.1770.183

standerd41.7060.1680.172

standerd51.6360.1880.127

poscontrol2.250.1410.226


各位大神帮看看是什么原因所致?

针对于HBeAb的中和抑制法

采用抗-HBe抗体包被反应板,加入校准品及被测样本,同时加入定量HBeAg中和抗原,经过振荡孵育,洗板后再加入铕标记的抗-HBe,若标本中抗-HBe浓度高,HBeAg将被大量中和,使最后形成的抗-HBe-HBeAg-铕标记抗-HBe复合物减少。增强液(β-NTA)将标记在抗体上的Eu3+解离到溶液中,Eu3+和增强液中的有效成分形成高荧光强度的螯合物,荧光强度和样本中的抗-HBe浓度成反比。
这是我最近用Elisa做出来的标准品的浓度(X)和OD值(Y),想请教一下各位老师该如何绘制标准曲线,我的试剂说明书上面没有写如何做,只说是做拟合双对数直线回归方程。论坛查了很久也没有找到具体的方法。希望能得到各位老师的指点,谢谢!(附上录入结果的文件)

X     Y
02.532
501.272
1000.688
2500.31
5000.176
10000.116

chymase.dat(0.06k)
我做的竞争法ELISA试验,为何同一样品用同一酶标仪在不同时间测得的OD值明显不同?(0分钟时OD为0.041;10分钟时OD值为0.063;20分钟时OD值为0.059;25分钟时OD值为0.058;30分钟时OD值为0.045)
最近在建立一个间接竞争法的ELISA定量方法,标准品梯度,复孔都很好,不知道结果如何处理:(
我用的是biotek的EL800酶标仪,有用过这种方法的老师,恳求指点。
以下为实验的标准品OD:

3ug/ml0.182
10.3515
0.30.4515
0.10.628
0.030.777
0.0120.9185
0.0040.9965
BLK1.1755

期待。。。

GM实验:试剂说明书上要求20分钟显色,10分钟的时候看一下,差不多就可以加终止液,但是我的标曲显色特别快,2分钟最低浓度蓝色就就深了,此时样本颜色还很浅很浅,我只能一块儿加终止液。所以,标曲显色过快,可能是什么原因?

(ps:第一列是标曲,后面是样本)


如题,我是菜鸟,网上看到有文章说用抑制率IC10作为最低检测限。不知是不是通用的做法,请各位战友不吝赐教
:(本人初次用竞争法测抗原,所得出的标准曲线竟然不能涵盖所有样品数值,致使无法分析数据:(确定都是按照试剂盒说明书操作的,且空白值(除标准品和样品外其他酶试剂都照加)也没有达到所期望的最大。所得数据如下,请哪位高人帮忙分析一下问题所在,另附说明书照片。热切盼望答复
浓度ng/ml标曲1标曲2
01.1941.109
180.8250.8
450.6090.561
900.4490.384
1800.2580.242
3600.1680.159
7200.1150.104
空白孔0.9460.92
Elisa标准曲线绘制方法123
yuxh_19782021-07-23
大家好!
我现在正在应用ELISA试剂盒检测血清TSH
在预实验中,得到如下的结果:
B(450nm)1.575,0.710,0.431,0.225,0.160,0.062
标准品浓度为(ng/ml)0,0.5,1.0,2.5,5,10
根据试剂盒的说明书,以B/B0%为纵坐标,以标准品的浓度为横坐标,在对数坐标纸上绘制标准曲线,在标准曲线上查找对应的浓度范围。
请问最后模拟出的应是一条直线(二元一次方程)还是一条曲线?
请大家指教。
急!!!