Description
Macrophage depletion kits are composed of two vials; one vial of Clodrosome® (Clodronate liposomes) and one vial of Encapsome® (control liposomes containing no drug). The volume of the macrophage depletion kit represents the volume of each reagent individually. For example, 5 ml of macrophage depletion kit means 5 ml of Clodrosome® and 5 ml of Encapsome®. Each reagent in the kit can also be purchased individually.
Clodrosome® is a multilamellar liposome suspension in which clodronate is encapsulated in the aqueous compartments of the liposomes. Encapsome® is formulated and prepared identically to Clodrosome® except that clodronate is not added to the liposomes. The liposomes are filtered through 2 μm polycarbonate membranes to ensure that larger particles, which may be toxic to animals, are removed from the suspension. Both are prepared and packaged under sterile conditions. When animals or cells are treated with Clodrosome®, phagocytic cells recognize the liposomes as invading foreign particles and proceed to remove the liposomes from the local tissue or serum via phagocytosis. The liposomes then release clodronate into the cytosol resulting in cell death. Non-encapsulated clodronate cannot cross the cell membrane to initiate cell death.
Control liposomes (Encapsome®) are recognized and phagocytosed by the same mechanism as Clodrosome®. Since the control liposomes do not contain clodronate, the phagocytic cells are not killed. However, phagocytes do respond to the ingestion of control liposomes by cytokine secretion, temporary suspension of phagocytic activity and other responses described in the literature.
m-Clodrosome® and m-Encapsome® are mannosylated reagents that are specifically formulated to efficiently target the macrophages in central nervous systems and macrophages that contain more mannose receptors. For more information about these reagent see here.
Fluorescent liposomes (Fluoroliposome®) suitable for macrophage targeting and tracking are available. They can contain five different fluorescent dyes (DiA, DiD, DiI, DiO and DiR), which covers the entire spectrum. Fluorescent liposomes come in standard and mannosylated form. For more information see here.


Technical Information
Clodrosome® Liposomal Clodronate Suspension
| Lipid Composition | Concentration (mg/ml) | Concentration (mM) | Molar Ratio Percentage |
|---|---|---|---|
| Total | 23 mg/ml | 35.1 mM | 100 |
| L-alpha-Phosphatidylcholine | 18.8 | 24.3 | 70 |
| Cholesterol | 4.2 | 10.9 | 30 |
| Encapsulated Drug | Concentration |
|---|---|
| Clodronate ((Dichloro-phosphono-methyl)phosphonate), Disodium Salt | 18.4* mM |
| * Depending on the type of the clodronate salt, itsconcentration (mg/ml) varies. If tetra hydrate salt is used, the concentration of the encapsulated drug will be ~7 mg/ml, and if a non-hydrated salt is used, the concentration will be ~5 mg/ml. | |
Fluoroliposome®-DiD
| Lipid Composition | Concentration (mg/ml) | Concentration (mM) | Molar Ratio Percentage |
|---|---|---|---|
| Total | 23 mg/ml | 35.1 mM | 100 |
| L-alpha-Phosphatidylcholine | 18.8 | 24.3 | 70 |
| Cholesterol | 4.2 | 10.9 | 30 |
| Fluorescent Dye | Excitation/Emission (nm) | Concentration (mg/ml) | Concentration (mM) |
|---|---|---|---|
1,1'-Dioctadecyl-3,3,3',3'-Tetramethylindodicarbocyanine, 4-Chlorobenzenesulfonate Salt (DiD)![]() | 644/665 | 0.0625 | 0.065 |
| Buffer and Liposome Size | Specification |
|---|---|
| Buffer | Phosphate Buffered Saline |
| pH | 7.4 |
| Liposome Size | 1.5-2 µm |
Technical Notes
- The issue with fluorescent Clodrosome® has to do with the potential for inaccurate and/or uninterpretable data being generated by labelled Clodrosome®. When Clodrosome® induces macrophage apoptosis, the fluorescent lipid incorporated into the Clodrosome® that is disrupted and metabolized in the phagolysosome will be dispersed among the residual apoptotic bodies which are subsequently phagocytosed by other macrophages. Therefore, fluorescent lipid may be detected in phagocytic cells which never phagocytosed Clodrosome® especially when FACS or fluoroscopy are utilized to detect fluorescent cells (FACS) or fluorescence levels in a tissue homogenate (fluoroscopy). Another potential artifact arises from fluorescent lipid remaining in the extracellular “garbage”, which has not yet been cleared by other phagocytes, generating a high background fluorescence. However, experienced confocal microscopist may be able to differentiate between the punctate fluorescence resulting from fluorescent intact liposomes versus the more diffuse fluorescence characteristic of disrupted liposomes and some have successfully used fluorescent clodronate liposomes to visualize the cellular location of these liposomes by confocal microscopy in vivo [1]. A further complicating factor is that published data varies widely as to exactly when clodronate liposomes begin to induce apoptosis in macrophages. Mönkönnnen et al. show that macrophage death is measurable within the first hour after clodronate liposome treatment on RAW264 cells in vitro [2], while many others have reported no signs of macrophage apoptosis until several hours after treatment in vivo. The variability in the data is likely due to different liposomal formulations of clodronate as well as the vastly different experimental conditions. Therefore, as with most biological studies, especially those involving liposomes, the amount of time between treating the animal or cells with clodronate liposomes and the onset of apoptosis will need to be established in each experimental model. If the nature of the research demands that Clodrosome® be tracked rather than the control, Encapsula can provide DiI-labelled Clodrosome® upon request, and assuming that the Clodrosome® distribution can definitively be assessed prior to the onset of apoptosis, clear and valid data on the biodistribution of fluorescent Clodrosome® should be obtainable. Still, for most purposes, Fluoroliposome® (fluorescent control liposomes) will provide the required data with far fewer potential artifacts.
- When monitoring monocyte uptake in vivo in normal animals, the circulating monocytes may “disappear” or show reduced counts within the first 2 h post-injection due to margination of the monocytes post-liposome phagocytosis. These cells will re-enter the circulation within a few hours. Sunderkötter et al. demonstrate this phenomenon and discuss the behavior in detail. Also consider that circulating monocytes have a lifetime of about 24 h so labeled monocytes will be continually leaving the circulation, even in normal animals, due to aging of the monocytes [3].
- When animals or cells are treated with Clodrosome®, phagocytic cells recognize the liposomes as invading foreign particles and proceed to remove the liposomes from the local tissue or serum via phagocytosis. The liposomes then release clodronate into the cytosol resulting in cell death. Unencapsulated clodronate cannot cross the cell membrane to initiate cell death.
- Encapsome® control liposomes are recognized and phagocytosed by the same mechanism as Clodrosome®. Since the control liposomes do not contain clodronate, the phagocytic cells are not killed. However, phagocytes do respond to the ingestion of the control liposomes by cytokine secretion, temporary suspension of phagocytic activity and other responses described in the literature.
- The product must be removed from the vial using sterile technique. Do not use if sterility is compromised. This is particularly important if a single vial is accessed multiple times over several weeks. The product should not be used more than 60 days after receipt, even if unopened.
- Liposomes may settle when left undisturbed for more than a few hours. Immediately prior to use, in order to ensure a homogeneous liposome suspension, slowly invert the vial several times until the suspension appears homogeneous by visual inspection. Vigorous or erratic shaking will not damage the liposomes but may induce foaming and bubble formation making it more difficult to accurately measure the desired dosage.
- If the personnel performing intravenous injections are not experienced in or familiar with, precautions for injecting larger volumes (~10% animal weight in ml), viscous liquids or particulate suspensions, consider having extra animals available in case serious injection-related adverse events occur. Dose control animals first to become familiar with large volume injections.
- Within hours after systemic administration of Clodrosome®, animals begin to lose important components of their immune system. Standard animal handling and housing protocols are not suitable for immunocompromised animals. Even when such precautions are taken, monitor the general health of each animal for opportunistic infections unrelated to the experimental protocol. There is no inherent toxicity to the product at the recommended dose levels.
- When dosing intravenously, use standard precautions for dosing larger volumes to animals including the following: a) Warm product to room temperature prior to dosing. b) Ensure that all air bubbles are removed from the syringe prior to dosing; intravenous injection of air bubbles may result in air emboli which can kill or seriously injure animals. c) Inject product at a slow, steady rate of no more than 1 ml/min; decrease infusion rate if animals display any atypical reactions such as unusual agitation.
- Infusion-related adverse reactions usually involve the animal gasping for air or other seizure-like movements. Animals often recover with no apparent permanent injury, but any potential effects on experimental results must be assessed by the researcher.
- Liposomes should be kept at 4°C and NEVER be frozen.
Dosage
Appearance
Clodrosome® is a white milky suspension, and Fluoroliposome®-DiD is a blue liquid suspension, both made of large micro size multilamellar liposomes. Due to their large size, some liposomes might settle to the bottom of the vial. If left sitting idle in the refrigerator, Fluoroliposome®-DiD will phase separate and form pellets in the bottom of the vial, leaving a clear solution on top. Clodrosome® might do the same only not as severely. Therefore, both should be gently shaken not to form bubbles but to form a homogeneous solution prior to use.
Educational Videos
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
Clodrosome® and Fluoroliposome® 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, clodronate can be released from the liposomes thus limiting its effectiveness in depleting macrophages. ENS is not responsible for results generated by frozen product.
Shelf Life
Clodrosome® and Fluoroliposome® are made on daily basis. The batch that is shipped is manufactured on the same day. It is advised to use the products within 60 days of the manufacturing date.
References and background reading
1. Polfliet MM, Goede PH, van Kesteren-Hendrikx EM, van Rooijen N, Dijkstra CD, van den Berg TK. A method for the selective depletion of perivascular and meningeal macrophages in the central nervous system. J. Neuroimmunol. 2001 Jun 1;116(2):188–95.
2. Mönkkönen J, Liukkonen J, Taskinen M, Heath TD, Urtti A. Studies on liposome formulations for intra-articular delivery of clodronate. Journal of Controlled Release. 1995 Aug;35(2–3):145–54.
3. Sunderkötter C, Nikolic T, Dillon MJ, van Rooijen N, Stehling M, Drevets DA, Leenen P. Subpopulations of Mouse Blood Monocytes Differ in Maturation Stage and Inflammatory Response. J Immunol. 2004 Apr 1;172(7):4410–7.
4. Hinson SR, Clift IC, Luo N, Kryzer TJ, Lennon VA. Autoantibody-induced internalization of CNS AQP4 water channel and EAAT2 glutamate transporter requires astrocytic Fc receptor. Proceedings of the National Academy of Sciences. 2017 May 23;114(21):5491-6.
5. Dhupkar P, Gordon N, Stewart J, Kleinerman ES. Anti‐PD‐1 therapy redirects macrophages from an M2 to an M1 phenotype inducing regression of OS lung metastases. Cancer Medicine. 2018 May 7.
6. Xiong Y, Page JC, Narayanan N, Wang C, Jia Z, Yue F, Shi X, Jin W, Hu K, Deng M, Shi R. Peripheral neuropathy and hindlimb paralysis in a mouse model of adipocyte-specific knockout of Lkb1. EBioMedicine. 2017 Oct 1;24:127-36.
7. Crider A, Feng T, Pandya CD, Davis T, Nair A, Ahmed AO, Baban B, Turecki G, Pillai A. Complement component 3a receptor deficiency attenuates chronic stress-induced monocyte infiltration and depressive-like behavior. Brain, behavior, and immunity. 2018 Mar 5.
8. Kocher T, Asslaber D, Zaborsky N, Flenady S, Denk U, Reinthaler P, Ablinger M, Geisberger R, Bauer JW, Seiffert M, Hartmann TN. CD4+ T cells, but not non-classical monocytes, are dispensable for the development of chronic lymphocytic leukemia in the TCL1-tg murine model. Leukemia. 2016 Jun;30(6):1409.
9. Zhu Z, Ding J, Ma Z, Iwashina T, Tredget EE. Systemic depletion of macrophages in the subacute phase of wound healing reduces hypertrophic scar formation. Wound Repair and Regeneration. 2016 Jul 1;24(4):644-56.
10. Haque MR, Lee DY, Ahn CH, Jeong JH, Byun Y. Local co-delivery of pancreatic islets and liposomal clodronate using injectable hydrogel to prevent acute immune reactions in a type 1 diabetes. Pharmaceutical research. 2014 Sep 1;31(9):2453-62.
11. Mayo L, Cunha AP, Madi A, Beynon V, Yang Z, Alvarez JI, Prat A, Sobel RA, Kobzik L, Lassmann H, Quintana FJ. IL-10-dependent Tr1 cells attenuate astrocyte activation and ameliorate chronic central nervous system inflammation. Brain. 2016 May 31;139(7):1939-57.
12. Kermanizadeh A, Chauché C, Balharry D, Brown DM, Kanase N, Boczkowski J, Lanone S, Stone V. The role of Kupffer cells in the hepatic response to silver nanoparticles. Nanotoxicology. 2014 Aug 31;8(sup1):149-54.
13. Nandi B, Shapiro M, Samur MK, Pai C, Frank NY, Yoon C, Prabhala RH, Munshi NC, Gold JS. Stromal CCR6 drives tumor growth in a murine transplantable colon cancer through recruitment of tumor-promoting macrophages. Oncoimmunology. 2016 Aug 2;5(8):e1189052.
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elisa试剂盒回收率是反应待测物在样品分析过程中的损失的程度,损失越少,回收率越高,如果作标液1PPM,就是1毫克/升,而作出标准数据为0.99毫克/升,就是说你的回收率是99%,这个与真实成分有密切的关系,说明方法的准确度。比如水中总无机氯含量测定,样品水中含有无机氯20mg/L,取100mL被测水样品,加入0.1mL浓度为10mg/mL的含无机氯标准样品,测定时忽略体积变化,如果测定出样品中无机氯为2.98mg/L,则认为回收率为99%。向左转|向右转
酶联免疫吸附(ELISA)实验是一种观察生物活性配体间反应活性的有效的观察手段,被广泛应用于疾病诊断和科学研究领域。Elisa试剂盒应用的范围很广,而且正在不断地扩大,原则上ELISA试剂盒可用于检测一切抗原、抗体及半抗原,可以直接定量测定体液中的可溶性抗原。Elisa试剂盒的灵敏度、特异性、精密度、稳定性等因素都会影响Elisa检测的结果,因此,在科学研究领域里,如何选择高质量的Elisa试剂盒产品成为了科研实验中的关键。
目前国内外Elisa试剂盒生产厂家很多,产品质量参差不齐。依据品牌网大数据平台数据支持,筛选出2016-2017年Elisa试剂盒十大品牌榜如下:
R&DSystems
R&DSystems经过近40年的发展,目前在英国、德国、法国和中国等地设有分公司。作为细胞因子、抗体和ELISA试剂盒等细胞生物学产品的顶尖供应商,R&DSystems在全球范围内为癌症、干细胞、免疫学、神经学和信号转导等领域的科研人员提供了品种齐全,质量可靠的科研产品,并因产品质量的可靠性和稳定性赢得了用户的广泛推崇和同行的赞誉是目前国内最受欢迎的Elisa进口试剂盒品牌。
Abcam
Abcam总公司位于英国剑桥,2014年1月成立艾博抗(上海)贸易有限公司负责中国区的销售。Abcam在中国设立的公司产品线包括一抗、二抗、免疫测定及细胞检测试剂盒、蛋白/多肽、激动剂/拮抗剂/活化剂/抑制剂及裂解物等。Abcam新推出的Elisa试剂盒使用重组单克隆抗体对,提供了其检测灵敏度。
BioVision公司是世界顶尖的细胞凋亡和信号传导产品生产商,产品包括Elisa试剂盒、荧光检测试剂盒、抗体及重组蛋白,几乎涵盖了细胞凋亡、细胞信号传导和细胞因子研究的各个方面。BioVision产品的价格虽然不菲,但其质量稳定可靠,在开发和研究细胞凋亡检测分析、代谢检测方面具有卓越的影响力,一直是研究人员在细胞检测领域的首选。
Raybiotech
Raybiotech公司主要涉及蛋白质芯片、抗体芯片、抗体、免疫试剂、Elisa试剂盒等近万种产品。RayBiotech生产超过2,600个经过ISO认证和严格测试的ELISA试剂盒,并得到了世界各国众多科学家的亲赖,许多客户对公司芯片技术和产品的质量都给予了肯定,客户发表的论文不乏Nature,NatureMedicine,Cell,PNAS,Lancet等世界顶级期刊物。
AssayPro
Assaypro是致力于为在学术界和制药/生物技术产业的研究人员提供高品质的免疫检测试剂盒。产品线包括AssayMaxELISA试剂盒,AssaySense活性测定试剂盒,抗体和其他相关试剂。AssayPro所有酶联免疫试剂盒和抗体产品都在美国密苏里州圣查尔斯ISO9001:2008和ISO13485:2003质量管理体系生产,凭借其在免疫科学领域独特的竞争优势,在国内有着比较广泛的市场群体。
PeproTechInc.创立于1988年,始终致力于为生命科学研究开发重组蛋白及相关产品,如今已成为能提供多种高质量细胞因子和重组蛋白,相应的单克隆、多克隆和生物素标记抗体,以及ELISA试剂盒的世界领导者。PeproTechInc.的产品涵盖免疫调节蛋白、白介素、集落刺激因子、生长因子、化学趋化因子、干扰素、脂联素、成纤维生长因子、转化生长因子、肿瘤坏死因子、神经营养素和防御素等诸多生命科学研究领域中重要的生物活性分子。
BioRike
BioRike博瑞克是目前国内非常优质的Elisa试剂盒厂家,近年来发展起来的名族品牌。BioRike产品线包含ELISA试剂盒、免疫组化试剂盒、抗体、快速基因克隆试剂等,其生产的Elisa试剂盒,灵敏度、精密度、准确度等综合性能指标处于行业领先水平,已广泛用于生命科学各领域科研机构,并获得广大科研人员好评,ELISA试剂盒自推出以来,已被大量权威杂志引用,在细胞因子、激素调控研究方面有着极强的竞争力。博瑞克试剂盒凭借其稳定的质量和亲民的价格成为国产明星品牌,在国内拥有一大批的忠实客户。
ExCellBio
依科赛生物目前主要有三大产品线:制药和生命科学研究用细胞培养系列产品、围绕基因检测的核酸产品线和免疫检测产品线。免疫检测产品线包括高品质的细胞因子ELISA检测试剂盒和抗体等,Elisa试剂盒在国内高校应用得比较广泛。
MultiSciences
联科生物与多家国际知名厂商达成了长期合作协议,包括Affymetrix(eBioscience)、Qiagen、Bio-Techne(RnD、Novus)、Roche等。在将国际上优质产品引入国内市场的同时,联科生物也在不断开发拥有自主知识产权的项目与产品,联科生物推出了两万多种抗体、辅助试剂以及成套Elisa试剂盒,这些产品主要应用于蛋白免疫印迹、流式细胞术等实验方法。联科生物的Elisa试剂盒自推出后,获得了市场的一致好评。
CUSABIO
华美生物主要经营抗体、蛋白、基因、科研试剂盒、诊断试剂原料产品。旗下的CUSABIO试剂盒,涵盖20个种属,数千种产品,涉及肿瘤、激素、自身免疫、心血管、代谢等十多个研究领域。华美生物的Elisa试剂盒价格相对偏高,对于国内科研经费不是特别充足的研究人员来说不是首选。
以上品牌都有各自的核心Elisa试剂盒产品,科研工作者可根据自身的研究领域的需求选择高质量的试剂盒品牌,以提升检测效率及结果有效性。


