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AB154873

Gold偶联试剂盒(40nm,20 OD)

Gold Conjugation Kit (40nm, 20 OD)

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(19 Publications)

Gold Conjugation Kit (40 nm, 20 OD) (ab154873) offers several standout features:

- Rapid Conjugation: achieve Gold 40 nm, 20 OD nanoparticle labeling in under 1 hour with less than 5 minutes of hands-on time.
- High Efficiency: ensures 100% antibody recovery, meaning no loss of valuable antibodies.
- Versatility: suitable for conjugating antibodies making it suitable for various applications e.g. Lateral flow assays (LFA)
- Proven performance: cited in over 15 publications.
5 Images
Conjugation - Gold Conjugation Kit (40nm, 20 OD) (AB154873)
  • Conjugation

Supplier Data

Conjugation - Gold Conjugation Kit (40nm, 20 OD) (AB154873)

GOLD Conjugation Kit (40nm, 20 OD).

Please see the protocol booklet for a detailed method.

Functional Studies - Gold Conjugation Kit (40nm, 20 OD) (AB154873)
  • FuncS

Unknown

Functional Studies - Gold Conjugation Kit (40nm, 20 OD) (AB154873)

Lateral flow data – Gold Conjugation Kit vs traditional gold nanoparticle passive absorption techniques.

Antibody conjugation using the Gold Conjugation Kit vs traditional gold nanoparticle passive absorption techniques with uncoated gold nanoparticles, showing both enhanced signal intensity and improved specificity. 40 nm Gold particles were labeled with anti-IgA antibody and used to measure IgA concentration in a lateral flow inhibition assay, with IgA bound to a lateral flow strip.

Lateral flow assay - Gold Conjugation Kit (40nm, 20 OD) (AB154873)
  • LFA

PubMed

Lateral flow assay - Gold Conjugation Kit (40nm, 20 OD) (AB154873)

Vemulapati, S., et al used Gold Conjugation Kit (40nm, 20 OD) (ab154873) as part of examining vitamin D3 Deficiency. They used the kit to conjugate Gold to monoclonal anti-25(OH)D3 IgG antibody for use in lateral flow assay.
Vitamin D3 Lateral Flow Assay. (A) Image and schematic of the 25(OH)D3 strip architecture and components. (B) Image and intensity plot of a participant with low Vitamin D3 and high T/C ratio (C) Image and intensity plot of a participant with healthy levels of 25(OH)D3 and low T/C ratio.

Image from Vemulapati et al., Sci Rep., 7(1):14142; doi: 10.1038/s41598-017-13044-5. Reproduced under the Creative Commons license https://creativecommons.org/licenses/by/4.0/

Lateral flow assay - Gold Conjugation Kit (40nm, 20 OD) (AB154873)
  • LFA

PubMed

Lateral flow assay - Gold Conjugation Kit (40nm, 20 OD) (AB154873)

Lee, Seoho, et al used Gold Conjugation Kit (40nm, 20 OD) (ab154873) as part of examining low-cost point-of-care quantification of vitamin B12 concentrations. They used the kit to conjugate Gold to anti-vitamin B12 IgG for use in competitive lateral flow assay.
(A) Colorimetric variation of the test and control line regions on the silver enhanced B12 lateral flow test strip at different known concentrations of standard vitamin B12 samples (B) image processing algorithm used by the NutriPhone platform (C) Test and control line signals detected by the NutriPhone app as local intensity minima for 0 and 369 pmol/L of B12 standard samples (D) Calibration curve showing the T/C ratios of the colorimetric signals at different standard B12 concentrations.

Image from Lee et al., Scientific reports 6 (2016): 28237. Sci Rep., 6:28237; doi: 10.1038/srep28237. Reproduced under the Creative Commons license https://creativecommons.org/licenses/by/4.0/

Conjugation - Gold Conjugation Kit (40nm, 20 OD) (AB154873)
  • Conjugation

PubMed

Conjugation - Gold Conjugation Kit (40nm, 20 OD) (AB154873)

Guzman, John Mello Camille C., Sheng-Min Hsu, and Han-Sheng Chuang used Gold Conjugation Kit (40nm, 20 OD) (ab154873) as part of developping a colorimetric diagnostic capillary device for the rapid detection of biomarkers. They used the kit to conjugate Gold to probe rabbit polyclonal anti-LCN antibody for use in the device.
(a) Illustrations for preparing sandwiched immunocomplex and detection process. (b) Sandwiched immunocomplex detection process. (c-g) Quantitative assessment of the detection platform : (c) grayscale images of diagnostic tool inside the detection box; (d) calibration of the grayscale intensity of sandwiched immunocomplex with respect to different lipocalin-1 (LCN-1) concentrations ranging from 100 pg/mL to 1 μg/mL; (e) binding specificity of the capture and probe particles in the presence of different antigens; (f) binding stability of sandwiched immunocomplex with respect to different times; (g) reliability of the detection platform. Comparison of LCN-1 concentration detection results between the proposed diagnostic tool and spectrophotometer. The symbols "*", "**", "***", "ns" denote p < 0.05, p < 0.01, p < 0.001, and p > 0.05, respectively, under student's t test (n = 5). The error bars represent standard deviation.

Image from Guzman et al., Biosensors (Basel), 10(10):130; doi: 10.3390/bios10100130.Reproduced under the Creative Commons license https://creativecommons.org/licenses/by/4.0/

关键信息

产品详情

Abcam's Gold Conjugation Kit allows antibodies or proteins to be covalently attached to ultra-stable Gold nanoparticles at very high OD quickly and easily. The nanoparticles in the Abcam's Gold Conjugation Kit have a protective surface coat that can withstand the most extreme conditions (e.g. 2.5M NaOH at 70°C for > 1 hour). The hands-on time for the Abcam Gold conjugation procedure is around 2 minutes and the conjugate is ready to use within 20 minutes. The researcher simply pipettes the biomolecule into a vial containing the nanoparticles of the Gold Conjugation Kit.

The nanoparticles in this kit are supplied as a freeze-dried mixture. The conjugation reaction is initiated simply by reconstituting the freeze-dried nanoparticles with the antibody, which becomes attached (through lysine residues) to the surface of the nanoparticles.

The resulting covalent conjugates are more stable than those prepared by passive adsorption methods. Moreover, unlike passive methods, the coating process is independent of the isoelectric point of the antibody, avoiding the need for extensive trials at different pH values. All antibodies can be labelled at a single pH.

Learn more about buffer compatibility, protein/secondary antibody conjugation and labeling chemistry in our FAQs.

Benefits

Easy and rapid conjugation – only 2 minutes hands-on time and 100% recovery of materials

Site-specific labelling – Antigen binding sites of antibodies are free to bind the target molecule

Proprietary surface coating prevents metal-protein interactions, and enables covalent attachment to the Gold – Stable conjugates formed

Fully scalable – Easy transfer from R&D to manufacturing

Uniform spherical shape and narrow size distribution – Consistent high quality and excellent batch-to-batch reproducibility

Buffer requirements:

The biomolecule to be conjugated should ideally be in 10 mM amine-free buffer (e.g. MES, MOPS, HEPES), pH range 6.5 to 8.5. Sugars have no effect on conjugation efficiency. For incompatible buffers and low antibody concentrations, use our rapid antibody purification and concentration kits for Nanoparticles. To learn more about incompatible buffers, please refer to the protocol booklet.

This product is manufactured by Expedeon, an Abcam company, and was previously called 40nm InnovaCoat® GOLD. 230-0010 is the same as the 10 x 1 μg size. 230-0015 is the same as the 1 x 10 μg size. 230-0005 is the same as the 3 x 1 μg size.

The 3 and 10 Test Conjugation Kits are designed to label 12 μl of antibody per vial.

The 1 Test Conjugation Kit is designed to label 120 μl of antibody per vial.

规格

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性能和储存信息

运输条件
Ambient - Cannot Ship with Ice
推荐的短期储存条件
-20°C
推荐的长期储存条件
-20°C
储存信息
-20°C

产品实验方案

靶点信息

文献 (19)

Recent publications for all applications. Explore the full list and refine your search

Heliyon 10:e36942 PubMed39281572

2024

Integrating loop-mediated isothermal amplification with lateral flow assay to achieve a highly sensitive method for detecting Genome in raw pork.

Applications

Unspecified application

Species

Unspecified reactive species

Eakkapote Prompunt,Weeraya Thongkum,Thitima Sumphanapai,Parin Kamseng,Somphot Saoin,Chirapat Kloypan,Chatchai Tayapiwatana,Sawitree Nangola

The Journal of infectious diseases 231:e244-e253 PubMed39126323

2024

Characterization of the Spatiotemporal Localization of a Pan-Mucorales-Specific Antigen During Germination and Immunohistochemistry.

Applications

Unspecified application

Species

Unspecified reactive species

Alyssa C Hudson,Dora E Corzo-Léon,Iana Kalinina,Duncan Wilson,Christopher R Thornton,Adilia Warris,Elizabeth R Ballou

Biomicrofluidics 17:044102 PubMed37484814

2023

Photonic crystal enhanced immunofluorescence biosensor integrated with a lateral flow microchip: Toward rapid tear-based diabetic retinopathy screening.

Applications

Unspecified application

Species

Unspecified reactive species

Li-Ying Chen,Sheng-Min Hsu,Jhih-Cheng Wang,Tai-Hua Yang,Han-Sheng Chuang

Tropical medicine and infectious disease 7: PubMed35736981

2022

Non-Invasive Detection of SARS-CoV-2 Antigen in Saliva versus Nasopharyngeal Swabs Using Nanobodies Conjugated Gold Nanoparticles.

Applications

Unspecified application

Species

Unspecified reactive species

Manal Kamel,Sara Maher,Hanan El-Baz,Faten Salah,Omar Sayyouh,Zeinab Demerdash

Biosensors 12: PubMed35735510

2022

Development of a Self-Viscosity and Temperature-Compensated Technique for Highly Stable and Highly Sensitive Bead-Based Diffusometry.

Applications

Unspecified application

Species

Unspecified reactive species

Wei-Long Chen,Han-Sheng Chuang

PLoS neglected tropical diseases 16:e0010311 PubMed35358198

2022

Monoclonal antibody pairs against SARS-CoV-2 for rapid antigen test development.

Applications

Unspecified application

Species

Unspecified reactive species

Nol Salcedo,Ankita Reddy,Adam R Gomez,Irene Bosch,Bobby Brooke Herrera

Current research in biotechnology 3:288-299 PubMed35083431

2021

Highly portable quantitative screening test for prostate-specific antigen at point of care.

Applications

Unspecified application

Species

Unspecified reactive species

Balaji Srinivasan,David M Nanus,David Erickson,Saurabh Mehta

Scientific reports 11:7880 PubMed33846482

2021

Carbohydrate binding module-fused antibodies improve the performance of cellulose-based lateral flow immunoassays.

Applications

Unspecified application

Species

Unspecified reactive species

Adrian Elter,Tina Bock,Dieter Spiehl,Giulio Russo,Steffen C Hinz,Sebastian Bitsch,Eva Baum,Markus Langhans,Tobias Meckel,Edgar Dörsam,Harald Kolmar,Gerhard Schwall

Biosensors & bioelectronics 171:112715 PubMed33099241

2020

A novel rapid detection for SARS-CoV-2 spike 1 antigens using human angiotensin converting enzyme 2 (ACE2).

Applications

Unspecified application

Species

Unspecified reactive species

Jong-Hwan Lee,Minsuk Choi,Yujin Jung,Sung Kyun Lee,Chang-Seop Lee,Jung Kim,Jongwoo Kim,Nam Hoon Kim,Bum-Tae Kim,Hong Gi Kim

Biosensors 10: PubMed32977557

2020

Colorimetric Diagnostic Capillary Enabled by Size Sieving in a Porous Hydrogel.

Applications

Unspecified application

Species

Unspecified reactive species

John Mello Camille C Guzman,Sheng-Min Hsu,Han-Sheng Chuang
View all publications
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