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Kabupaten Nias Selatan

Badan Riset dan Inovasi Nasional

Informasi Dataset

07-11-2022

12-08-2024

5fa503df-4863-44f6-add2-23fed4b693f8

Dataset Serupa
A Comparison of Extraction Techniques for the rapid EEG-P300 Signals

In this paper, three different methods for brain signal acquisition are presente...

Interdiffusion in Ni-Co-Re and Ni-Co-Ru Systems

The diffusion in Ni-Co-Re and Ni-Co-Ru systems have been investigated in the tem...

The importance of the Banda Sea for tuna fisheries : A review of studies on the ...

Tuna exploitation in the Banda Sea has been started when Indonesia government ga...

Diffusion of Re and Ru in the γ′ Phase of Ni based Alloys

The diffusion of Re and Ru in the γ`-Ni3Al phase has been investigated at a rang...

The Synergy Of Biochar, Compost And Biofertilizer For Development Of Sustainable...

To initiate the decomposition process need decomposer inoculants and an easily a...

INFORMASI: Data berikut ini masih dalam proses pemenuhan Prinsip SDI.

Comparison of Immobilized Metal Affinity Chromatography Ni-NT A And Co-TALON For The Purification of Recombinant Human Erythropoietin

Terbatas

The purification of recombinant proteins is an important stage in biopharmaceutical research. A commonly used technique is immobilized metal affinity chromatography (IMAC). One of the main advantages of this type of chromatography is that the column can easily be regenerated for subsequent purification work. The mechanism of IMAC is based on bonding between metal ions immobilized on a matrix with a specific amino acid. Because of the strong interactions of the electron donor group on the irnidazole ring, histidine is often used in the IMAC purification system. Two types of commercial IMAC resin use a nitrilotriacetic acid (NTA) matrix: a nickel-based (Ni-NTA) and cobalt-based (Co-NT A), better known as TALON. This study was aim to investigate the effect of the metal ions Ni2+ and Co2+ to purify recombinant human erythropoietin (rhEPO) expressed in yeast system Pichia pastoris. The results indicated that both Ni-NT A and Co-TALON gave almost the same level of protein purity; however, Ni-NTA has a higher binding affinity than Co-TALON might be due to the higher stability complex ofNt. The average amount of protein bound by Ni-NT A and Co-TALON was 183.5 and 38.7 μg/mL, respectively. Makara Journal of Science, Vol.19 No. 4, Hal. 137-142

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