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Related Concept Videos

Extracorporeal Removal of Drugs: Hemoperfusion and Hemofiltration01:25

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Hemoperfusion and hemofiltration are critical techniques in medical treatments to eliminate accumulated drugs, metabolites, and electrolytes from the bloodstream. These methods are particularly vital in cases of accidental poisoning and drug overdose.Hemoperfusion involves passing blood through an adsorbent material to remove unwanted substances. The main adsorbents used in hemoperfusion include activated charcoal and Amberlite resins. Activated charcoal can adsorb both polar and nonpolar...
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Author Spotlight: Utilizing Next-Generation Polymerized Human Hemoglobin for Improved Donor Lung Evaluation and Preservation in Rats
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Efficient polymeric material for separation of human hemoglobin.

Kadir Erol1, Kazım Köse2

  • 1a Department of Property Protection and Safety , Osmancık Ömer Derindere Vocational Higher School, Hitit University , Corum , Turkey.

Artificial Cells, Nanomedicine, and Biotechnology
|September 25, 2016
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Summary

Researchers developed functionalized poly(2-hydroxyethyl methacrylate-co-acrylic acid) microparticles for efficient hemoglobin removal. These cost-effective microparticles demonstrate high capacity and reusability for purification applications.

Keywords:
Acrylic acidhemoglobinmicroparticlesnet-poly(2-hydroxyethyl methacrylate-co-acrylic acid)separation

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Area of Science:

  • Materials Science
  • Biochemistry
  • Chemical Engineering

Background:

  • Conventional purification techniques can be costly and inefficient.
  • Hemoglobin removal is crucial in various biomedical applications.
  • Developing cost-effective, high-capacity purification methods is essential.

Purpose of the Study:

  • To synthesize and characterize novel poly(2-hydroxyethyl methacrylate-co-acrylic acid) microparticles.
  • To evaluate the efficacy of these microparticles for hemoglobin removal.
  • To investigate the adsorption capacity and reusability of the developed microparticles.

Main Methods:

  • Synthesis of acrylic acid-functionalized poly(2-hydroxyethyl methacrylate-co-acrylic acid) microparticles.
  • Characterization using FTIR, SEM, TEM, AFM, BET, and swelling tests.
  • Batch-wise optimization of adsorption conditions (pH, concentration, temperature, time).

Main Results:

  • Microparticles exhibited high adsorption capacity (1276.4 mg/g) at pH 7.4.
  • Optimal adsorption conditions were determined.
  • Microparticles showed promising reusability with minimal capacity loss over five cycles.

Conclusions:

  • Synthesized microparticles offer a cost-effective and high-capacity solution for hemoglobin removal.
  • The material demonstrates potential for large-scale purification processes.
  • Further research can explore applications in blood purification and diagnostics.