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Commentary Open Access

Generation of selenium nano- and micro-materials using abiotic and biotic processes

  • 1Biological Sciences, Louisiana Tech University, USA
  • 2Cellular Neuroscience Lab, Biomedical Engineering, Louisiana Tech University, USA
  • 3nstitute for Micromanufacturing, Louisiana Tech University, USA
+ Affiliations - Affiliations

Corresponding Author

Mark A. DeCoster, decoster@latech.edu

Received Date: March 19, 2026

Accepted Date: June 04, 2026

Abstract

We have previously described the generation of Metal Organic Biohybrids (MOBs) as self-assembling structures that are formed by a combination of a biological component (amino acid), and a metal, such as copper. This MOBs synthesis process has now been distilled to be purely biochemical (a green chemistry process), or abiotic, not requiring the presence of cells. Building on these discoveries, in this commentary we describe the use of selenium for the first time using MOBs synthesis techniques, as well as using biotic techniques, that is, selenium in the presence of living microbes. New and different materials are described using the respective techniques, which have different nano- and micro-scale properties. We anticipate that the abiotic and biotic techniques may provide parallel methods for generating new MOBs and new nanomaterials, respectively. One potential application of the generated materials could include treatments for cancer, since in the case of selenium-containing MOBs, we demonstrate 100 percent biodegradability. 

Keywords

Selenium, Cancer, Nanomaterials, Copper, Microbes, Metal-Organic Biohybrids (MOBs)

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