Development of a CaCO3 Precipitation Method Using a Peptide and Microwaves Generated by a Magnetron

Author:

Kayamori Fumihiro12,Togashi Hiroyuki23,Endo Natsumi1,Ozaki Makoto1ORCID,Hirao Kan1,Arimoto Yonejiro4,Osawa Ryuji5,Tsuruoka Takaaki1ORCID,Imai Takahito6,Tomizaki Kin-ya67,Umetani Tomohiro28,Nakanishi Nobuhiro239,Usui Kenji129ORCID

Affiliation:

1. Faculty of Frontiers of Innovative Research in Science and Technology (FIRST), Konan University, Chuo-ku, Kobe 650-0047, Hyogo, Japan

2. Research Institute for Nanobio-Environment and Non-Ionizing Radiation (RINNIR), Konan University, Chuo-ku, Kobe 650-0047, Hyogo, Japan

3. DSP Research, Inc., Chuo-ku, Kobe 650-0047, Hyogo, Japan

4. Minato Medical Science Co., Ltd., Chuo-ku, Kobe 650-0047, Hyogo, Japan

5. Seikoh Giken Co., Ltd., Matsudo 270-2214, Chiba, Japan

6. Department of Materials Chemistry, Ryukoku University, Otsu 520-2194, Shiga, Japan

7. Innovative Materials and Processing Research Center, Ryukoku University, Otsu 520-2194, Shiga, Japan

8. Faculty of Intelligence and Informatics, Konan University, Higashinada-ku, Kobe 658-8501, Hyogo, Japan

9. Beyond5G Donated Lectures, Konan University, Higashinada-ku, Kobe 658-8501, Hyogo, Japan

Abstract

Microwave applications, such as microwave ovens and mobile phones, are ubiquitous and indispensable in modern society. As the utilization of microwave technology is becoming more widespread, the effects of microwaves on living organisms and physiological processes have received increased attention. This study aimed to investigate the effects of microwaves on calcium carbonate biomineralization as a model biochemical process. A magnetron oscillator was used to generate 2450 MHz microwaves because magnetrons are relatively inexpensive and widespread. We conducted transmission electron microscopy (TEM), atomic force microscopy (AFM), TEM-electron energy-loss spectroscopy (EELS), dynamic light scattering (DLS), and high-performance liquid chromatography (HPLC) measurements to analyze the calcium carbonate precipitates. Our findings showed the formation of string-like precipitates of calcium carbonate upon microwave irradiation from one direction, similar to those obtained using a semiconductor oscillator, as reported previously. This implied that the distribution of the frequency had little effect on the morphology. Furthermore, spherical precipitates were obtained upon microwave irradiation from two directions, indicating that the morphology could be controlled by varying the direction of microwave irradiation. Magnetrons are versatile and also used in large-scale production; thus, this method has potential in medical and industrial applications.

Funder

JST CREST

Publisher

MDPI AG

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