Acta Laser Biology Sinica, Volume. 31, Issue 4, 289(2022)
Research on the Application of Ultra-weak Bioluminescence in Medical Field
[1] [1] MICHAL C, PAVEL P. Ultra-weak photon emission from biological samples: definition, mechanisms, properties, detection and applications[J]. Journal of Photochemistry and Photobiology B: Biology, 2014, 139: 2-10.
[2] [2] MICHEL H, CHRISTIAN T, BERNARD G. Autoluminescence imaging: a non-invasive tool for mapping oxidative stress[J]. Trends in Plant Science, 2006, 11(10): 480-484.
[4] [4] JOHN A I, EDUARD V W, NAMUUN B, et al. Ultraweak photon emission as a non-invasive health assessment: a systematic review[J]. PLoS One, 2014, 9(2): e87401.
[5] [5] KOBAYASHI M, DEVARAJ B, USA M, et al. Two-dimensional imaging of ultra-weak photon emission from germinatinf soybean seedlings with a highly sensitive CCD camera[J]. Photochemistry and Photobiology, 1997, 65(3): 535-537.
[6] [6] YANG M N, DING W Y, LIU Y L, et al. Ultra-weak photon emission in healthy subjects and patients with type 2 diabetes: evidence for a non-invasive diagnostic tool[J]. Photochemical and Photobiological Sciences, 2017, 16(5): 736-743.
[8] [8] BURGOS R C R, SCHOEMAN J C, WINDEN L J V, et al. Ultra-weak photon emission as a dynamic tool for monitoring oxidative stress metabolism[J]. Scientific Reports, 2017, 7(1): 1229-1233.
[9] [9] PAVEL P, ANKUCH P, MAREK R. Role of reactive oxygen species in ultra-weak photon emission in biological systems[J]. Journal of Photochemistry and Photobiology B: Biology, 2014, 139: 11-23.
[10] [10] HABTEMARIAM S. Modulation of reactive oxygen species in health and disease[J]. Antioxidants (Basel), 2019, 8(11): 513-517.
[11] [11] HE M, SUN M, WIJK E V, et al. A Chinese literature overview on ultra-weak photon emission as promising technology for studying system-based diagnostics[J]. Complementary Therapies in Medicine, 2016, 25: 20-26.
[12] [12] KOBAYASHI K, OKABE H, KAWANO S, et al. Biophoton emission induced by heat shock[J]. PLoS One, 2014, 9(8): e105700.
[13] [13] GABE Y, MURASE D, KASAMATSU S, et al. Exploitation of long-lasting ultraweak photon emission to estimate skin photodamage after ultraviolet exposure[J]. Skin Research and Technology, 2021, 27(3): 309-315.
[14] [14] GABE Y, TAKEDA K, TOBIISHI M, et al. Evaluation of subclinical chronic sun damage in the skin via the detection of long-lasting ultraweak photon emission[J]. Skin Research and Technology, 2021, 27(6): 1064-1071.
[15] [15] WIJK R V, WIJK E P. An introduction to human biophoton emission[J]. Forsch Komplementarmed Klass Naturheilkd, 2005, 2: 77-83.
[16] [16] WIJK R V, WIJK E V, WIETMARSCHEN H V, et al. Towards whole-body ultra-weak photon counting and imaging with a focus on human beings: a review[J]. Journal of Photochemistry and Photobiology B: Biology, 2014, 139: 39-46.
[17] [17] YANG M, PANG J X, LIU J, et al. Spectral discrimination between healthy people and cold patients using spontaneous photon emission[J]. Biomedical Optics Express, 2015, 6(4): 1331-1339.
[18] [18] ESMAEILPOUR T, FEREYDOUNI E, DEHGHANI F, et al. An experimental investigation of ultraweak photon emission from adult murine neural stem cells[J]. Scientific Reports, 2020, 10(1): 463-466.
[19] [19] MADL P, VERWANGER T, GEPPERT M, et al. Oscillations of ultra-weak photon emission from cancer and non-cancer cells stressed by culture medium change and TNF-α[J]. Scientific Reports, 2017, 7(1): 11249-11261.
[21] [21] MURUGAN N J, PERSINGER M A, KARBOWSKI L M, et al. Ultraweak photon emissions as a non-invasive, early-malignancy detection tool: an in vitro and in vivo study[J]. Cancers (Basel), 2020, 12(4): 1001-1011.
[22] [22] BARAN I, CONSTANTA G, SIMONA P, et al. Detailed analysis of apoptosis and delayed luminescence of human leukemia Jurkat T cells after proton irradiation and treatments with oxidant agents and flavonoids[J]. Oxidative Medicine and Cellular Longevity, 2012(6): 498914.
[24] [24] WIJK V E, WIJK V R, BAJPAI R P. Quantum squeezed state analysis of spontaneous ultra weak light photon emission of practitioners of meditation and control subjects[J]. Indian Journal of Experimental Biology, 2008, 46(5): 345-252.
[25] [25] GUO J K, LIU S T, CHENG X, et al. Revealing acupuncture meridian-like system by reactive oxygen species visualization[J]. Bioscience Hypotheses, 2009, 2(6): 443-445.
[28] [28] YANAGAWA T, SAKAGUCHI H, UENO M, et al. Sustaining faculty of living functions and its biophoton observation[J]. Journal of Colloid and Interface Science, 2000, 18: 423-437.
[31] [31] ZAPATA F, PASTOR-RUIZ V, ORTEGA-OJEDA F, et al. Human ultra-weak photon emission as non-invasive spectroscopic tool for diagnosis of internal states―a review[J]. Journal of Photochemistry and Photobiology B: Biology, 2021, 216: 112141-112147.
[32] [32] WANG N, HUANG X, LI T, et al. Application of RRLC-QTOF-MS-based metabonomics and UPE for investigating Spleen-Qi deficiency syndrome with panax ginseng treatment[J]. Journal of Ethnopharmacology, 2020, 256: 112822-112829.
[33] [33] SCHUTGENS F W, NEOGI P, WIJK V E P, et al. The influence of adaptogens on ultraweak biophoton emission: a pilot-experiment[J]. Phytotherapy Research, 2009, 23(8): 1103-1108.
[34] [34] SUN M, WIJK V E, KOVAL S, et al. Measuring ultra-weak photon emission as a non-invasive diagnostic tool for detecting early-stage type 2 diabetes: a step toward personalized medicine[J]. Journal of Photochemistry and Photobiology B: Biology, 2017, 166: 86-93.
[35] [35] DOTTA B T, PERSINGER M A. Article increased photon emissions from the right but not the left hemisphere while imagining white light in the dark: the potential connection between consciousness and cerebral light[J]. Journal of Consciousness Exploration and Research, 2011, 2: 1463-1473.
[36] [36] DOTTA B T, SAROKA K S, PERSINGER M A. Increased photon emission from the head while imagining light in the dark is correlated with changes in electroencephalographic power: support for Bókkon’s biophoton hypothesis[J]. Neuroscience Letters, 2012, 513(2): 151-154.
[37] [37] ZAPATA F, PASTOR-RUIZ V, ORTEGA-OJEDA F, et al. Increment of spontaneous human biophoton emission caused by anger emotional states. Proof of concept[J]. Microchemical Journal, 2021, 169: 106558-106565.
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WANG Xuedong, ZHOU Dan, XU Ran, CHEN Lu, SONG Xiaoxiang, WANG Yukun. Research on the Application of Ultra-weak Bioluminescence in Medical Field[J]. Acta Laser Biology Sinica, 2022, 31(4): 289
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Received: Mar. 20, 2022
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Published Online: Sep. 26, 2022
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