Exploring Intercellular Dynamics: Ultra-Weak Biophoton Emission as a Novel Indicator of Altered Cell Functions and Disease in Oligospermia Mice.

IF 1.4 Q3 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING
Journal of lasers in medical sciences Pub Date : 2023-12-26 eCollection Date: 2023-01-01 DOI:10.34172/jlms.2023.65
Arefeh Aryan, Fakhroddin Aghajanpour, Masoomeh Dashtdar, Fatemeh Hejazi, Maryam Salimi, Azar Afshar, Reza Soltani, Ahad Hasan Seyed Hasani, Abbas Aliaghaei, Hojjat-Allah Abbaszadeh, Hasan Mahmoodi, Leila Zahedi, Mohammad-Amin Abdollahifar, Fatemeh Fadaei Fathabadi
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引用次数: 0

Abstract

Introduction: Biophoton emission, the spontaneous release of photons from living cells, has emerged as an attractive field of research in the study of biological systems. Scientists have recently discovered that changes in biophoton emission could serve as potential indicators of pathological conditions. This intriguing phenomenon suggests that cells might communicate and interact with each other through the exchange of these faint but significant light signals. Therefore, the present study introduces intercellular relationships with biophoton release to detect normal and abnormal cell functions to further achieve cellular interactions by focusing on cell and cell arrangement in disease conditions. Methods: Twenty male mice were assigned to control and busulfan groups. Five weeks after the injection of busulfan, the testis was removed, and then the stereological techniques and TUNEL assay were applied to estimate the histopathology of the testis tissue sections. Results: The findings revealed that the ultra-weak biophoton emission in the control group was significantly lower than in the busulfan group. The oligospermia mice model showed that it significantly changed the spatial arrangement of testicular cells and notably decreased the testis volume, length of seminiferous tubules, and the number of testicular cells. The results of the TUNEL assay showed that the percentage of apoptotic cells significantly increased in the busulfan group. Conclusion: The ultra-weak biophoton emission from testis tissue was reduced in oligospermia mice. As a result, the decline of ultra-weak biophoton can indicate a change in cell arrangement, a decrease in intercellular interaction, and eventually disease.

探索细胞间动力学:将超弱生物光子发射作为少精症小鼠细胞功能和疾病改变的新指标
简介生物光子发射,即活细胞自发释放光子,已成为生物系统研究中一个极具吸引力的研究领域。科学家们最近发现,生物光子发射的变化可作为病理状况的潜在指标。这一引人入胜的现象表明,细胞之间可能通过这些微弱但重要的光信号进行交流和互动。因此,本研究利用生物光子释放引入细胞间关系,检测正常和异常的细胞功能,通过关注疾病情况下的细胞和细胞排列,进一步实现细胞间的相互作用。研究方法将 20 只雄性小鼠分为对照组和硫丹组。硫丹注射5周后,切除睾丸,然后应用立体定向技术和TUNEL检测法评估睾丸组织切片的组织病理学。结果显示结果发现,对照组的超弱生物光子发射率明显低于硫丹组。少精症小鼠模型显示,它显著改变了睾丸细胞的空间排列,并明显减少了睾丸体积、曲细精管长度和睾丸细胞数量。TUNEL检测结果表明,丁硫酚组凋亡细胞的比例明显增加。结论少精症小鼠睾丸组织的超弱生物光子发射减少。因此,超弱生物光子的减少可能预示着细胞排列的改变、细胞间相互作用的减少以及最终疾病的发生。
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来源期刊
Journal of lasers in medical sciences
Journal of lasers in medical sciences RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING-
CiteScore
3.00
自引率
13.30%
发文量
24
期刊介绍: The "Journal of Lasers in Medical Sciences " is a scientific quarterly publication of the Laser Application in Medical Sciences Research Center, Shahid Beheshti University of Medical Sciences. This journal received a scientific and research rank from the national medical publication committee. This Journal accepts original papers, review articles, case reports, brief reports, case series, photo assays, letters to the editor, and commentaries in the field of laser, or light in any fields of medicine such as the following medical specialties: -Dermatology -General and Vascular Surgery -Oncology -Cardiology -Dentistry -Urology -Rehabilitation -Ophthalmology -Otorhinolaryngology -Gynecology & Obstetrics -Internal Medicine -Orthopedics -Neurosurgery -Radiology -Pain Medicine (Algology) -Basic Sciences (Stem cell, Cellular and Molecular application and physic)
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