1.Anti-radiation metabolomics of Hericium erinaceus polysaccharides based on gas chromatography-mass spectrometry.
Zhuo-Yan REN ; Bing-Kun XIAO ; Xiao-Yao MIAO ; Rong-Qing HUANG
China Journal of Chinese Materia Medica 2025;50(3):758-767
A serum metabolomics analysis method based on gas chromatography-mass spectrometry(GC-MS) was used to investigate the metabolic regulation mechanism of Hericium erinaceus(H. erinaceus) polysaccharides on radiation injury. A mouse model of radiation injury was established by ~(60)Co-γ irradiation. High and low dose groups of H. erinaceus polysaccharide injection were designed, and Rubiae Radix et Rhizoma extract was set as the positive control group to investigate the therapeutic effects and metabolic reaction pathways of H. erinaceus polysaccharides on radiation injury. The metabolites of serum samples were collected by GC-MS, and principal component analysis(PCA) was conducted to establish the metabolic profiles of each group of mice. Partial least squares discriminant analysis(PLS-DA), t-test(P<0.05), and variable importance in the projection(VIP>1) were used to screen out the differential metabolite. Metabolite identification and construction of related metabolic pathways and metabolic networks were achieved by using online databases such as HMDB and METLIN. The results showed that 12 differential metabolites in the serum of mice irradiated at 6.5 Gy that were associated with the radiation injury model, including lactic acid, alanine, urea, serine, threonine, glycerol, L-5-oxoproline, L-lysine, stearic acid, stearic acid, oleic acid, and 1-monopalmitoylglucoside. Two metabolic pathways were enriched: glycerolipid metabolism and metabolism of glycine, serine, and threonine. 18 differential metabolites in the serum of mice irradiated at 8.5 Gy were associated with the radiation injury model, including lactic acid, alanine, urea, L-leucine, glycerol, nonanoic acid, serine, threonine, L-5-oxoproline, phenylalanine, L-ornithine, 1,5-dehydroorbital, L-lysine, L-tyrosine, pectic, oleic, stearic, and cholesterol. Four metabolic pathways were enriched: phenylalanine, tyrosine, and tryptophan synthesis, phenylalanine metabolism, glyceride metabolism, and glycine, serine, and threonine metabolism. It was suggested that H. erinaceus polysaccharides could intervene in radiation injury by altering amino acid and fatty acid synthesis in mice. It was assumed that H. erinaceus polysaccharides regulated the level of metabolic pathways through lipid metabolism and amino acid metabolism, thus affecting energy metabolism and amino acid metabolism and exerting its therapeutic effect on radiation damage.
Animals
;
Mice
;
Metabolomics/methods*
;
Gas Chromatography-Mass Spectrometry/methods*
;
Polysaccharides/pharmacology*
;
Male
;
Hericium/chemistry*
;
Drugs, Chinese Herbal/administration & dosage*
;
Metabolome/drug effects*
;
Gamma Rays/adverse effects*
2.Effects of Total Body Irradiation with 60 Co Gamma Ray at Different Dose Rates on Hematopoietic and Immune Cells in Mice.
Hui SHU ; Ya DONG ; Xue-Wen ZHANG ; Xing SHEN ; Shuang XING ; Zu-Yin YU
Journal of Experimental Hematology 2025;33(4):1181-1189
OBJECTIVE:
To investigate the effect of irradiation dose rate of 60Co γ-ray on hematopoietic and immune cells in total body irradiation (TBI) mice.
METHODS:
After TBI with 8 Gy 60Co γ-ray at three irradiation dose rates of 0.027, 0.256 and 0.597 Gy/min, the survival and change of body weight of C57BL/6J mice were observed within 30 days. The peripheral blood parameters were examined at each time point within 30 days post-irradiation. The hematopoietic stem/progenitor cell counts of mice were examined on the 10th and 30th day post-irradiation by flow cytometry, as well as the proportions of immune cells in peripheral blood, bone marrow and spleen of mice on the 30th day post-irradiation.
RESULTS:
After TBI with 8 Gy 60Co γ-ray, the 30-day survival rate of high dose-rate group was 0, which was significantly lower than 90% of medium dose-rate group and 100% of low dose-rate group (both P < 0.001). The peripheral blood parameters of all three groups showed a sharp decline → low value → gradually recovering trend. The count of white blood cell, neutrophil, lymphocyte, red blood cell, platelet and hemoglobin level in the high dose-rate and medium dose-rate groups were significantly lower than those in the low dose-rate group on day 7-18 post-irradiation (all P < 0.05), but there were no significant differences between the high dose-rate and medium dose-rate groups (P >0.05). On the 10th day after irradiation, the proportion and number of bone marrow hematopoietic stem/progenitor cells (including LK, LSK, LT-HSC, ST-HSC, and MPP cells) in the low dose-rate and medium dose-rate groups were significantly decreased compared to those in the normal group (all P < 0.05), but there were no significant differences between the two groups (P >0.05). On the 30th day after irradiation, LSK, LT-HSC, ST-HSC and MPP cells in the low dose-rate group recovered to normal levels, while those in the medium dose-rate group were still significantly lower than those in the low dose-rate group (all P < 0.001). The results of bone marrow and peripheral immune cell tests on the 30th day after irradiation showed that the ratios of T and B lymphocytes in the low dose-rate and medium dose-rate groups were reduced compared to that in the normal group (both P < 0.05), while the ratio of neutrophils was increased (P < 0.01). The trend of changes in the spleen and peripheral blood was consistent.
CONCLUSION
The degree of hematopoietic and immune cell damage in mice after TBI with 8 Gy 60Co γ-ray is related to the dose rate, and low dose-rate irradiation can reduce the damage in the animal model. Therefore, choosing the appropriate dose rate of irradiation is a key factor in establishing an objective and reliable experimental animal model of irradiation.
Animals
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Mice
;
Whole-Body Irradiation
;
Gamma Rays
;
Mice, Inbred C57BL
;
Hematopoietic Stem Cells/radiation effects*
;
Cobalt Radioisotopes
;
Dose-Response Relationship, Radiation
;
Male
3.Research Progress in Antibody Responses Against SARS-CoV-2 Variants of Concern.
Acta Academiae Medicinae Sinicae 2023;45(3):454-463
So far,the coronavirus disease 2019(COVID-19)has been persisting for nearly three years,infecting about 700 million people and causing more than 6 million deaths,which has seriously affected the human society.According to Global Initiative on Sharing All Influenza Data,there are more than 12 million SARS-CoV-2 variants,of which the five major variants of concern are Alpha,Beta,Gamma,Delta and Omicron.Their infectivity,pathogencity,and neutralization resistance have changed greatly compared with the original strain,which has brought great pressure to the prevention and control of the pandemic.Antibody level testing is critical for confirming infection,epidemiological investigation,vaccine development,and neutralizing drug preparation.Focusing on the humoral immunity against SARS-CoV-2,this paper introduces the mutation sites,neutralization resistance,and vaccination efficacy of the five variants of concern,and briefly summarizes the evolutionary characteristics,future mutation directions,and host immunity.
Humans
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SARS-CoV-2/genetics*
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Antibody Formation
;
COVID-19
;
Gamma Rays
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Antibodies, Neutralizing
;
Antibodies, Viral
5.Establishment of Cs γ ray Combined with Cyclophosphamide and Chloramphenicol-Mediated Mouse Model of Acquired Aplastic Anemia.
Le ZHANG ; Xin-Long SONG ; Ai-Di WANG ; Shan ZHANG ; Ping-Ping WANG ; Bao-Shan LIU
Journal of Experimental Hematology 2019;27(2):527-533
OBJECTIVE:
To improve and establish the mouse model with aplastic anemia (AA) mediated by Cs γ-ray irradiation combined with cyclophosphamide (CTX) and chloramphenicol (CHL) injection,so as to provide a stable model for studying the pathogenesis and treatment of AA .
METHODS:
The BALB/c mice were exposed to Cs γ-ray of 3-5 Gy(91 cGy/min) and were intraperitoneally injected with CTX of 25 mg/(kg.d) and CHL of 62.5 mg/(kg.d) at D 4,5 and 6 after irradiation; the WBC, platelet and reticulocyte counts in peripheral blood as well as the mucleated cell count in bone marrow and bone marrow smears were detected .
RESULTS:
The 3-lineage cells in peripheral blood of BALB/c mouse model with acquired AA were rapidly reduced, especially WBC, platelet and reticulocyte counts were lowest at D 14,the 3-lineage cells in peripheral blood were still severely reduced at D 28; the nucleated cell count in bone marrow significantly dcreased,the bone marrow hyperplasia was reduced or severely reduced; the pathological sections of bone marrow showed the severe reduction of hematopoietic cells and the increased of non-hematopoietic cells such as fat cells.
CONCLUSION
The mouse model with acquired AA has been established by Cs γ-ray irradiation combined with CTX and CHL injection. All detection indicators of this model reach to diagnostic criteria for acquired AA,therefore this mouse model may be used as the model for study of pathogenesis and treatment of acquired AA.
Anemia, Aplastic
;
Animals
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Chloramphenicol
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Cyclophosphamide
;
Gamma Rays
;
Mice
;
Mice, Inbred BALB C
6.Clinical Application of Blood Product Irradiation for Hematological Purpose-Review.
Qing-Sheng CAO ; Ming-Hui WANG
Journal of Experimental Hematology 2019;27(6):2030-2034
Abstract With the development of transfusion medicine and the mastery of blood transfusion diagnosis and treatment techniques, the application of irradiated blood products in our country is gradually increasing. In recent years, the proportion of blood transfused by γ-rays has been increasing. In some foreign countries, the application rate of blood irradiated by radiotherapy is as high as 95%. At present, it is still in the promotion stage in China. This article summarizes the commonly used methods of blood irradiation, including the choice of irradiation source, the core dose and common irradiation targets, compares the difference of different irradiation methods, and generalizes the common application of blood irradiation. It is proposed that in addition to TA-GVHD application, blood irradiation may have a broad prospects for cancer therapy and microbial killing.
Blood Transfusion
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China
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Gamma Rays
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Graft vs Host Disease
;
Humans
7.Effects of irradiation and leukoreduction on down-regulation of CXCL-8 and storage lesion in stored canine whole blood
Hayoung YANG ; Woosun KIM ; Junwoo BAE ; Hyunwoo KIM ; Sangki KIM ; Jihye CHOI ; Jinho PARK ; Dong In JUNG ; HongBum KOH ; DoHyeon YU
Journal of Veterinary Science 2019;20(1):72-78
White blood cells (WBCs) and storage period are the main factors of transfusion reactions. In the present study, cytokine/chemokine concentrations after leukoreduction (LR) and irradiation (IR) in stored canine whole blood were measured. Red blood cell storage lesion caused by IR and LR were also compared. Blood samples from 10 healthy Beagles were divided into four groups (no treatment, LR-, IR-, and LR + IR-treated). Leukocytes were removed by filtration in the LR group and gamma radiation (25 Gy) was applied in the IR group. Immunologic factors (WBCs, interleukin-6 [IL-6], C-X-C motif chemokine ligand 8 [CXCL-8], and tumor necrosis factor-alpha) and storage lesion factors (blood pH, potassium, and hemolysis) were evaluated on storage days 0, 7, 14, 21, and 28. Compared to the treated groups, IL-6 and CXCL-8 concentrations during storage were significantly higher in the control (no treatment) group. LR did not show changes in cytokine/chemokine concentrations, and storage lesion presence was relatively mild. IR significantly increased CXCL-8 after 14 days of storage, but IR of leukoreduced blood did not increase CXCL-8 during 28 days of storage. Storage lesions such as hemolysis, increased potassium, and low pH were observed 7 days after IR and storage of blood, regardless of LR. IR of leukoreduced blood is beneficial to avoid immune reactions; however, storage lesions should be considered upon storage.
Blood Preservation
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Down-Regulation
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Erythrocytes
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Filtration
;
Gamma Rays
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Hemolysis
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Hydrogen-Ion Concentration
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Immunologic Factors
;
Interleukin-6
;
Leukocyte Reduction Procedures
;
Leukocytes
;
Necrosis
;
Potassium
;
Transfusion Reaction
8.Analytic simulator and image generator of multiple-scattering Compton camera for prompt gamma ray imaging.
Biomedical Engineering Letters 2018;8(4):383-392
For prompt gamma ray imaging for biomedical applications and environmental radiation monitoring, we propose herein a multiple-scattering Compton camera (MSCC). MSCC consists of three or more semiconductor layers with good energy resolution, and has potential for simultaneous detection and differentiation of multiple radio-isotopes based on the measured energies, as well as three-dimensional (3D) imaging of the radio-isotope distribution. In this study, we developed an analytic simulator and a 3D image generator for a MSCC, including the physical models of the radiation source emission and detection processes that can be utilized for geometry and performance prediction prior to the construction of a real system. The analytic simulator for a MSCC records coincidence detections of successive interactions in multiple detector layers. In the successive interaction processes, the emission direction of the incident gamma ray, the scattering angle, and the changed traveling path after the Compton scattering interaction in each detector, were determined by a conical surface uniform random number generator (RNG), and by a Klein-Nishina RNG. The 3D image generator has two functions: the recovery of the initial source energy spectrum and the 3D spatial distribution of the source. We evaluated the analytic simulator and image generator with two different energetic point radiation sources (Cs-137 and Co-60) and with an MSCC comprising three detector layers. The recovered initial energies of the incident radiations were well differentiated from the generated MSCC events. Correspondingly, we could obtain a multi-tracer image that combined the two differentiated images. The developed analytic simulator in this study emulated the randomness of the detection process of a multiple-scattering Compton camera, including the inherent degradation factors of the detectors, such as the limited spatial and energy resolutions. The Doppler-broadening effect owing to the momentum distribution of electrons in Compton scattering was not considered in the detection process because most interested isotopes for biomedical and environmental applications have high energies that are less sensitive to Doppler broadening. The analytic simulator and image generator for MSCC can be utilized to determine the optimal geometrical parameters, such as the distances between detectors and detector size, thus affecting the imaging performance of the Compton camera prior to the development of a real system.
Clothing
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Gamma Rays*
;
Isotopes
;
Radiation Monitoring
;
Semiconductors
9.MMP Inhibitor Ilomastat Improves Survival of Mice Exposed to γ-Irradiation.
Xiao Man LI ; Yong TAN ; Chun Qian HUANG ; Meng Chuan XU ; Qian LI ; Dong PAN ; Bao Quan ZHAO ; Bu Rong HU
Biomedical and Environmental Sciences 2018;31(6):467-472
There is still a need for better protection against or mitigation of the effects of ionizing radiation following conventional radiotherapy or accidental exposure. The objective of our current study was to investigate the possible roles of matrix metalloproteinase inhibitor, ilomastat, in the protection of mice from total body radiation (TBI), and the underlying protective mechanisms. Ilomastat treatment increased the survival of mice after TBI. Ilomastat pretreatment promoted recovery of hematological and immunological cells in mice after 6 Gy γ-ray TBI. Our findings suggest the potential of ilomastat to protect against or mitigate the effects of radiation.
Acute Radiation Syndrome
;
blood
;
immunology
;
prevention & control
;
Animals
;
Blood Cells
;
drug effects
;
radiation effects
;
Dose-Response Relationship, Drug
;
Gamma Rays
;
adverse effects
;
Hydroxamic Acids
;
therapeutic use
;
Indoles
;
therapeutic use
;
Matrix Metalloproteinase Inhibitors
;
therapeutic use
;
Mice
;
Radiation Injuries, Experimental
;
blood
;
immunology
;
prevention & control
;
Radiation-Protective Agents
;
therapeutic use
;
Spleen
;
drug effects
;
immunology
;
radiation effects
;
Survival Analysis
;
Whole-Body Irradiation
10.High-resolution melting-based TILLING of γ ray-induced mutations in rice.
Shan LI ; Song-Mei LIU ; Hao-Wei FU ; Jian-Zhong HUANG ; Qing-Yao SHU
Journal of Zhejiang University. Science. B 2018;19(8):620-629
Targeting Induced Local Lesions IN Genomes (TILLING) is a reverse genetics strategy for the high-throughput screening of induced mutations. γ radiation, which often induces both insertion/deletion (Indel) and point mutations, has been widely used in mutation induction and crop breeding. The present study aimed to develop a simple, high-throughput TILLING system for screening γ ray-induced mutations using high-resolution melting (HRM) analysis. Pooled rice (Oryza sativa) samples mixed at a 1:7 ratio of Indel mutant to wild-type DNA could be distinguished from the wild-type controls by HRM analysis. Thus, an HRM-TILLING system that analyzes pooled samples of four M2 plants is recommended for screening γ ray-induced mutants in rice. For demonstration, a γ ray-mutagenized M2 rice population (n=4560) was screened for mutations in two genes, OsLCT1 and SPDT, using this HRM-TILLING system. Mutations including one single nucleotide substitution (G→A) and one single nucleotide insertion (A) were identified in OsLCT1, and one trinucleotide (TTC) deletion was identified in SPDT. These mutants can be used in rice breeding and genetic studies, and the findings are of importance for the application of γ ray mutagenesis to the breeding of rice and other seed crops.
Crops, Agricultural/radiation effects*
;
Gamma Rays
;
Genetic Techniques
;
Genome, Plant
;
Homozygote
;
INDEL Mutation
;
Mutagenesis
;
Oryza/radiation effects*
;
Plant Breeding
;
Polymerase Chain Reaction
;
Seeds
;
Sequence Analysis, DNA
;
Sequence Deletion

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