1.Research progress on anti-inflammatory effects of traditional Chinese medicine under the guidance of syndrome differentiation and treatment
Jianing BAO ; Xiaonan ZHANG ; Xufeng TAO ; Hong XIANG ; Deshi DONG
China Pharmacy 2026;37(4):528-532
Inflammation is the body’s response to damage, infection or other stimuli, but its excessive or continuous development can lead to a variety of diseases. Although modern medical anti-inflammatory therapies were widely used, it is often accompanied by limitations such as more adverse reactions. Based on the “holistic view” and “differential treatment”, traditional Chinese medicine (TCM) regards inflammation as a manifestation of the imbalance of yin and yang in the body and the conflict between good and evil. The application of anti-inflammatory TCM is not only aimed at the pathological state of “inflammation”, but also based on the overall consideration of “syndrome”. According to different types of syndrome, anti-inflammatory TCM can be divided into heat-clearing and detoxifying agents (such as Lonicera japonica and Isatis indigotica ), heat-clearing and drying dampness agents (such as Coptidis Rhizoma), blood-activating and stasis-dissolving agents (such as Salvia miltiorrhiza ) and vital qi-strengthening and pathogenic factor-expelling agents (such as Panax ginseng ). Four types of anti-inflammatory TCM restore the body’s immune balance through the systematic regulation of multi-component, multi-target and multi-pathway, exhibiting a good anti-inflammatory effect. Future research should focus on integrating systematic biology, applying artificial intelligence, carrying out high-quality evidence-based research, and combining traditional Chinese medicine and Western medicine, so as to reveal the overall regulatory law of anti-inf lammatory effects of TCM and promote clinical rational use.
2.Investigation of natural radionuclide activity indrinking water in Hohhot, China
Bo JU ; Gerilemandahu ; Yulong BAO ; Shuai ZHANG ; Xiang LIU ; Haribala ; Xiao XU ; Zhichao SUN ; Xiaojuan YANG
Chinese Journal of Radiological Health 2026;35(2):159-164
Objective :
To investigate the activity concentrations of natural radionuclides in drinking water (tap water andwell water) in urban and rural areas of Hohhot, assess the safety of drinking water, and to provide data support for localdrinking water radioactivity monitoring and management.
Methods :
Representative samples of well water and tap waterwere collected from nine banners/counties/districts in Hohhot. Activity concentrations were measured using a low-back-ground gross α/β counter, an α spectrometer, inductively coupled plasma mass spectrometry, and a radium/radon analyzer.
Results :
A total of nine tap water samples and nine well water samples were analyzed. For the tap water samples, gross αactivity concentrations ranged from 0.093 to 0.193 Bq/L, gross β from 0.091 to 0.225 Bq/L, uranium mass concentrationsfrom 2.32 to 10.36 μg/L, thorium mass concentrations from 0.09 to 0.20 μg/L,210Po activity concentrations from below theminimum detectable limit to 0.41 mBq/L, and 226Ra activity concentrations from 8.70 to 13.35 mBq/L. For the well watersamples, gross α activity concentrations ranged from 0.111 to 0.203 Bq/L, gross β from 0.111 to 0.270 Bq/L, uranium massconcentrations from 2.31 to 13.28 μg/L, thorium mass concentrations from 0.17 to 0.26 μg/L,210Po activity concentrationsfrom 1.03 to 2.12 mBq/L, and 226Ra activity concentrations from 15.38 to 23.63 mBq/L.
Conclusion
The activityconcen-trations of natural radionuclides in both well water and tap water in the Hohhot region were at environmental backgroundlevels and met national drinking water hygiene standards.
3.Effect of autologous bone and allogeneic bone in repair of bone defect after microwave in situ inactivation for bone giant cell tumor around the knee
Ping-guang XIA ; Xiang JIANG ; Bao-cheng ZHANG
Journal of Regional Anatomy and Operative Surgery 2025;34(9):795-799
Objective To investigate the clinical effect of autologous bone combined with allogeneic bone in repairing bone defect after microwave in situ inactivation for bone giant cell tumor around the knee.Methods A retrospective analysis was conducted on the clinical data of 39 patients with bone giant cell tumor around the knee treated in our hospital from January 2015 to December 2022.The tumor tissues of all patients were performed microwave in situ inactivation first,then followed by curettage;the subchondral bone defect adjacent to the articular surface was reconstructed with autologous bone graft,and the remaining tumor cavity was filled with a composite of autologous and allogeneic bone;then a locking plate was applied for protective fixation.The early outcomes including operative time,intraoperative blood loss,hospital stay,wound healing,and surgery-related complications were recorded.The regular follow-up was conducted after surgery,then the tumor recurrence or metastasis was observed and the status of internal fixation and bone graft fusion along with its fusion time were recorded.The knee functions before operation and at the end of follow-up were evaluated with the Musculoskeletal Tumor Society(MSTS)scoring system.The radiographic joint degeneration was evaluated by the Aboulafia classification system at the end of follow-up.Results The patients showed a mean operative time of(134.7±14.2)minutes,an averaged intraoperative blood loss of(153.9±23.0)mL,and a mean hospital stay of(17.4±3.2)days.The patients obtained Ⅰ phase wound healing without any surgery-related complications such as neurovascular injury.All patients underwent the postoperative follow-up,without local recurrence or metastasis cases during the follow-up.At the end of follow-up,the MSTS score of patients was higher than that before operation(P<0.05),with an excellent and good rate of knee function recovery of 89.7%.At the end of follow-up,X-ray films showed good filling of the lesion and bone graft fusion,with a mean fusion time of(9.4±2.1)months.No collapse or fracture of the articular surface occurred.According to the Aboulafia classification,there were 20 cases of grade 0,11 cases of grade 1,and 8 cases of grade 2.Conclusion The autologous bone and allogeneic bone in repair of bone defect after microwave in situ inactivation for bone giant cell tumor around the knee has perfect knee function recovery,and can effectively prevent the collapse and degeneration of articular surfaces,which helps in the reconstruction of tumor cavity.
4.4-week high-intensity interval training regulates the mitochondrial unfolded protein response in skeletal muscle to improve depressive-like behavior in chronic unpredictable mild stress model rats
Jiaren LIANG ; Yumei HAN ; Chunhui BAO ; Ziwei ZHANG ; Junsheng TIAN ; Yonghong YANG ; Huan XIANG
Chinese Journal of Comparative Medicine 2025;35(3):1-14
Objective To investigate the mechanism by which 4-week high-intensity interval training(HIIT)regulates the mitochondrial unfolded protein response(UPRmt)in skeletal muscle and improves mitochondrial function in a rat model of chronic unpredictable mild stress(CUMS).Methods Male SPF-grade SD rats(6~8 weeks old)were divided randomly into control(C),model(M),HIIT+control(HC),and HIIT+model(HM)groups.Rats in the M and HM groups were subjected to CUMS for 8 weeks to establish a depression model,while rats in the HC and HM groups received HIIT for 5 d a week for 4 weeks.The exercise regimen consisted of 3 min high-speed(85%~90%Smax)combined with 1 min low-speed(50%~55%Smax)uninterrupted repetitive training(Smax is maximum training speed).Behavioral changes were evaluated at weeks 4 and 8.Tissue samples were taken 24 h after the last behavioral test and skeletal muscle mitochondria were examined by transmission electron microscopy.The ATP and reactive oxygen species(ROS)contents were measured by enzyme-linked immunosorbent assays and protein expression levels of activating transcription factor(ATF)4,ATF5,C/EBP homologous protein(CHOP),and heat shock protein 60(HSP60)were detected by Western blot.Results(1)The body mass,number of crossing grids,number of upright positions,sugar-water preference rate,and ATP content were significantly decreased in group M compared with group C(P<0.01),while the number of damaged mitochondria,ROS content,ATF4,ATF5,CHOP,and HSP60 protein expression were significantly increased(P<0.01).(2)After 4-weeks of HIIT intervention,the ATP content and ATF4 and ATF5 protein expression levels were significantly increased in the HC group compared with C group(P<0.05,P<0.01).The number of crossing grids,number of upright positions,sugar-water preference rate,ATP content,and ATF4 protein expression were significantly increased in the HM group compared with M group(P<0.01),while the number of damaged mitochondria,ROS content,and ATF5,CHOP,and HSP60 protein expression levels were significantly decreased(P<0.01).(3)After 4 weeks of HIIT intervention,the number of crossing grids in CUMS rats was significantly positively correlated with ATF4 protein expression,and ROS content was correlated with CHOP protein expression,number of damaged mitochondria,and ATF5 protein expression(|r|>0.75,P<0.01;|r|>0.75,P<0.05).Upright frequency was significantly negatively correlated with ATF5 and HSP60 protein expression,the number of crossing grids,the sugar-water preference rate,and the expression of CHOP and HSP60 proteins(|r|<0.75,P<0.05).Conclusions 4-week HIIT intervention can improve mitochondrial dysfunction and alleviate depressive-like behavior in CUMS rats by regulating skeletal muscle UPRmt.
5.4-week high-intensity interval training regulates the mitochondrial unfolded protein response in skeletal muscle to improve depressive-like behavior in chronic unpredictable mild stress model rats
Jiaren LIANG ; Yumei HAN ; Chunhui BAO ; Ziwei ZHANG ; Junsheng TIAN ; Yonghong YANG ; Huan XIANG
Chinese Journal of Comparative Medicine 2025;35(3):1-14
Objective To investigate the mechanism by which 4-week high-intensity interval training(HIIT)regulates the mitochondrial unfolded protein response(UPRmt)in skeletal muscle and improves mitochondrial function in a rat model of chronic unpredictable mild stress(CUMS).Methods Male SPF-grade SD rats(6~8 weeks old)were divided randomly into control(C),model(M),HIIT+control(HC),and HIIT+model(HM)groups.Rats in the M and HM groups were subjected to CUMS for 8 weeks to establish a depression model,while rats in the HC and HM groups received HIIT for 5 d a week for 4 weeks.The exercise regimen consisted of 3 min high-speed(85%~90%Smax)combined with 1 min low-speed(50%~55%Smax)uninterrupted repetitive training(Smax is maximum training speed).Behavioral changes were evaluated at weeks 4 and 8.Tissue samples were taken 24 h after the last behavioral test and skeletal muscle mitochondria were examined by transmission electron microscopy.The ATP and reactive oxygen species(ROS)contents were measured by enzyme-linked immunosorbent assays and protein expression levels of activating transcription factor(ATF)4,ATF5,C/EBP homologous protein(CHOP),and heat shock protein 60(HSP60)were detected by Western blot.Results(1)The body mass,number of crossing grids,number of upright positions,sugar-water preference rate,and ATP content were significantly decreased in group M compared with group C(P<0.01),while the number of damaged mitochondria,ROS content,ATF4,ATF5,CHOP,and HSP60 protein expression were significantly increased(P<0.01).(2)After 4-weeks of HIIT intervention,the ATP content and ATF4 and ATF5 protein expression levels were significantly increased in the HC group compared with C group(P<0.05,P<0.01).The number of crossing grids,number of upright positions,sugar-water preference rate,ATP content,and ATF4 protein expression were significantly increased in the HM group compared with M group(P<0.01),while the number of damaged mitochondria,ROS content,and ATF5,CHOP,and HSP60 protein expression levels were significantly decreased(P<0.01).(3)After 4 weeks of HIIT intervention,the number of crossing grids in CUMS rats was significantly positively correlated with ATF4 protein expression,and ROS content was correlated with CHOP protein expression,number of damaged mitochondria,and ATF5 protein expression(|r|>0.75,P<0.01;|r|>0.75,P<0.05).Upright frequency was significantly negatively correlated with ATF5 and HSP60 protein expression,the number of crossing grids,the sugar-water preference rate,and the expression of CHOP and HSP60 proteins(|r|<0.75,P<0.05).Conclusions 4-week HIIT intervention can improve mitochondrial dysfunction and alleviate depressive-like behavior in CUMS rats by regulating skeletal muscle UPRmt.
6.Exploration of Heat Clearing Herbs with Anti-inflammatory and Anti-tumor Effects Based on the Traditional Chinese Medicine Pathogenic Factors of Pancreatitis-induced Pancreatic Ductal Adenocarcinoma
Yana BAO ; Xiaonan ZHANG ; Xi GUAN ; Liang ZHAO ; Yuying CUI ; Yu WU ; Dong SHANG ; Hong XIANG
World Science and Technology-Modernization of Traditional Chinese Medicine 2025;27(1):161-167
Background When discussing the new concept of"pancreas spleen integration"in the early stage,we proposed that dampness heat stagnation in the spleen and deficiency due to stagnation are the traditional Chinese medicine(TCM)pathogenesis elements of pancreatitis-induced pancreatic ductal adenocarcinoma,among which dampness heat is the soil of pancreatitis deteriorates into pancreatic cancer.Objective Based on the TCM pathogenesis elements of pancreatitis to cancer with"damp heat"as the main factor,data mining technology was used to analyze the properties,channel conversion and active ingredients of heat-clearing Chinese medicines with anti-inflammatory and anti-tumor effects,and to summarize the drug characteristics of these Chinese medicines.To prospectively predict the use of drugs in the transformation process of pancreatitis to pancreatic cancer.Methods Taking Traditional Chinese Medicine(10th Edition of China Traditional Chinese Medicine Press)as the drug data source,66 heat-clearing herbs were searched in the literature database of CNKI and PubMed of inflammation * TCM or(inflammation+tumor)* TCM.The active ingredients were analyzed in the Traditional Chinese Medicine Systems Pharmacology Database and Analysis Platform(TCMSP).Results Among the 66 heat-clearing drugs(excluding adjunct drugs),58 herbs had anti-inflammatory effects,53 herbs had anti-tumor effects,and 48 herbs had both anti-inflammatory and anti-tumor effects.The three groups of drugs were mainly bitter,sweet and pungent in five flavors,and were mainly liver,stomach,lung,heart and large intestine in meridian affinity.Five flavors and meridian affinity were highly similar.In the TCMSP,the"five principles of drug class"were used to screen the active ingredients of anti-inflammatory and anti-tumor drugs.A total of 1041 active ingredient data were screened,and 798 active ingredient data were screened after duplicate items were deleted.Top three active ingredients were Luteolin,Kaempferol and Acacetin.Conclusion Based on the analysis of five flavors,meridian affinity and active ingredients of heat-clearing medicine,this study found that the anti-inflammatory and anti-tumor effects of these Chinese herbs are highly overlapping,it has important guiding significance for the drug research and clinical prescription of pancreatitis-induced pancreatic ductal adenocarcinoma.
7.Comparison and Analysis of Tumorigenicity of Tumor Cells in Bile between PTBD and ERBD of Hilar Cholangiocarcinoma
Kai-Hua ZHU ; De-Xiang ZHANG ; Ying TAO ; Shu-Long ZHANG ; Kun FAN ; Hou-Bao LIU
Chinese Journal of Biochemistry and Molecular Biology 2025;41(1):112-124
Hilar cholangiocarcinoma is insidious in onset and often causes obstructive jaundice due to bile stasis,leading to impaired liver function.For tumors with malignant obstructive jaundice,biliary drainage is often performed before surgery in clinical practice.Currently,the commonly used drainage methods are percutaneous transhepatic biliary drainage(PTBD)and endoscopic retrograde biliary drain-age(ERBD),but there are controversies over the advantages and disadvantages of the two drainage methods.PTBD drainage can often lead to tumor implantation metastasis,but the underlying mechanism remains unclear.We detected tumor cells in PTBD and ERBD bile samples from hilar cholangiocarcino-ma patients,subsequently explored their tumorigenicity and mechanisms through tumorsphere assay in vitro and xenograft tumor models in vivo.The experiments included benign gallstones group(30 cases)as a negative control,PTBD group(14 cases)and ERBD group(13 cases).Tumorsphere formation was i-dentified in 3 cases(23%)among the 13 cases of ERBD group,in 6 cases(42%)among the 14 cases of PTBD group,but there were no tumor cells or formed tumorspheres in the 30 cases of benign gallstone group.The tumor sphere formation ability of cells in the PTBD group was significantly higher than that in ERBD group.Subcutaneous xenograft tumor assays showed that tumor growth in the PTBD group was sig-nificantly higher than that in the ERBD group.Tumor cells in PTBD bile possessed stronger tumorigenici-ty compared with the ERBD group.Mechanically,stem cell transcription factor Nanog mRNA levels were significantly higher in the PTBD group compared to the ERBD group.Both tumorsphere formation and xenograft tumor growth were reduced by Nanog knockdown in three cases of the PTBD group,indicating the important roles of Nanog in tumorigenicity of PTBD group tumor cells.The half-life of Nanog mRNA was longer in PTBD group cells than in ERBD group cells,suggesting potential post-transcriptional regu-lation on Nanog mRNA.The Nanog m6A level was higher in PTBD group tumor cells compared to the ERBD group.Analysis of methyltransferases and demethylases,ALKBH5(α-ketoglutarate dependent dioxygenase alkb family homolog 5)mRNA levels were lower in the PTBD group than in the ERBD group and significantly correlated with the m6A level of Nanog.ALKBH5 knockdown led to an increase in the m6A level of Nanog,while ALKBH5 overexpression decreased the m6A level of Nanog.Dual-luciferase activity assays demonstrated that ALKBH5 knockdown significantly enhanced luciferase activity,whereas ALKBH5 overexpression reduced it.Further studies confirmed that ALKBH5 knockdown upregulated both the mRNA and protein levels of Nanog,whereas overexpressing ALKBH5 downregulated them.ALKBH5 mediated the demethylation modification of Nanog mRNA,and the lower levels of ALKBH5 expression in the PTBD group promoted Nanog's m6A modification.Overexpressing ALKBH5 decreased tumorsphere growth,while ALKBH5 knockdown increased it,which was subsequently reduced by the simultaneous Nanog knockdown again.In sum,tumor cells in PTBD and ERBD drainage bile from hilar cholangiocar-cinoma patients exhibited tumorigenicity.Compared to the ERBD group,tumor cells in PTBD bile with lower ALKBH5 expression levels enhanced Nanog's m6A modification to upregulate Nanog expression levels,resulting in stronger tumorigenicity.These findings are significant for elucidating propensity to tumor implantation metastasis from PTBD drainage.
8.Comparison and Analysis of Tumorigenicity of Tumor Cells in Bile between PTBD and ERBD of Hilar Cholangiocarcinoma
Kai-Hua ZHU ; De-Xiang ZHANG ; Ying TAO ; Shu-Long ZHANG ; Kun FAN ; Hou-Bao LIU
Chinese Journal of Biochemistry and Molecular Biology 2025;41(1):112-124
Hilar cholangiocarcinoma is insidious in onset and often causes obstructive jaundice due to bile stasis,leading to impaired liver function.For tumors with malignant obstructive jaundice,biliary drainage is often performed before surgery in clinical practice.Currently,the commonly used drainage methods are percutaneous transhepatic biliary drainage(PTBD)and endoscopic retrograde biliary drain-age(ERBD),but there are controversies over the advantages and disadvantages of the two drainage methods.PTBD drainage can often lead to tumor implantation metastasis,but the underlying mechanism remains unclear.We detected tumor cells in PTBD and ERBD bile samples from hilar cholangiocarcino-ma patients,subsequently explored their tumorigenicity and mechanisms through tumorsphere assay in vitro and xenograft tumor models in vivo.The experiments included benign gallstones group(30 cases)as a negative control,PTBD group(14 cases)and ERBD group(13 cases).Tumorsphere formation was i-dentified in 3 cases(23%)among the 13 cases of ERBD group,in 6 cases(42%)among the 14 cases of PTBD group,but there were no tumor cells or formed tumorspheres in the 30 cases of benign gallstone group.The tumor sphere formation ability of cells in the PTBD group was significantly higher than that in ERBD group.Subcutaneous xenograft tumor assays showed that tumor growth in the PTBD group was sig-nificantly higher than that in the ERBD group.Tumor cells in PTBD bile possessed stronger tumorigenici-ty compared with the ERBD group.Mechanically,stem cell transcription factor Nanog mRNA levels were significantly higher in the PTBD group compared to the ERBD group.Both tumorsphere formation and xenograft tumor growth were reduced by Nanog knockdown in three cases of the PTBD group,indicating the important roles of Nanog in tumorigenicity of PTBD group tumor cells.The half-life of Nanog mRNA was longer in PTBD group cells than in ERBD group cells,suggesting potential post-transcriptional regu-lation on Nanog mRNA.The Nanog m6A level was higher in PTBD group tumor cells compared to the ERBD group.Analysis of methyltransferases and demethylases,ALKBH5(α-ketoglutarate dependent dioxygenase alkb family homolog 5)mRNA levels were lower in the PTBD group than in the ERBD group and significantly correlated with the m6A level of Nanog.ALKBH5 knockdown led to an increase in the m6A level of Nanog,while ALKBH5 overexpression decreased the m6A level of Nanog.Dual-luciferase activity assays demonstrated that ALKBH5 knockdown significantly enhanced luciferase activity,whereas ALKBH5 overexpression reduced it.Further studies confirmed that ALKBH5 knockdown upregulated both the mRNA and protein levels of Nanog,whereas overexpressing ALKBH5 downregulated them.ALKBH5 mediated the demethylation modification of Nanog mRNA,and the lower levels of ALKBH5 expression in the PTBD group promoted Nanog's m6A modification.Overexpressing ALKBH5 decreased tumorsphere growth,while ALKBH5 knockdown increased it,which was subsequently reduced by the simultaneous Nanog knockdown again.In sum,tumor cells in PTBD and ERBD drainage bile from hilar cholangiocar-cinoma patients exhibited tumorigenicity.Compared to the ERBD group,tumor cells in PTBD bile with lower ALKBH5 expression levels enhanced Nanog's m6A modification to upregulate Nanog expression levels,resulting in stronger tumorigenicity.These findings are significant for elucidating propensity to tumor implantation metastasis from PTBD drainage.
9.Human Digital Metabolic Chamber Platform: Construction Standards and Testing Specifications
Weiqing WANG ; Shijia PAN ; Yixiang HU ; Yashu ZHU ; Riqiang BAO ; Guang NING ; Yifei ZHANG ; Lifeng ZHU ; Xiaoxia LUO ; Jiqiu WANG ; Zhuoran ZHANG ; Shi XIANG
Chinese Journal of Endocrinology and Metabolism 2025;41(12):1-16
This document targets digital human metabolic chamber platforms and specifies construction standards and testing protocols covering the full lifecycle of " build-test-operate." It encompasses chamber engineering and environmental control, digital platform and cybersecurity architecture, metabolic measurement and multimodal data acquisition, as well as quantitative system performance and data quality indicators with verifiable acceptance tests. By standardizing architecture, interfaces, and quality control, the specification enables multicenter data interoperability and harmonized quality management, providing high-quality, verifiable, and traceable infrastructure to support precision metabolism research and clinical translation in China.
10.Shionone protects cerebral ischemic injury through alleviating microglia-mediated neuroinflammation.
Lushan XU ; Chenggang LI ; ChenChen ZHAO ; Zibu WANG ; Zhi ZHANG ; Xin SHU ; Xiang CAO ; Shengnan XIA ; Xinyu BAO ; Pengfei SHAO ; Yun XU
Chinese Journal of Natural Medicines (English Ed.) 2025;23(4):471-479
Microglia, the resident immune cells in the central nervous system (CNS), rapidly transition from a resting to an active state in the acute phase of ischemic brain injury. This active state mediates a pro-inflammatory response that can exacerbate the injury. Targeting the pro-inflammatory response of microglia in the semi-dark band during this acute phase may effectively reduce brain injury. Shionone (SH), an active ingredient extracted from the dried roots and rhizomes of the genus Aster (Asteraceae), has been reported to regulate the inflammatory response of macrophages in sepsis-induced acute lung injury. However, its function in post-stroke neuroinflammation, particularly microglia-mediated neuroinflammation, remains uninvestigated. This study found that SH significantly inhibited lipopolysaccharide (LPS)-induced elevation of inflammatory cytokines, including interleukin-1β (IL-1β), tumor necrosis factor-α (TNF-α), and inducible nitric oxide synthase (iNOS), in microglia in vitro. Furthermore, the results demonstrated that SH alleviated infarct volume and improved behavioral performance in middle cerebral artery occlusion (MCAO) mice, which may be attributed to the inhibition of the microglial inflammatory response induced by SH treatment. Mechanistically, SH potently inhibited the phosphorylation of serine-threonine protein kinase B (AKT), mammalian target of rapamycin (mTOR), and signal transducer and activator of transcription 3 (STAT3). These findings suggest that SH may be a potential therapeutic agent for relieving ischemic stroke (IS) by alleviating microglia-associated neuroinflammation.
Animals
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Microglia/immunology*
;
Mice
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Male
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Mice, Inbred C57BL
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Brain Ischemia/immunology*
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Neuroinflammatory Diseases/drug therapy*
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Neuroprotective Agents/administration & dosage*
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Interleukin-1beta/genetics*
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STAT3 Transcription Factor/genetics*
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TOR Serine-Threonine Kinases/genetics*
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Tumor Necrosis Factor-alpha/genetics*
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Proto-Oncogene Proteins c-akt/immunology*
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Nitric Oxide Synthase Type II/genetics*
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Lipopolysaccharides

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