1.Traditional Chinese Medicine Intervening Mitochondrial Dysfunction for Treatment of Diabetic Kidney Disease: A Review
Xiaochen WEN ; Ying WANG ; Ruoshi LIU ; Ziying LIU ; Xiaoyan MA ; Chengjun GONG
Chinese Journal of Experimental Traditional Medical Formulae 2026;32(11):300-311
Diabetic kidney disease (DKD) is a microvascular complication of diabetes, with a complex pathogenesis, in which mitochondrial dysfunction is considered to be the core of DKD development. Taking mitochondria as a target to regulate mitochondrial energy metabolism, mitochondrial oxidative stress, mitophagy, and mitochondrial dynamic function represents a promising strategy for the DKD prevention and treatment, with good prospects in clinical application. Traditional Chinese medicine (TCM) has great potential to mediate mitochondrial dysfunction in the DKD prevention and treatment. This article deeply explores the intrinsic relationship between various forms of mitochondrial dysfunction and DKD, and summarizes the current research status of various Chinese herbal compounds and Chinese herbal formulas in targeting mitochondrial dysfunction for the DKD prevention and treatment. This article aims to provide new targets and strategies for the DKD prevention and treatment, and the research and development of TCM.
2.Human tissue Organoids:A New Frontier of Antiviral Research in Traditional Chinese Medicine
Ling GAO ; Changshu QU ; Zhiwen XU ; Shibo LIU ; Ruoshi TU ; Yunzhong NIE
Journal of Nanjing University of Traditional Chinese Medicine 2025;41(11):1441-1451
Viruses,with high adaptability and immune evasion capabilities,are responsible for a wide spectrum of diseases from lo-calized infections to global pandemics,continuously posing threats to global public health.In recent years,traditional Chinese medi-cine(TCM)has demonstrated significant potential in antiviral therapy.With its multi-component,multi-target synergistic mechanism,TCM offers unique advantages in the intervention of viral diseases.However,progress in elucidating the active antiviral constituents of TCM and identifying their precise molecular targets remains limited,primarily due to the lack of humanized models that can faithfully recapitulate the natural course of viral infection.The emergence of organoid technology has introduced new opportunities for antiviral research in TCM.Human organoids,which recapitulate the three-dimensional architecture and physiological functions of human tis-sues,provide an advanced platform for modeling host-virus interactions in a human-relevant context.This article highlights the latest advances in applications of human tissue organoids,including lung,liver,and brain organoids,in the study of respiratory viruses(SARS-CoV-2,influenza virus,respiratory syncytial virus),hepatitis viruses(HBV,HCV,HEV),and neurotropic viruses(ZIKV,pri-ons,HCMV);illustrates how organoid models have been leveraged to evaluate both the efficacy and safety of TCM-based antiviral inter-ventions.Although human tissue organoids still face technical challenges in insufficient vascularization and incomplete immune micro-environment,they represent a powerful tool for dissecting the mechanism of TCM antiviral action and for guiding the development of personalized antiviral strategies.Looking ahead,human tissue organoid technology is expected to become key enabling platform for pro-moting the clinical transformation of TCM in the field of antiviral medicine.
3.Human tissue Organoids:A New Frontier of Antiviral Research in Traditional Chinese Medicine
Ling GAO ; Changshu QU ; Zhiwen XU ; Shibo LIU ; Ruoshi TU ; Yunzhong NIE
Journal of Nanjing University of Traditional Chinese Medicine 2025;41(11):1441-1451
Viruses,with high adaptability and immune evasion capabilities,are responsible for a wide spectrum of diseases from lo-calized infections to global pandemics,continuously posing threats to global public health.In recent years,traditional Chinese medi-cine(TCM)has demonstrated significant potential in antiviral therapy.With its multi-component,multi-target synergistic mechanism,TCM offers unique advantages in the intervention of viral diseases.However,progress in elucidating the active antiviral constituents of TCM and identifying their precise molecular targets remains limited,primarily due to the lack of humanized models that can faithfully recapitulate the natural course of viral infection.The emergence of organoid technology has introduced new opportunities for antiviral research in TCM.Human organoids,which recapitulate the three-dimensional architecture and physiological functions of human tis-sues,provide an advanced platform for modeling host-virus interactions in a human-relevant context.This article highlights the latest advances in applications of human tissue organoids,including lung,liver,and brain organoids,in the study of respiratory viruses(SARS-CoV-2,influenza virus,respiratory syncytial virus),hepatitis viruses(HBV,HCV,HEV),and neurotropic viruses(ZIKV,pri-ons,HCMV);illustrates how organoid models have been leveraged to evaluate both the efficacy and safety of TCM-based antiviral inter-ventions.Although human tissue organoids still face technical challenges in insufficient vascularization and incomplete immune micro-environment,they represent a powerful tool for dissecting the mechanism of TCM antiviral action and for guiding the development of personalized antiviral strategies.Looking ahead,human tissue organoid technology is expected to become key enabling platform for pro-moting the clinical transformation of TCM in the field of antiviral medicine.
4.Dayuanyin Regulates TLR/MAPK/NF-κB Pathway for Preventing and Treating Acute Lung Injury Induced by H1N1 Infection
Chengze LI ; Fuhao CHU ; Yuan LI ; Yunze LIU ; Haocheng ZHENG ; Sici WANG ; Yixiao GU ; Wanhong ZHU ; Ruoshi ZHANG ; Xingjian SONG ; Cong GAI ; Xia DING
Chinese Journal of Experimental Traditional Medical Formulae 2024;30(18):52-60
ObjectiveTo investigate the therapeutic effect of Dayuanyin on acute lung injury induced by H1N1 infection and decipher the potential mechanism. MethodThe constituents in Dayuanyin were analyzed by ultra-high performance liquid chromatography-quadrupole-exactive orbitrap mass spectrometry (UHPLC-Q-Exactive Orbitrap MS). Forty-eight female BALB/c mice were randomized into normal, model, oseltamivir (19.5 mg·kg-1), and low-, medium-, and high-dose (2.73, 5.46, 10.92 g·kg-1) Dayuanyin groups. The normal and model groups were administrated with deionized water by gavage, and the other groups were administrated with the corresponding drugs by gavage. On day 3 of drug administration, the normal group received nasal inhalation of normal saline, and the other groups were inoculated intranasally with A/RP/8/34 (H1N1) for the modeling of influenza virus infection. Mice were administrated with drugs continuously for 7 days and weighed daily. Sampling was performed 12 h after the last administration, and the lung tissue was weighed to calculate the lung index. Hematoxylin-eosin staining was performed to observe the pathological and morphological changes of the lung tissue and bronchi. The cytometric bead array (CBA) was used to measure the serum levels of interferon-gamma (IFN-γ), C-X-C motif ligand 1 (CXCL1), tumor necrosis factor-alpha (TNF-α), chemokine ligand 2 (CCL2), interleukin-12p70 (IL-12p70), chemokine ligand 5 (CCL5), interleukin-1β (IL-1β), chemokine (C-X-C motif) ligand 10 (CXCL10), granulocyte-macrophage colony-stimulating factor (GM-CSF), interleukin-10 (IL-10), interferon-beta (IFN-β), interferon-alpha (IFN-α), and interleukin-6 (IL-6). According to the results of mass spectrometry and network pharmacology, we analyzed the mechanism of Dayuanyin in treating acute lung injury caused by H1N1. The protein levels of extracellular signal-regulated kinase 1/2 (ERK1/2), p38 mitogen-activated protein kinase (p38 MAPK), nuclear factor-kappa B (NF-κB), and their phosphorylated forms were determined by Western blot. The mRNA levels of myeloid differentiation factor 88 (MyD88), Toll-like receptor 3 (TLR3), Toll-like receptor 7 (TLR7), and Toll-like receptor 8 (TLR8) in the lung tissue were measured by Real-time fluorescence quantitative polymerase chain reaction (Real-time PCR). ResultA total of 57 compounds, including paeoniflorin and baicalein, were detected in Dayuanyin. Compared with the normal group, the model group showed decreased body weight (P<0.01), lung edema and hemorrhage, increased lung index (P<0.01), and elevated levels of IFN-γ, IL-12p70, CCL5, IL-1β, CXCL10, GM-CSF, IFN-β, and IL-6 (P<0.01). Compared with the model group, Dayuanyin attenuated alveolar wall thickening, capillary congestion, and immune cell infiltration, reduced the alterations in body weight and lung index (P<0.01), and down-regulated the protein levels of IFN-γ, IL-12p70, CCL5, IL-1β, CXCL10, GM-CSF, IFN-β, and IL-6 (P<0.01). A total of 57 key genes were predicted by network pharmacological analysis, of which the MAPK signaling pathway was the main target signaling pathway. Compared with the normal group, the model group showed up-regulation in the protein levels of phosphorylation (p)-ERK1/2, p-p38 MAPK, and p-NF-κB (P<0.01) and the mRNA levels of TLR7, TLR8, MyD88, and TLR3 (P<0.05, P<0.01). Compared with the model group, Dayuanyin lowered the phosphorylation levels of ERK1/2, p38 MAPK, and NF-κB p65 in a dose-dependent manner (P<0.01) and down-regulated the mRNA levels of TLR3, TLR7, TLR8, and MyD88 (P<0.01). ConclusionDayuanyin can prevent and control H1N1 infection-induced acute lung injury by inhibiting the TLR/MAPK/NF-κB signaling pathway.
5.METTL3-mediated m6A RNA methylation regulates dorsal lingual epithelium homeostasis.
Qiuchan XIONG ; Caojie LIU ; Xin ZHENG ; Xinyi ZHOU ; Kexin LEI ; Xiaohan ZHANG ; Qian WANG ; Weimin LIN ; Ruizhan TONG ; Ruoshi XU ; Quan YUAN
International Journal of Oral Science 2022;14(1):26-26
The dorsal lingual epithelium, which is composed of taste buds and keratinocytes differentiated from K14+ basal cells, discriminates taste compounds and maintains the epithelial barrier. N6-methyladenosine (m6A) is the most abundant mRNA modification in eukaryotic cells. How METTL3-mediated m6A modification regulates K14+ basal cell fate during dorsal lingual epithelium formation and regeneration remains unclear. Here we show knockout of Mettl3 in K14+ cells reduced the taste buds and enhanced keratinocytes. Deletion of Mettl3 led to increased basal cell proliferation and decreased cell division in taste buds. Conditional Mettl3 knock-in mice showed little impact on taste buds or keratinization, but displayed increased proliferation of cells around taste buds in a protective manner during post-irradiation recovery. Mechanically, we revealed that the most frequent m6A modifications were enriched in Hippo and Wnt signaling, and specific peaks were observed near the stop codons of Lats1 and FZD7. Our study elucidates that METTL3 is essential for taste bud formation and could promote the quantity recovery of taste bud after radiation.
Animals
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Epithelium/metabolism*
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Homeostasis
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Methylation
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Methyltransferases/metabolism*
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Mice
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RNA
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Taste Buds/metabolism*
6.Genomic and transcriptomic analysis unveils population evolution and development of pesticide resistance in fall armyworm Spodoptera frugiperda.
Furong GUI ; Tianming LAN ; Yue ZHAO ; Wei GUO ; Yang DONG ; Dongming FANG ; Huan LIU ; Haimeng LI ; Hongli WANG ; Ruoshi HAO ; Xiaofang CHENG ; Yahong LI ; Pengcheng YANG ; Sunil Kumar SAHU ; Yaping CHEN ; Le CHENG ; Shuqi HE ; Ping LIU ; Guangyi FAN ; Haorong LU ; Guohai HU ; Wei DONG ; Bin CHEN ; Yuan JIANG ; Yongwei ZHANG ; Hanhong XU ; Fei LIN ; Bernard SLIPPERS ; Alisa POSTMA ; Matthew JACKSON ; Birhan Addisie ABATE ; Kassahun TESFAYE ; Aschalew Lemma DEMIE ; Meseret Destaw BAYELEYGNE ; Dawit Tesfaye DEGEFU ; Feng CHEN ; Paul K KURIA ; Zachary M KINYUA ; Tong-Xian LIU ; Huanming YANG ; Fangneng HUANG ; Xin LIU ; Jun SHENG ; Le KANG
Protein & Cell 2022;13(7):513-531
The fall armyworm (FAW), Spodoptera frugiperda, is a destructive pest native to America and has recently become an invasive insect pest in China. Because of its rapid spread and great risks in China, understanding of FAW genetic background and pesticide resistance is urgent and essential to develop effective management strategies. Here, we assembled a chromosome-level genome of a male FAW (SFynMstLFR) and compared re-sequencing results of the populations from America, Africa, and China. Strain identification of 163 individuals collected from America, Africa and China showed that both C and R strains were found in the American populations, while only C strain was found in the Chinese and African populations. Moreover, population genomics analysis showed that populations from Africa and China have close relationship with significantly genetic differentiation from American populations. Taken together, FAWs invaded into China were most likely originated from Africa. Comparative genomics analysis displayed that the cytochrome p450 gene family is extremely expanded to 425 members in FAW, of which 283 genes are specific to FAW. Treatments of Chinese populations with twenty-three pesticides showed the variant patterns of transcriptome profiles, and several detoxification genes such as AOX, UGT and GST specially responded to the pesticides. These findings will be useful in developing effective strategies for management of FAW in China and other invaded areas.
Animals
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China
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Genomics
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Humans
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Male
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Pesticides
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Spodoptera/genetics*
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Transcriptome

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