1.Engineered Bacteriophages for The Treatment of Multidrug-resistant Bacterial Infections
Yu-Ying CHEN ; Chun-Mei HUANG ; Jin-Zhi PAN ; De-Liang LIU ; Yang ZHOU ; Gui-Qin DAI ; Peng-Fei ZHAO ; Hong-Zhou LU ; Ming-Bin ZHENG
Progress in Biochemistry and Biophysics 2026;53(6):1581-1596
Multidrug-resistant (MDR) bacterial infections have emerged as a serious challenge of global public health crisis. The overuse and misuse of conventional antibiotics have dramatically accelerated the emergence, evolution and worldwide spread of drug-resistant bacterial strains, necessitating urgent exploration of novel antibacterial strategies. Bacteriophages serve as natural bacterial predators offering distinct advantages including high host specificity, autonomous self-replication capabilities and cost-effective large-scale production. However, wild-type phages present significant clinical limitations due to their narrow host ranges, susceptibility to rapid immune clearance and poor penetration of bacterial biofilms, which severely restrict their therapeutic applications. The convergence of synthetic biology, nanotechnology and advanced gene editing technologies has accelerated the development of engineered bacteriophage platforms, providing programmable, scalable and clinically translatable pathways to overcome these inherent biological constraints. Here, we systematically delineate four fundamental strategies for engineered bacteriophage development. Chemical modification utilizes reactive functional groups such as amino, carboxyl and thiol moieties on capsid proteins through esterification, amidation or click chemistry reactions to achieve precise drug conjugation and surface functionalization. In vivo editing encompasses ultraviolet or chemical mutagenesis for random mutation induction, homologous recombination for targeted genetic alterations, recombineering methodologies including electroporation-mediated bacteriophage recombination engineering, and CRISPR-Cas systems for precise genome editing to enable exact genetic reconstruction and host range reprogramming. In vitro synthesis leverages genome engineering platforms where intact phage genomes are transferred into yeast or host bacteria to facilitate highly efficient homologous recombination, enabling large DNA fragment assembly and cross-gene host range expansion without bacterial toxicity constraints. Directed evolution combines artificial selection through mutation library screening with rational design approaches involving chimeric receptor binding protein construction or site-specific mutagenesis, effectively balancing the discovery of unknown adaptive pathways with targeted host specificity modification. Moreover, we comprehensively discuss therapeutic applications across diverse clinical scenarios. Engineered bacteriophage effectively disrupt bacterial biofilms through sophisticated functionalized delivery platforms including nanozyme-conjugated phages, phage-liposome nanoconjugates and bio-responsive hydrogels, demonstrating significantly enhanced bactericidal efficiency compared to unmodified free phages. These bioengineered vectors attenuate bacterial virulence and resensitize pathogens to antibiotics by delivering CRISPR-Cas systems or base editors to disrupt critical virulence factors such as pili, capsule synthesis machineries and quorum sensing systems, or by inactivating antibiotic resistance determinants including beta-lactamase genes. As an intelligent nanomedicine delivery platform, engineered bacteriophage enable precise pathogen elimination an through photocatalytic reactive oxygen species generation, immunomodulatory interventions, or controlled release of antibacterial drugs. Furthermore, oral administration of engineered bacteriophage facilitates microbiota modulation, which selectively eliminate intestinal pathogens while preserve beneficial commensal microbiota, thereby restoring microbial community balance and preventing complications associated with dysbiosis. Finally, we critically analyze persistent challenges including host strain matching complexity, evolution of bacterial resistance mechanisms, pharmacokinetic optimization requirements, optimal administration route selection, large-scale production quality control standards and clinical dosing determination protocols. Through multidisciplinary integration of synthetic biology, infectious disease medicine and immunology, future translational medicine studies of bacteriophage should establish comprehensive technical platforms encompassing rapid phage screening, intelligent rational design, rigorous in vivo evaluation and standardized clinical validation processes, ultimately advancing engineered bacteriophage from laboratory innovations to clinically approved therapeutics for effectively combating MDR bacterial infections.
2.Expert consensus on the application of nasal cavity filling substances in nasal surgery patients(2025, Shanghai).
Keqing ZHAO ; Shaoqing YU ; Hongquan WEI ; Chenjie YU ; Guangke WANG ; Shijie QIU ; Yanjun WANG ; Hongtao ZHEN ; Yucheng YANG ; Yurong GU ; Tao GUO ; Feng LIU ; Meiping LU ; Bin SUN ; Yanli YANG ; Yuzhu WAN ; Cuida MENG ; Yanan SUN ; Yi ZHAO ; Qun LI ; An LI ; Luo BA ; Linli TIAN ; Guodong YU ; Xin FENG ; Wen LIU ; Yongtuan LI ; Jian WU ; De HUAI ; Dongsheng GU ; Hanqiang LU ; Xinyi SHI ; Huiping YE ; Yan JIANG ; Weitian ZHANG ; Yu XU ; Zhenxiao HUANG ; Huabin LI
Journal of Clinical Otorhinolaryngology Head and Neck Surgery 2025;39(4):285-291
This consensus will introduce the characteristics of fillers used in the surgical cavities of domestic nasal surgery patients based on relevant literature and expert opinions. It will also provide recommendations for the selection of cavity fillers for different nasal diseases, with chronic sinusitis as a representative example.
Humans
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Nasal Cavity/surgery*
;
Nasal Surgical Procedures
;
China
;
Consensus
;
Sinusitis/surgery*
;
Dermal Fillers
3.Prediction of testicular histology in azoospermia patients through deep learning-enabled two-dimensional grayscale ultrasound.
Jia-Ying HU ; Zhen-Zhe LIN ; Li DING ; Zhi-Xing ZHANG ; Wan-Ling HUANG ; Sha-Sha HUANG ; Bin LI ; Xiao-Yan XIE ; Ming-De LU ; Chun-Hua DENG ; Hao-Tian LIN ; Yong GAO ; Zhu WANG
Asian Journal of Andrology 2025;27(2):254-260
Testicular histology based on testicular biopsy is an important factor for determining appropriate testicular sperm extraction surgery and predicting sperm retrieval outcomes in patients with azoospermia. Therefore, we developed a deep learning (DL) model to establish the associations between testicular grayscale ultrasound images and testicular histology. We retrospectively included two-dimensional testicular grayscale ultrasound from patients with azoospermia (353 men with 4357 images between July 2017 and December 2021 in The First Affiliated Hospital of Sun Yat-sen University, Guangzhou, China) to develop a DL model. We obtained testicular histology during conventional testicular sperm extraction. Our DL model was trained based on ultrasound images or fusion data (ultrasound images fused with the corresponding testicular volume) to distinguish spermatozoa presence in pathology (SPP) and spermatozoa absence in pathology (SAP) and to classify maturation arrest (MA) and Sertoli cell-only syndrome (SCOS) in patients with SAP. Areas under the receiver operating characteristic curve (AUCs), accuracy, sensitivity, and specificity were used to analyze model performance. DL based on images achieved an AUC of 0.922 (95% confidence interval [CI]: 0.908-0.935), a sensitivity of 80.9%, a specificity of 84.6%, and an accuracy of 83.5% in predicting SPP (including normal spermatogenesis and hypospermatogenesis) and SAP (including MA and SCOS). In the identification of SCOS and MA, DL on fusion data yielded better diagnostic performance with an AUC of 0.979 (95% CI: 0.969-0.989), a sensitivity of 89.7%, a specificity of 97.1%, and an accuracy of 92.1%. Our study provides a noninvasive method to predict testicular histology for patients with azoospermia, which would avoid unnecessary testicular biopsy.
Humans
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Male
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Azoospermia/diagnostic imaging*
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Deep Learning
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Testis/pathology*
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Retrospective Studies
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Adult
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Ultrasonography/methods*
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Sperm Retrieval
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Sertoli Cell-Only Syndrome/diagnostic imaging*
4.Mechanism of Banxia-Xiexin decoction activating Hippo/YAP signaling pathway to alleviate chronic atrophic gastritis
Jia-min HU ; Yu-jie SUN ; De-bin HUANG
Chinese Pharmacological Bulletin 2025;41(8):1578-1583
Aim To clarify the protective effect of Banxia-Xiexin decoction(BD)on chronic atrophic gastritis(CAG).Methods After establishing a CAG model,BD was used for 4 weeks.The pathological changes in the gastric mucosa were observed through HE staining,while serum biomarkers were detected u-sing ELISA.The expression of key factors in the Hip-po/YAP signaling pathway was examined by RT-qPCR and Western blot.Finally,the expression of YAP and p-YAP proteins was detected by immunefluorescence.Results After BD intervention,the thickness of the gastric mucosa layer,intestinal metaplasia,and inflam-mation in CAG rats showed significant dose-dependent improvement.BD could reduce the expression of IL-6,IL-1β,and TNF-α in the serum of CAG rats,increase the expression of IL-10,and elevate PGR and G-17 lev-els.Following BD intervention,YAP1 was largely phosphorylated and inactivated,with significant increa-ses in p-YAP/YAP protein expression levels and fluo-rescence intensity.Additionally,the protein and mRNA expression levels of MST1 and LATS1 were elevated,indicating the activation of the Hippo/YAP signaling pathway.Conclusions BD exerts a significant phar-macological effect in the treatment of CAG,and its mechanism may be related to the upregulation of MST1-LATS1 protein expression,leading to the inacti-vation of YAP through phosphorylation.
5.Mechanism of Banxia-Xiexin decoction activating Hippo/YAP signaling pathway to alleviate chronic atrophic gastritis
Jia-min HU ; Yu-jie SUN ; De-bin HUANG
Chinese Pharmacological Bulletin 2025;41(8):1578-1583
Aim To clarify the protective effect of Banxia-Xiexin decoction(BD)on chronic atrophic gastritis(CAG).Methods After establishing a CAG model,BD was used for 4 weeks.The pathological changes in the gastric mucosa were observed through HE staining,while serum biomarkers were detected u-sing ELISA.The expression of key factors in the Hip-po/YAP signaling pathway was examined by RT-qPCR and Western blot.Finally,the expression of YAP and p-YAP proteins was detected by immunefluorescence.Results After BD intervention,the thickness of the gastric mucosa layer,intestinal metaplasia,and inflam-mation in CAG rats showed significant dose-dependent improvement.BD could reduce the expression of IL-6,IL-1β,and TNF-α in the serum of CAG rats,increase the expression of IL-10,and elevate PGR and G-17 lev-els.Following BD intervention,YAP1 was largely phosphorylated and inactivated,with significant increa-ses in p-YAP/YAP protein expression levels and fluo-rescence intensity.Additionally,the protein and mRNA expression levels of MST1 and LATS1 were elevated,indicating the activation of the Hippo/YAP signaling pathway.Conclusions BD exerts a significant phar-macological effect in the treatment of CAG,and its mechanism may be related to the upregulation of MST1-LATS1 protein expression,leading to the inacti-vation of YAP through phosphorylation.
6.Anti-COVID-19 mechanism of Anoectochilus roxburghii liquid based on network pharmacology and molecular docking
Jin ZHU ; Yan-bin WU ; De-fu HUANG ; Bing-ke BAI ; Xu-hui HE ; Dan JIA ; Cheng-jian ZHENG
Acta Pharmaceutica Sinica 2024;59(3):633-642
italic>Anoectochilus roxburghii liquid (spray, a hospital preparation of Wu Mengchao Hepatobiliary Hospital of Fujian Medical University) has shown a good clinical treatment effect during the COVID-19 pandemic, but its material basis and mechanism of action are still unclear. In this study, network pharmacology and molecular docking methods were used to predict the molecular mechanism of
7.Research status of terpenoids in traditional Chinese medicine against osteoporosis
Yuan CHENG ; Liang-tong ZHANG ; Xing-wen XIE ; Wei-wei HUANG ; De-min LIN ; Dong LIU ; Bin YUE ; Yue-han ZHOU ; Hao MEI
The Chinese Journal of Clinical Pharmacology 2024;40(21):3201-3205
Although conventional anti-osteoporotic drugs are effective in the prevention and treatment of osteoporosis(OP),they are also associated with a variety of adverse drug reactions in the course of their efficacy.Terpenoids have favorable therapeutic effects on bone resorption,bone formation,and concomitant inflammation.In this paper,we review a variety of herbal terpenoids commonly used in the treatment of OP,with a view to providing ideas for future clinical treatment and related basic research.
8.Research status of terpenoids in traditional Chinese medicine against osteoporosis
Yuan CHENG ; Liang-tong ZHANG ; Xing-wen XIE ; Wei-wei HUANG ; De-min LIN ; Dong LIU ; Bin YUE ; Yue-han ZHOU ; Hao MEI
The Chinese Journal of Clinical Pharmacology 2024;40(21):3201-3205
Although conventional anti-osteoporotic drugs are effective in the prevention and treatment of osteoporosis(OP),they are also associated with a variety of adverse drug reactions in the course of their efficacy.Terpenoids have favorable therapeutic effects on bone resorption,bone formation,and concomitant inflammation.In this paper,we review a variety of herbal terpenoids commonly used in the treatment of OP,with a view to providing ideas for future clinical treatment and related basic research.
9. Catechin interferes with SCD1 expression and prevents liver fibrosis in mice
Xing WAN ; Wen-Cui SHAO ; Zheng-Yu JIN ; De-Bin HUANG ; Bo-Nan TAO ; Lin YUAN
Chinese Pharmacological Bulletin 2023;39(2):305-310
Aim To investigate whether catechin can play against CCl
10. Effects of ethanolic extracts of Euonymus alatus on CCl
Yong-Lan WANG ; Bo-Nan TAO ; Ming-Huan CHEN ; Hua-Hua ZENG ; Min MA ; De-Bin HUANG
Chinese Pharmacological Bulletin 2023;39(5):875-883
Aim To explore the mechanism of ethanolic extracts of euonymus alatus on CCl4-induced hepatic fibrosis in mice by regulating JAK2/STAT3 signaling pathway. Methods Sixty C57BL/6J mice were randomly divided into control group,model group,EAL,EAM),EAH,and Silybin(n=10). Except for the control group,mice in other groups were injected with 25% CCl4 of 1.6 mL·kg

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