1.Visual feature extraction combining dissolution testing for the study of drug release behavior of gliclazide modified release tablets
Si-yu CHEN ; Ze-ya LI ; Ping LI ; Xin-qing ZHAO ; Tao GONG ; Li DENG ; Zhi-rong ZHANG
Acta Pharmaceutica Sinica 2025;60(1):225-231
Oral solid dosage forms require processes such as disintegration and dissolution to release the drug before it can be absorbed and utilized by the body. In this manuscript, imaging technology was used to continuously visualize and characterize the
2.Zhenzhu Tiaozhi Capsules Reduce Renal Lipid Deposition and Inflammation in Mouse Model of Diabetic Kidney Disease via SCAP-SREBP-1c/NLRP3 Signaling Pathway
Tao ZHANG ; Jie TAO ; Yinghui ZHANG ; Yiqi YANG ; Xianglu RONG ; Jiao GUO
Chinese Journal of Experimental Traditional Medical Formulae 2025;31(13):114-121
ObjectiveTo investigate the protective effects and mechanisms of Zhenzhu Tiaozhi capsules on the kidneys in the mouse model of diabetic kidney disease. MethodsThirty male C57BL/6J mice were selected as experimental objects. The model of diabetic kidney disease was induced by intraperitoneal injection of streptozotocin (STZ) at 40 mg·kg-1 for 5 days combined with a high-fat diet (HFD). Fasting blood glucose (FBG) ≥ 11.1 mmol·L-1, increased urine volume, and continuous appearance of proteinuria indicated successful modeling. Mice were grouped as follows: Blank, model, low- and high-dose (0.98 and 1.96 g·kg-1, respectively) Zhenzhu Tiaozhi capsules, and losartan potassium (30 mg·kg-1), with six mice in each group. After 12 weeks of continuous gavage, urine and kidney specimens were collected, and the 24-h urinary protein and the urinary albumin-to-creatinine ratio (UACR) in mice were measured. Hematoxylin-eosin (HE) staining, periodic acid-Schiff (PAS) staining, and Masson staining were performed for observation of histopathological changes in kidneys. Immunofluorescence assay was employed to detect the positive expression of the podocyte marker protein nephrin. Oil red O staining was used to detect renal lipid deposition. Enzyme linked immunosorbent assay was employed to measure the levels of interleukin-1β (IL-1β), interleukin-6 (IL-6), and tumor necrosis factor-α (TNF-α) in the renal tissue. Western blot was employed to determine the expression levels of sterol regulatory element-binding protein cleavage-activating protein (SCAP), sterol regulatory element-binding protein-1c (SREBP-1c), and NOD-like receptor protein 3 (NLRP3) in the renal tissue. ResultsCompared with the blank group, the model group showed increases in 24-h urinary protein and UACR (P<0.05), glomeruli exhibiting capsule adhesion, collagen fiber deposition, mesangial proliferation, and inflammatory cell infiltration, elevated levels of IL-1β, IL-6, and TNF-α (P<0.05), reduced positive expression of nephrin (P<0.05), increased lipid deposition (P<0.05), and up-regulated expression of SCAP, SREBP-1c, and NLRP3 (P<0.05) in the renal tissue. Compared with the model group, the treatment with losartan potassium or high-dose Zhenzhu Tiaozhi capsules for 12 weeks decreased 24-h urinary protein and UACR (P<0.05), and the treatment with low-dose Zhenzhu Tiaozhi capsules for 12 weeks reduced the 24-h urinary protein (P<0.05). Pathological staining results revealed that kidney damage in mice from all treatment groups was alleviated, with reduced inflammatory infiltration, collagen fiber deposition, and mesangial proliferation, and increased positive expression of nephrin in the renal tissue (P<0.05). In addition, all the treatment groups showed reduced lipid droplets (P<0.05), lowered levels of IL-1β, IL-6, and TNF-α (P<0.05), and down-regulated expression of SCAP, SREBP-1c, and NLRP3 (P<0.05) in the renal tissue. ConclusionZhenzhu Tiaozhi capsules can ameliorate kidney damage in the mouse model of diabetic kidney disease by inhibiting the activation of the SCAP-SREBP-1c/NLRP3 signaling pathway, which reduces renal lipid deposition and inflammation.
3.Zhenzhu Tiaozhi Capsules Reduce Renal Lipid Deposition and Inflammation in Mouse Model of Diabetic Kidney Disease via SCAP-SREBP-1c/NLRP3 Signaling Pathway
Tao ZHANG ; Jie TAO ; Yinghui ZHANG ; Yiqi YANG ; Xianglu RONG ; Jiao GUO
Chinese Journal of Experimental Traditional Medical Formulae 2025;31(13):114-121
ObjectiveTo investigate the protective effects and mechanisms of Zhenzhu Tiaozhi capsules on the kidneys in the mouse model of diabetic kidney disease. MethodsThirty male C57BL/6J mice were selected as experimental objects. The model of diabetic kidney disease was induced by intraperitoneal injection of streptozotocin (STZ) at 40 mg·kg-1 for 5 days combined with a high-fat diet (HFD). Fasting blood glucose (FBG) ≥ 11.1 mmol·L-1, increased urine volume, and continuous appearance of proteinuria indicated successful modeling. Mice were grouped as follows: Blank, model, low- and high-dose (0.98 and 1.96 g·kg-1, respectively) Zhenzhu Tiaozhi capsules, and losartan potassium (30 mg·kg-1), with six mice in each group. After 12 weeks of continuous gavage, urine and kidney specimens were collected, and the 24-h urinary protein and the urinary albumin-to-creatinine ratio (UACR) in mice were measured. Hematoxylin-eosin (HE) staining, periodic acid-Schiff (PAS) staining, and Masson staining were performed for observation of histopathological changes in kidneys. Immunofluorescence assay was employed to detect the positive expression of the podocyte marker protein nephrin. Oil red O staining was used to detect renal lipid deposition. Enzyme linked immunosorbent assay was employed to measure the levels of interleukin-1β (IL-1β), interleukin-6 (IL-6), and tumor necrosis factor-α (TNF-α) in the renal tissue. Western blot was employed to determine the expression levels of sterol regulatory element-binding protein cleavage-activating protein (SCAP), sterol regulatory element-binding protein-1c (SREBP-1c), and NOD-like receptor protein 3 (NLRP3) in the renal tissue. ResultsCompared with the blank group, the model group showed increases in 24-h urinary protein and UACR (P<0.05), glomeruli exhibiting capsule adhesion, collagen fiber deposition, mesangial proliferation, and inflammatory cell infiltration, elevated levels of IL-1β, IL-6, and TNF-α (P<0.05), reduced positive expression of nephrin (P<0.05), increased lipid deposition (P<0.05), and up-regulated expression of SCAP, SREBP-1c, and NLRP3 (P<0.05) in the renal tissue. Compared with the model group, the treatment with losartan potassium or high-dose Zhenzhu Tiaozhi capsules for 12 weeks decreased 24-h urinary protein and UACR (P<0.05), and the treatment with low-dose Zhenzhu Tiaozhi capsules for 12 weeks reduced the 24-h urinary protein (P<0.05). Pathological staining results revealed that kidney damage in mice from all treatment groups was alleviated, with reduced inflammatory infiltration, collagen fiber deposition, and mesangial proliferation, and increased positive expression of nephrin in the renal tissue (P<0.05). In addition, all the treatment groups showed reduced lipid droplets (P<0.05), lowered levels of IL-1β, IL-6, and TNF-α (P<0.05), and down-regulated expression of SCAP, SREBP-1c, and NLRP3 (P<0.05) in the renal tissue. ConclusionZhenzhu Tiaozhi capsules can ameliorate kidney damage in the mouse model of diabetic kidney disease by inhibiting the activation of the SCAP-SREBP-1c/NLRP3 signaling pathway, which reduces renal lipid deposition and inflammation.
4.Consensus on low-altitude transport and delivery services for emergency medicines via drones (2025 edition)
Qinshui WU ; Yanfang CHEN ; Tao LIU ; Xiaoyan LI ; Yumin LIANG ; Xin LI ; Zhong LI ; Rong LI ; Xiaoman WANG ; Shuyao ZHANG ; Huishu TIAN
China Pharmacy 2025;36(18):2221-2225
OBJECTIVE To promote the application of drones in emergency rescue and related fields, expand “low-altitude+ medical” rescue services, and advance the standardization of “low-altitude+medical” distribution services. METHODS The Consensus on Low-altitude Transport and Delivery Services for Emergency Medicines via Drones (2025 Edition) (hereinafter referred to as the Consensus) was jointly initiated by the Division of Therapeutic Drug Monitoring, Chinese Pharmacological Society and the Expert Committee on Precision Medication of the Guangdong Pharmaceutical Association. Guangzhou Red Cross Hospital served as the leading unit, organizing 53 multidisciplinary experts nationwide to participate in drafting and reviewing. A nominal group technique was employed to discuss and finalize the consensus outline, resulting in a preliminary draft. Delphi method was employed, and 11 external review experts were invited to conduct the evaluation. After the experts’ opinions were analyzed and integrated, the Consensus was finalized. RESULTS & CONCLUSIONS The finalized Consensus includes its purpose, principles, and applicable scenarios, basic requirements, and operational procedures for low-altitude transport and delivery of emergency medications; distribution requirements and precautions for controlled substances, fragile medications, and temperature-sensitive medications; and recommendations for emergency medications supplies suitable for the low-altitude transportation and distribution. The release of this Consensus is expected to provide guidance and support for the standardization of “low-altitude+medical” distribution services and the application of low-altitude economy in the healthcare sector.
5.Role of TIM3 Pathway in Immune Pathogenesis and Targeted Therapy of Myelodysplastic Syndrome
Xinyu GUO ; Shunjie YU ; Jinglian TAO ; Yingshuai WANG ; Xiaotong REN ; Zhaoyun LIU ; Rong FU ; Zonghong SHAO ; Lijuan LI
Cancer Research on Prevention and Treatment 2025;52(9):731-735
Myelodysplastic syndrome (MDS), a myeloid tumor derived from the malignant clones of hematopoietic stem cells, has an annually increasing incidence. The contemporary research direction has shifted to analyzing the synergistic effect of immune surveillance collapse and abnormal bone marrow microenvironment in the pathological process of MDS. Against this backdrop, the immune checkpoint molecule TIM3 has emerged as a key target because of its persistently high expression on the surface of important immune cells such as T and NK cells. The abnormal activation of the TIM3 pathway is the mechanism by which solid tumors and hematological malignancies achieve immune escape and is a key hub in the formation of immune exhaustion phenotypes. This work integrates the original discoveries of our team with the latest international progress, systematically demonstrating the bidirectional regulatory network of TIM3 between the malignant clone proliferation of MDS and the immunosuppressive microenvironment. Integrating the evidence from emerging clinical trials allows us to consider the clinical significance of TIM3-targeted blocking for MDS, providing a transformative path to overcome the resistance of traditional treatments and marking a new chapter in the active immune reconstitution of MDS treatment.
6.Research status on the regulation of endogenous sulfur dioxide on blood vessels
Yun-Jia SONG ; Qing ZHONG ; Rong ZHANG ; Xu-Tao SUN
The Chinese Journal of Clinical Pharmacology 2024;40(7):1085-1088
Sulfur dioxide(SO2)is involved in regulating various physiological processes of blood vessels,such as maintaining normal vascular structure,regulating vascular tension,controlling blood pressure,inhibiting vascular cell proliferation,regulating apoptosis and autophagy.In pathophysiological conditions such as hypertension,pulmonary hypertension and atherosclerosis,SO2 plays a protective role in pathological changes through different molecular mechanisms.In this paper,we will review the endogenous SO2 production and metabolism,vascular biological effects and its regulation on blood vessels.
7.Research status of H2S-miRNA crosstalk in neurological diseases
Shuo CAO ; Yun-Jia SONG ; Qing ZHONG ; Rong ZHANG ; Xu-Tao SUN
The Chinese Journal of Clinical Pharmacology 2024;40(11):1684-1688
Hydrogen sulfide(H2S)is an emerging endogenous neuromodulator that holds significant potential in the realm of neurological diseases.Its role encompasses reducing neuronal damage,inhibiting excessive activation of striatal astrocytes,and regulating cerebrovascular function,among other physiopathological pathways.Conversely,microRNAs(miRNAs)are widely recognized as pivotal regulators of neurological diseases.They primarily target the 3'untranslated region of the target gene mRNA,impeding mRNA translation and hindering its expression to impart neuroprotective effects.Recent findings have underscored the crucial involvement of H2S and miRNAs in the pathogenesis of various neurological disorders such as Parkinson's disease,stroke,and spinal cord diseases,thereby garnering significant attention.This paper comprehensively summarizes the protective effects arising from the interplay between H2S and miRNAs in neurological diseases,while also delving into the potential therapeutic efficacy they hold for such conditions.
8.Bioequivalence study of pyrazinamide tablets in Chinese healthy subjects
Li-Bing YE ; Chong YAO ; Ying-Rong CHEN ; Lu-Yuan TONG ; Tao YANG ; Xiao LU ; Min XU ; Qiu-Yue JIN ; Shui-Xin YANG
The Chinese Journal of Clinical Pharmacology 2024;40(15):2236-2240
Objective To evaluate the bioequivalence and safety of two pyrazinamide tablets in healthy Chinese subjects.Methods An open,randomized,single-dose,two-sequence,two-cycle,double-cross trial design was used.All 48 healthy subjects(24 in fasting and 24 in fed trial)were randomized to receive a single oral dose of a 0.5 g pyrazinamide tablet(test or reference)per cycle.The plasma concentration of the drug was determined by liquid chromatography coupled to tandem mass spectrometry method.The pharmacokinetic parameters were calculated by WinNonlin v8.2,and the bioequivalence was evaluated by SAS 9.4.Results In the fasting group,the Cmax of the test and reference preparation of pyrazinamide tablets were(13.28±2.82)and(12.88±4.49)μg·mL-1,the AUC0-t were(139.17±26.58)and(138.63±28.92)h·μg·mL-1,the AUC0-∞ were(148.96±33.65)and(148.71±36.97)h·μg·mL-1 respectively.In the fed group,the Cmax of the test and reference preparation of pyrazinamide tablets were(11.89±1.96)and(11.99±1.92)μg·mL-1,the AUC0-t were(138.22±37.21)and(141.68±25.80)h·μg·mL-1,the AUC0-∞ were(152.20±32.41)and(151.04±28.05)h·μg·mL-,respectively.The 90%confidence intervals of Cmax,AUC0-t and AUC0-∞ geometric mean ratios of the test and reference preparation were all within 80.00%to 125.00%.The incidence of adverse events was 16.70%for both the test and reference preparation in the fasting group and 8.30%for both the test and reference preparation in the fed group,all of which were mild in severity.Conclusion The test and reference preparation of pyrazinamide tablets were bioequivalent,safe and well tolerated in healthy Chinese subjects under fasting and fed conditions.
9.Effect of laparoscopic salpingectomy on ovarian reserve function and serum neuropeptide Y and cortisol in patients with ectopic pregnancy
Rong SHI ; Xianfang ZHENG ; Qun TAO ; Junmo CHEN ; Xiaohua GE
The Journal of Practical Medicine 2024;40(6):801-806
Objective To explore the effect of laparoscopic salpingectomy on ovarian reserve function and serum neuropeptide Y(NPY)and cortisol(Cor)in patients with ectopic pregnancy.Methods 82 patients with ectopic pregnancy who had visited Chaohu Hospital Affiliated to Anhui Medical University from June 2018 to June 2021 were randomly divided into two groups,with 41 in each group.The control group underwent laparoscopic salpingostomy and suturing for embryo retrieval,while the study group underwent laparoscopic salpingectomy.Surgical duration,intraoperative blood loss,time to postsurgical mobilization,length of hospital stay,serum NPY and Cor levels,antral follicle count(AFC),indexes for peak flow velocity and resistance of ovarian artery were compared between the two groups.Follow-up was conducted for two years after surgery,and the success rate of pregnancy and the ectopic pregnancy rate were recorded.Results The surgical duration in the study group was shorter than that in the control group(P<0.05).The differences in serum NPY and Cor values between the two groups immediately after surgery and at postoperative week one were not statistically significant(P>0.05).At postoperative months1 and 6,the peak flow velocity of the affected ovary was lower in the study group than in the control group,whereas the resistance index was higher(P<0.05).At postoperative month 6,both groups showed an increase in peak flow velocity and a decrease in resistance index(P<0.05).There were no statistically signifi-cant differences in AFC and the success rate of pregnancy between the two groups postoperatively(P>0.05).The ectopic pregnancy rate in the study group was lower than that in the control group(P<0.05).Conclusion As compared with laparoscopic salpingostomy,laparoscopic salpingectomy for ectopic pregnancy can also preserve postoperative ovarian antral follicle count(AFC),and it has greater advantage in reducing the risk of recurrent ectopic pregnancy after surgery.
10.Early Primate Embryo Development Meets Single-cell Multi-omics
Zhi-Hui PAN ; Rong-Rong GUO ; You-Yue ZHANG ; Tao TAN
Progress in Biochemistry and Biophysics 2024;51(9):2000-2015
Given the constraints imposed by the “14-day ethics” rule, numerous critical events occurring between the second and fourth weeks of embryonic development remain poorly understood. This underscores the necessity of a detailed understanding of embryonic development and regulation during this period, which is indispensable for preventing pregnancy failure, treating birth defects, and promoting human reproductive health.Rodents, characterized by their small size, rapid growth, strong reproductive capacity, and fully sequenced genomes, are widely used as crucial models for studying embryonic development. However, the substantial physiological differences between rodents and primates due to evolutionary divergence make it challenging to directly apply findings from rodent studies to primates. Besides, primates, our closest relatives in terms of evolutionary phylogenetics and physiological characteristics, share more than 95% genetic homology with humans, underscoring the urgent need for primate research. Furthermore, early-stage embryonic cells are both scarce and diverse, making their regulatory mechanisms and developmental pathways typically elucidated through single-cell sequencing. For instance, three significant articles published in Science in 2018 mapped the complete atlas of organ and tissue development from fertilization and captured dynamic gene expression profiles in zebrafish and frogs through single-cell transcriptomics. Unfortunately, relying solely on single-cell omics analysis falls short in effectively and comprehensively deciphering the intricate cellular network information. Single-cell multi-omics empower researchers to systematically decode cell heterogeneity and developmental trajectories at the individual cell level by combining transcriptomics, epigenomics, proteomics, and metabolomics analyses. These emerging technologies play a significant role in life sciences, enabling the elucidation of critical early primate embryonic development events from a multi-dimensional perspective, including zygotic genome activation (ZGA), X-chromosome dosage compensation, origins of primordial germ cells (PGCs), mechanisms of cell fate determination, and pivotal events in gastrulation and early organogenesis.This article chronicles the advancement of pivotal technologies, from single-cell histology to multi-omics, beginning with the single-cell transcriptome and culminating in a comprehensive analysis according to the central dogma of molecular biology. It highlights the transition from a singular to a holistic perspective in cellular analysis and reviews the application of multi-omics techniques in unveiling early primate embryonic development. Finally, it delves into the application of multi-omics technologies in enhancing our understanding of early primate embryonic development and explores future possibilities, directions, and challenges in this rapidly evolving field. In doing so, it emphasizes the critical role of interdisciplinary approaches, combining insights from genetics, molecular biology, and bioinformatics to foster innovations in reproductive medicine and developmental biology. The integration of such technologies offers the promise of breakthroughs in understanding complex biological processes, potentially leading to novel therapeutic strategies and advancements in reproductive health and medicine.

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