1.The Role and Mechanism of Circadian Rhythm Regulation in Skin Tissue Regeneration
Ya-Qi ZHAO ; Lin-Lin ZHANG ; Xiao-Meng MA ; Zhen-Kai JIN ; Kun LI ; Min WANG
Progress in Biochemistry and Biophysics 2025;52(5):1165-1178
Circadian rhythm is an endogenous biological clock mechanism that enables organisms to adapt to the earth’s alternation of day and night. It plays a fundamental role in regulating physiological functions and behavioral patterns, such as sleep, feeding, hormone levels and body temperature. By aligning these processes with environmental changes, circadian rhythm plays a pivotal role in maintaining homeostasis and promoting optimal health. However, modern lifestyles, characterized by irregular work schedules and pervasive exposure to artificial light, have disrupted these rhythms for many individuals. Such disruptions have been linked to a variety of health problems, including sleep disorders, metabolic syndromes, cardiovascular diseases, and immune dysfunction, underscoring the critical role of circadian rhythm in human health. Among the numerous systems influenced by circadian rhythm, the skin—a multifunctional organ and the largest by surface area—is particularly noteworthy. As the body’s first line of defense against environmental insults such as UV radiation, pollutants, and pathogens, the skin is highly affected by changes in circadian rhythm. Circadian rhythm regulates multiple skin-related processes, including cyclic changes in cell proliferation, differentiation, and apoptosis, as well as DNA repair mechanisms and antioxidant defenses. For instance, studies have shown that keratinocyte proliferation peaks during the night, coinciding with reduced environmental stress, while DNA repair mechanisms are most active during the day to counteract UV-induced damage. This temporal coordination highlights the critical role of circadian rhythms in preserving skin integrity and function. Beyond maintaining homeostasis, circadian rhythm is also pivotal in the skin’s repair and regeneration processes following injury. Skin regeneration is a complex, multi-stage process involving hemostasis, inflammation, proliferation, and remodeling, all of which are influenced by circadian regulation. Key cellular activities, such as fibroblast migration, keratinocyte activation, and extracellular matrix remodeling, are modulated by the circadian clock, ensuring that repair processes occur with optimal efficiency. Additionally, circadian rhythm regulates the secretion of cytokines and growth factors, which are critical for coordinating cellular communication and orchestrating tissue regeneration. Disruptions to these rhythms can impair the repair process, leading to delayed wound healing, increased scarring, or chronic inflammatory conditions. The aim of this review is to synthesize recent information on the interactions between circadian rhythms and skin physiology, with a particular focus on skin tissue repair and regeneration. Molecular mechanisms of circadian regulation in skin cells, including the role of core clock genes such as Clock, Bmal1, Per and Cry. These genes control the expression of downstream effectors involved in cell cycle regulation, DNA repair, oxidative stress response and inflammatory pathways. By understanding how these mechanisms operate in healthy and diseased states, we can discover new insights into the temporal dynamics of skin regeneration. In addition, by exploring the therapeutic potential of circadian biology in enhancing skin repair and regeneration, strategies such as topical medications that can be applied in a time-limited manner, phototherapy that is synchronized with circadian rhythms, and pharmacological modulation of clock genes are expected to optimize clinical outcomes. Interventions based on the skin’s natural rhythms can provide a personalized and efficient approach to promote skin regeneration and recovery. This review not only introduces the important role of circadian rhythms in skin biology, but also provides a new idea for future innovative therapies and regenerative medicine based on circadian rhythms.
2.Research status on the therapeutic potential of paeoniflorin in renal fibrosis based on the PI3K/Akt/mTOR signaling pathway
Lin-zhen JIA ; Tian-tian HAN ; Li-bo WEN ; Kun ZHAO ; Ren-jun GAO ; Ying LÜ ; Xue LI
The Chinese Journal of Clinical Pharmacology 2025;41(1):132-136
The phosphatidylinositol 3-kinase/protein kinase B/mammalian target of rapamycin(PI3K/Akt/mTOR)signaling pathway plays a crucial role in the regulation of renal fibrosis by participating in inflammatory response,oxidative stress and autophagy.Paeoniflorin exhibits remarkable efficacy in treating myocardial and liver fibrosis.This article provides a comprehensive review on the research progress of paeoniflora in preventing and treating renal fibrosis through modulation of the PI3K/Akt/mTOR signaling pathway,offering novel insights for traditional Chinese medicine-based approaches to prevent and treat renal fibrosis.
3.Optimization and clinical validation of ISET-ICC technical system for de-tection of circulating tumor cells
Zhi-kun ZHAO ; Ying MA ; Pang LI ; Sheng LI ; Zhen-dan WANG
Chinese Journal of Current Advances in General Surgery 2025;28(1):12-16
Objective:To optimize the previously established Improved Membrane Filtration(ISET)method for de-tecting circulating tumor cells(CTCs)and to develop and validate a new,reliable CTC detection method by combining it with immunofluorescence techniques.Methods:The study involved optimizing the CTC detection system using mixed samples of gastric cancer 803 cell lines and peripheral blood(PB)from healthy volunteers to simulate the peripheral blood of cancer patients.The optimized system was validated using peripheral blood samples from 23 patients with ad-vanced(Ⅲ/Ⅳ)cancer,employing the ISET technique combined with immunocytochemistry(ICC)and paraffin block im-munohistochemistry(IHC)identification techniques.A cohort of 74 patients with various cancer types was used to com-pare the diagnostic performance of the membrane filtration combined with immunofluorescence(ISET-ICC)system against the CTC-Biopsy and CellSearchTM methods.Results:By adding a red blood cell lysis step and increasing the membrane pore size to 10 μm,the filtration time of the ISET method was reduced by threefold.The ISET-ICC detection method achieved a CTC positivity rate of 65.2%.The combination of the ISET-ICC system with the cell paraffin block-IHC method enhanced the reliability of identifying circulating tumor cells undergoing epithelial-mesenchymal transition(EMT-CTCs).The ISET-ICC technique demonstrated a significantly higher CTC positivity rate(17.6%;13/74)within the study cohort compared to the CellSearchTM method,which showed a CTC positivity rate of 12.2%(9/74;x2=10.21,P=0.007).The difference in positive detection rates among patients at different stages was statistically significant(x2=3.64,P=0.029),with a notably higher CTC detection rate in stage Ⅳ patients compared to those in stages Ⅰ-Ⅲ(x2=6.76,P=0.001).Conclusion:The improved ISET-ICC system effectively detects CTCs across various cancer types and dem-onstrates greater accuracy compared to the CellSearchTM system.
4.Diagnosis and treatment of colorectal liver metastases: Chinese expert consensus-based multidisciplinary team (2024 edition).
Wen ZHANG ; Xinyu BI ; Yongkun SUN ; Yuan TANG ; Haizhen LU ; Jun JIANG ; Haitao ZHOU ; Yue HAN ; Min YANG ; Xiao CHEN ; Zhen HUANG ; Weihua LI ; Zhiyu LI ; Yufei LU ; Kun WANG ; Xiaobo YANG ; Jianguo ZHOU ; Wenyu ZHANG ; Muxing LI ; Yefan ZHANG ; Jianjun ZHAO ; Aiping ZHOU ; Jianqiang CAI
Chinese Medical Journal 2025;138(15):1765-1768
5.A new glycoside from Alstonia mairei Lévl.
Li-ke WANG ; Bing-yan LI ; Zhen-zhu ZHAO ; Yan-zhi WANG ; Xiao-kun LI ; Wei-sheng FENG ; Ying-ying SI
Acta Pharmaceutica Sinica 2025;60(1):191-195
Nine compounds were isolated and purified from 90% ethanol extract of
6.Research status on the therapeutic potential of paeoniflorin in renal fibrosis based on the PI3K/Akt/mTOR signaling pathway
Lin-zhen JIA ; Tian-tian HAN ; Li-bo WEN ; Kun ZHAO ; Ren-jun GAO ; Ying LÜ ; Xue LI
The Chinese Journal of Clinical Pharmacology 2025;41(1):132-136
The phosphatidylinositol 3-kinase/protein kinase B/mammalian target of rapamycin(PI3K/Akt/mTOR)signaling pathway plays a crucial role in the regulation of renal fibrosis by participating in inflammatory response,oxidative stress and autophagy.Paeoniflorin exhibits remarkable efficacy in treating myocardial and liver fibrosis.This article provides a comprehensive review on the research progress of paeoniflora in preventing and treating renal fibrosis through modulation of the PI3K/Akt/mTOR signaling pathway,offering novel insights for traditional Chinese medicine-based approaches to prevent and treat renal fibrosis.
7.Clinical application of the posterior to anterior malleolar extended lateral approach in the treatment of quadrimalleolar fractures
Yanjiang FENG ; Dawei ZHAO ; Guangrong YU ; Jiang XIA ; Kun ZHANG ; Zhen WANG
Chinese Journal of Orthopaedic Trauma 2025;27(1):46-51
Objective:To explore the clinical efficacy of the posterior to anterior malleolar extended lateral approach (PAMELA) in the treatment of quadrimalleolar fractures.Methods:A retrospective study was conducted to analyze the clinical data of 12 patients with quadrimalleolar fracture who had been admitted to Foot and Ankle Surgery Department, Henan Luoyang Orthopaedic & Traumatological Hospital from June 2022 to June 2023. There were 5 males and 7 females, with an age of (37.3±12.2) years and a duration from injury to surgery of (8.8±3.5) d. Open reduction and internal fixation of displaced Chaput tubercle fractures, lateral and posterior malleolar fractures were conducted through the PAMELA for all patients. The incision exposure, operation time, intraoperative bleeding, and incision healing were noted. Postoperatively, the fracture reduction was evaluated using the Burwell-Charnley criteria. The clinical efficacy was evaluated at the final follow-up using the ankle-hindfoot score of American Orthopaedic Foot & Ankle Society (AOFAS), visual analogue scale (VAS), and range of motion (ROM) of the ankle joint.Results:Good exposure of the Chaput tubercle, anterolateral tibiotalar joint, and lateral and posterior malleoli was achieved during surgery in all patients. The follow-up time for the 12 patients was (14.3±1.8) months, the operation time (152.5±26.0) minutes, and the intraoperative bleeding (137.5±44.1) mL. All incisions healed at the first stage postoperatively without any complications. According to the Burwell-Charnley criteria, anatomic reduction was achieved in all patients. CT scans showed good reduction of the distal tibiofibular syndesmosis. At the final follow-up, their AOFAS score was (94.1±8.3) points, VAS 0 (0, 1) point, and ankle joint ROM 17.5°±9.0° for dorsiflexion and 35.2°±9.6° for plantarflexion.Conclusions:In the treatment of quadrimalleolar fractures, because the PAMELA can lead to good exposure of the anterolateral ankle joint, distal tibiofibular syndesmosis, and lateral and posterior malleolar fractures, it results in a high rate of anatomic reduction of the fractures, safe incisions and limited soft tissue complications. Therefore, it is a safe, simple, and effective surgical approach.
8.Optimization and clinical validation of ISET-ICC technical system for de-tection of circulating tumor cells
Zhi-kun ZHAO ; Ying MA ; Pang LI ; Sheng LI ; Zhen-dan WANG
Chinese Journal of Current Advances in General Surgery 2025;28(1):12-16
Objective:To optimize the previously established Improved Membrane Filtration(ISET)method for de-tecting circulating tumor cells(CTCs)and to develop and validate a new,reliable CTC detection method by combining it with immunofluorescence techniques.Methods:The study involved optimizing the CTC detection system using mixed samples of gastric cancer 803 cell lines and peripheral blood(PB)from healthy volunteers to simulate the peripheral blood of cancer patients.The optimized system was validated using peripheral blood samples from 23 patients with ad-vanced(Ⅲ/Ⅳ)cancer,employing the ISET technique combined with immunocytochemistry(ICC)and paraffin block im-munohistochemistry(IHC)identification techniques.A cohort of 74 patients with various cancer types was used to com-pare the diagnostic performance of the membrane filtration combined with immunofluorescence(ISET-ICC)system against the CTC-Biopsy and CellSearchTM methods.Results:By adding a red blood cell lysis step and increasing the membrane pore size to 10 μm,the filtration time of the ISET method was reduced by threefold.The ISET-ICC detection method achieved a CTC positivity rate of 65.2%.The combination of the ISET-ICC system with the cell paraffin block-IHC method enhanced the reliability of identifying circulating tumor cells undergoing epithelial-mesenchymal transition(EMT-CTCs).The ISET-ICC technique demonstrated a significantly higher CTC positivity rate(17.6%;13/74)within the study cohort compared to the CellSearchTM method,which showed a CTC positivity rate of 12.2%(9/74;x2=10.21,P=0.007).The difference in positive detection rates among patients at different stages was statistically significant(x2=3.64,P=0.029),with a notably higher CTC detection rate in stage Ⅳ patients compared to those in stages Ⅰ-Ⅲ(x2=6.76,P=0.001).Conclusion:The improved ISET-ICC system effectively detects CTCs across various cancer types and dem-onstrates greater accuracy compared to the CellSearchTM system.
9.Clinical application of the posterior to anterior malleolar extended lateral approach in the treatment of quadrimalleolar fractures
Yanjiang FENG ; Dawei ZHAO ; Guangrong YU ; Jiang XIA ; Kun ZHANG ; Zhen WANG
Chinese Journal of Orthopaedic Trauma 2025;27(1):46-51
Objective:To explore the clinical efficacy of the posterior to anterior malleolar extended lateral approach (PAMELA) in the treatment of quadrimalleolar fractures.Methods:A retrospective study was conducted to analyze the clinical data of 12 patients with quadrimalleolar fracture who had been admitted to Foot and Ankle Surgery Department, Henan Luoyang Orthopaedic & Traumatological Hospital from June 2022 to June 2023. There were 5 males and 7 females, with an age of (37.3±12.2) years and a duration from injury to surgery of (8.8±3.5) d. Open reduction and internal fixation of displaced Chaput tubercle fractures, lateral and posterior malleolar fractures were conducted through the PAMELA for all patients. The incision exposure, operation time, intraoperative bleeding, and incision healing were noted. Postoperatively, the fracture reduction was evaluated using the Burwell-Charnley criteria. The clinical efficacy was evaluated at the final follow-up using the ankle-hindfoot score of American Orthopaedic Foot & Ankle Society (AOFAS), visual analogue scale (VAS), and range of motion (ROM) of the ankle joint.Results:Good exposure of the Chaput tubercle, anterolateral tibiotalar joint, and lateral and posterior malleoli was achieved during surgery in all patients. The follow-up time for the 12 patients was (14.3±1.8) months, the operation time (152.5±26.0) minutes, and the intraoperative bleeding (137.5±44.1) mL. All incisions healed at the first stage postoperatively without any complications. According to the Burwell-Charnley criteria, anatomic reduction was achieved in all patients. CT scans showed good reduction of the distal tibiofibular syndesmosis. At the final follow-up, their AOFAS score was (94.1±8.3) points, VAS 0 (0, 1) point, and ankle joint ROM 17.5°±9.0° for dorsiflexion and 35.2°±9.6° for plantarflexion.Conclusions:In the treatment of quadrimalleolar fractures, because the PAMELA can lead to good exposure of the anterolateral ankle joint, distal tibiofibular syndesmosis, and lateral and posterior malleolar fractures, it results in a high rate of anatomic reduction of the fractures, safe incisions and limited soft tissue complications. Therefore, it is a safe, simple, and effective surgical approach.
10.Influence of Tongfu Xiefei Guanchang Solution on intestinal barrier and intestinal flora of rats with acute lung injury based on p38 MAPK/MLCK signaling pathway.
Ming MA ; Kun WANG ; Yan-Hua YANG ; Meng-Ru YUE ; Quan-Na REN ; Yu-Han CHEN ; Yong-Zhen SONG ; Zi-Fu XU ; Xu ZHAO
China Journal of Chinese Materia Medica 2024;49(21):5919-5931
The study is designed to observe the mechanism of Tongfu Xiefei Guanchang Solution(TFXF) in the treatment of acute lung injury(ALI) in rats by improving intestinal barrier and intestinal flora structure via p38 mitogen-activated protein kinase(p38 MAPK)/myosin light chain kinase(MLCK) signaling pathway. Sixty SPF-grade Wistar rats were randomly divided into the control(CON) group, lipopolysaccharide(LPS) group(7.5 mg·kg~(-1)), LPS + dexamethasone(DEX) group(3.5 mg·kg~(-1)), LPS + high-dose(HD)-TFXF group(14.74 g·kg~(-1)), LPS + middle-dose(MD)-TFXF group(7.37 g·kg~(-1)), and LPS + low-dose(LD)-TFXF group(3.69 g·kg~(-1)). ALI model of the rat was established by intraperitoneal injection of LPS. The lactate dehydrogenase(LDH) activity and total protein concentration in the bronchoalveolar lavage fluid(BALF) were measured; tumor necrosis factor-α(TNF-α) and interleukin-1β(IL-1β) levels in lung and colon tissue of rats were detected by enzyme linked immunosorbent assay(ELISA). Hematoxylin-eosin(HE) staining was used to observe the pathological expression in the lung and colon tissue of rats. The mRNA expression of p38 MAPK, TNF-α, and IL-1β in rat lung tissue was determined by real-time fluorescence quantitative polymerase chain reaction(real-time PCR). Western blot was used to detect the protein expression related to the p38 MAPK/MLCK signaling pathway in the colon tissue of rats. 16S rRNA sequencing was used to detect changes in the composition and content of intestinal flora in rats, and correlation analyses were performed to explore the regulatory role of intestinal flora in improving ALI in rats. The results showed that compared with those in the LPS group, the histopathological scores of lung and colon tissue, LDH activity, and total protein concentration in BALF were significantly reduced in rats in all groups after drug administration. Except for the LPS + LD-TFXF group, the remaining groups significantly reduced the levels of TNF-α and IL-1β in the lung and colon tissue of rats. The protein expressions of phosphorylated p38 mitogen-activated protein kinase(p-p38 MAPK)/p38, phosphorylated myosin light chain(p-MLC)/myosin light chain 2(MLC2), and MLCK in colon tissue of rats in each drug administration group were significantly decreased. The mRNA expression levels of p38 MAPK, TNF-α, and IL-1β were significantly reduced in the LPS + HD-TFXF group. 16S rRNA sequencing results showed that the abundance of intestinal flora was significantly higher in the LPS + HD-TFXF group, and intestinal floras including Sobs, Shannon, and Npshannon were significantly higher. The β-diversity distribution of intestinal flora tends toward the CON group, and the abundance of Firmicutes was significantly higher. The abundance of Proteobacteria was significantly reduced; the abundance of Bacteroides was significantly reduced, and the abundance of Ruminococcus was significantly higher. The main species differences were Blautia, Roseburia_sp_499, and Butyricicoccus. TNF-α and IL-1β of lung tissue were negatively correlated with Muribaculaceae, unclassified norank_f_Eubacterium_coprostanoligenes, and Ruminococcus and positively correlated with Bacteroides. Meanwhile, TNF-α and IL-1β of colon tissue were negatively correlated with unclassified norank_f_Eubacterium_coprostanoligenes and Ruminococcus and positively correlated with Bacteroides. The predicted biological function of the flora was related to the biosynthesis of secondary metabolites, amino acid biosynthesis, sugar metabolism, and oxidative phosphorylation. The above studies show that TFXF can repair lung and colon tissue structure and regulate inflammatory factor levels by modulating the abundance and diversity of intestinal flora species in ALI rats. Its mechanism of action in ameliorating ALI in rats may be related to the inhibition of inflammation, improvement of intestinal mucosal permeability, and maintenance of intestinal flora homeostasis and barrier through the p38 MAPK/MLCK signaling pathway.
Animals
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Acute Lung Injury/genetics*
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Rats
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p38 Mitogen-Activated Protein Kinases/genetics*
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Drugs, Chinese Herbal/pharmacology*
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Myosin-Light-Chain Kinase/genetics*
;
Male
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Gastrointestinal Microbiome/drug effects*
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Rats, Wistar
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Signal Transduction/drug effects*
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Interleukin-1beta/metabolism*
;
Tumor Necrosis Factor-alpha/metabolism*
;
Lung/metabolism*
;
Intestinal Mucosa/metabolism*
;
Humans

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