1.Single-cell transcriptome sequencing and clinical significance analysis of cellular heterogeneity in chronic skin ulcers
Chuwang WANG ; Jianda ZHOU ; Yanlian XIANG ; Peiting LI ; Shaohua WANG ; Jia CHEN ; Shuyue CHEN ; Wu XIONG ; Yu LIU ; Xiao FU
Chinese Journal of General Surgery 2025;34(2):327-337
Background and Aims:Chronic skin ulcers are a significant disease affecting patients'daily lives and psychological well-being.Abnormalities in the cells and extracellular matrix within the tissue may disrupt the balance of the microenvironment,hindering the normal skin repair process and leading to delayed healing of the ulcer.There is currently a lack of research on the mechanisms underlying the development of chronic ulcers and their diagnostic biomarkers.Single-cell sequencing,a newly developed high-throughput sequencing method in recent years,uses gene sequencing at the single-cell resolution to precisely reveal disease mechanisms and has been applied in various diseases.This study used single-cell transcriptome sequencing(scRNA-Seq)to investigate the cellular heterogeneity in chronic skin ulcer tissue to elucidate the potential molecular mechanisms behind delayed healing and provide new insights for clinical treatment.Methods:The scRNA-Seq technology was used to compare the differences in cell subpopulations and gene expression between chronic ulcer tissue and normal skin tissue.Single cells were sorted using a microfluidic platform,and cDNA libraries were constructed for subsequent differential gene analysis and functional enrichment analysis.Results:scRNA-Seq analysis revealed significant immune-metabolic remodeling features in chronic ulcer tissue:the number of B cells,monocytes,and macrophages in ulcer tissue increased by 2.1 to 3.5 times compared to the normal tissue control.This was accompanied by widespread activation of collagen synthesis genes(COL1A1/COL3A1)and synergistic suppression of immune regulators(e.g.,granzyme family GZMA/GZMB/H).Cross-cell subpopulation functional network analysis showed that hypoxia response mediated by the HIF-1 signaling pathway and PI3K/Akt pathway abnormalities formed a positive feedback loop,exacerbating the imbalance in the secretion of inflammatory factors(CXCL3/8,TGFBI)and compensatory upregulation of mitochondrial oxidative phosphorylation.Conclusion:Chronic skin ulcers exhibit significant differences in cellular heterogeneity and gene expression,suggesting that chronic ulcers are not simply tissue defects but a complex pathological process dominated by chronic inflammation and immune dysregulation.The coordinated dysregulation of multiple cell subpopulations in the ulcer microenvironment,along with persistent inflammatory responses and metabolic abnormalities,is interconnected through the HIF-1/TNF/MAPK pathway network.Downregulation of granzyme gene family members and abnormal histone modifications may contribute to immune clearance defects,providing a theoretical basis for developing novel therapies targeting epigenetic regulation or mitochondrial function.
2.Single-cell transcriptome sequencing and clinical significance analysis of cellular heterogeneity in chronic skin ulcers
Chuwang WANG ; Jianda ZHOU ; Yanlian XIANG ; Peiting LI ; Shaohua WANG ; Jia CHEN ; Shuyue CHEN ; Wu XIONG ; Yu LIU ; Xiao FU
Chinese Journal of General Surgery 2025;34(2):327-337
Background and Aims:Chronic skin ulcers are a significant disease affecting patients'daily lives and psychological well-being.Abnormalities in the cells and extracellular matrix within the tissue may disrupt the balance of the microenvironment,hindering the normal skin repair process and leading to delayed healing of the ulcer.There is currently a lack of research on the mechanisms underlying the development of chronic ulcers and their diagnostic biomarkers.Single-cell sequencing,a newly developed high-throughput sequencing method in recent years,uses gene sequencing at the single-cell resolution to precisely reveal disease mechanisms and has been applied in various diseases.This study used single-cell transcriptome sequencing(scRNA-Seq)to investigate the cellular heterogeneity in chronic skin ulcer tissue to elucidate the potential molecular mechanisms behind delayed healing and provide new insights for clinical treatment.Methods:The scRNA-Seq technology was used to compare the differences in cell subpopulations and gene expression between chronic ulcer tissue and normal skin tissue.Single cells were sorted using a microfluidic platform,and cDNA libraries were constructed for subsequent differential gene analysis and functional enrichment analysis.Results:scRNA-Seq analysis revealed significant immune-metabolic remodeling features in chronic ulcer tissue:the number of B cells,monocytes,and macrophages in ulcer tissue increased by 2.1 to 3.5 times compared to the normal tissue control.This was accompanied by widespread activation of collagen synthesis genes(COL1A1/COL3A1)and synergistic suppression of immune regulators(e.g.,granzyme family GZMA/GZMB/H).Cross-cell subpopulation functional network analysis showed that hypoxia response mediated by the HIF-1 signaling pathway and PI3K/Akt pathway abnormalities formed a positive feedback loop,exacerbating the imbalance in the secretion of inflammatory factors(CXCL3/8,TGFBI)and compensatory upregulation of mitochondrial oxidative phosphorylation.Conclusion:Chronic skin ulcers exhibit significant differences in cellular heterogeneity and gene expression,suggesting that chronic ulcers are not simply tissue defects but a complex pathological process dominated by chronic inflammation and immune dysregulation.The coordinated dysregulation of multiple cell subpopulations in the ulcer microenvironment,along with persistent inflammatory responses and metabolic abnormalities,is interconnected through the HIF-1/TNF/MAPK pathway network.Downregulation of granzyme gene family members and abnormal histone modifications may contribute to immune clearance defects,providing a theoretical basis for developing novel therapies targeting epigenetic regulation or mitochondrial function.
3.The negative-pressure wound therapy promotes wound healing by enhancing angiogenesis in granulation tissue and wound healing through suppression of NLRX1 through via the up-regulation of miR-195expression by suppressing NLRX1 expression upregulation
Xiaoxia CHEN ; Ningning TANG ; Huiqing XIE ; Li QIAN ; Feng HU ; Chuwang WANG ; Bin HE ; Jiaqin XU ; Zunhong LIANG ; Jianda ZHOU
Journal of Chinese Physician 2018;20(2):183-186,190
Objective To investigate the expression and the relationship with angiogenesis of miR-195 and NLR family member X1 (NLRX1) in granulation tissue after negative-pressure wound treatment (NPWT).Methods Six patients were collected who received negative pressure treatment with refractory wound granulation.The levels of miR-195, NLRX1 mRNA and NLRX1 proteins were measured.The expression of NLRX1 and the micro-vascular density (MVD) of CD31 were detected by immunohistochemistry (IHC).Results MiR-195 and MVD were significantly higher in granulation tissue after 7 days negative pressure treatment (P<0.05), and NLRX1 was significantly lower (P <0.05).In granulation tissue,the expression of miR-195 was negatively correlated with NLRX1 (r =-0.856, P <0.001), the expression of NLRX1 was negatively correlated with MVD (r =-0.618, P <0.05), and the expression of miR-195 was positively correlated with MVD (r =0.630, P < 0.05).Conclusions Negative pressure wound therapy can promote the formation of granulation vessels and the wound healing.The therapeutic mechanism may inhibit the expression of NLRX1 and upregulate the expression of miR-195 to promote angiogenesis.

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