Background: Transforming growth factor beta (TGF beta) upregulates a number of smooth muscle specific genes in (myo)fibroblasts. As asthma is characterised by an increase in airway smooth muscle, we postulated that TGFbeta(2) favours differentiation of asthmatic (myo)fibroblasts towards a smooth muscle phenotype.
Methods: Primary fibroblasts were grown from bronchial biopsy specimens from normal (n = 6) and asthmatic (n = 7) donors and treated with TGF beta2 to induce myofibroblast differentiation. The most stable genes for normalisation were identified using RT-qPCR and the geNorm software applied to a panel of 12 "housekeeping" genes. Expression of alpha-smooth muscle actin (alpha SMA), heavy chain myosin (HCM), calponin 1 (CPN 1), desmin, and gamma-actin were measured by RT-qPCR. Protein expression was assessed by immunocytochemistry and western blotting.
Results: Phospholipase A2 and ubiquitin C were identified as the most stably expressed and practically useful genes for normalisation of gene expression during myofibroblast differentiation. TGF beta2 induced mRNA expression for all five smooth muscle related transcripts; alpha SMA, HCM and CPN 1 protein were also increased but desmin protein was not detectable. Although there was no difference in basal expression, HCM, CPN 1 and desmin were induced to a significantly greater extent in asthmatic fibroblasts than in those from normal controls (p = 0.041 and 0.011, respectively).
Conclusions: Although TGF beta2 induced the transcription of several smooth muscle related genes, not all were translated into protein. Thus, while TGF beta2 is unable to induce a bona fide smooth muscle cell phenotype, it may "prime" (myo)fibroblasts for further differentiation, especially if the cells are derived from asthmatic airways.
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http://dx.doi.org/10.1136/thx.2005.050005 | DOI Listing |
Iran J Pharm Res
December 2024
Department of Clinical Biochemistry, Faculty of Medicine, Ahvaz Jundishapur University of Medical Sciences, Ahvaz, Iran.
Background: Atherosclerosis remains the leading cause of mortality worldwide, highlighting the urgent need for innovative treatments targeting chronic inflammation. Recent research indicates that quercetin (QCT) and curcumin, two naturally occurring compounds, have potential therapeutic benefits in cardiovascular diseases.
Objectives: This study focuses on the novel synthesis of nano-quercetin (N-QCT) encapsulated in solid lipid nanoparticles (SLNs) and investigates the synergistic cardioprotective effects of N-QCT and curcumin on human vascular smooth muscle cells (VSMCs).
Cureus
February 2025
Orthopedics and Traumatology, Delafontaine Hospital, Saint Denis, FRA.
Leiomyomas, benign smooth muscle tumors, are most frequently found in the uterus. Leg leiomyoma has been reported in a small number of studies, making it an uncommon finding. We present two male patients who came to the clinic with bothersome masses in their calf and knee, respectively.
View Article and Find Full Text PDFCureus
February 2025
Department of Plastic and Aesthetic Surgery, Kitasato University School of Medicine, Sagamihara Kanagawa, JPN.
We report a rare case of a smooth muscle tumor of uncertain malignant potential arising in the inguinal soft tissue, requiring differential diagnosis from metastatic lymphadenopathy. The patient was a 74-year-old male. On the initial examination, a painless, elastic-firm mass measuring approximately 25 × 15 mm was palpated slightly cephalad and medial to the left inguinal region.
View Article and Find Full Text PDFJ Cell Biochem
March 2025
Stem Cell Laboratory, Department of Biotechnology, Sri Venkateswara Institute of Medical Sciences, Tirupati, Andhra Pradesh, India.
Glomerular filtration function and homeostasis are largely due to the cross-talk between podocytes, endothelial cells, and mesangial cells (MCs). Any disturbance in this association causes glomerular diseases (GD). Cell-based therapies are the best option in the treatment of GD.
View Article and Find Full Text PDFArthritis Res Ther
March 2025
Department of Rheumatology and Immunology, Capital Medical University Affiliated Anzhen Hospital, Beijing, China.
Objectives: Takayasu arteritis (TAK) is an inflammatory vasculitis that affects the aorta and its primary branches. The pathogenesis of TAK remains elusive, yet identifying key cell types in the aorta of TAK patients is crucial for uncovering cellular heterogeneity and discovering potential therapeutic targets.
Methods: This study utilized single-cell transcriptome analysis on aortic specimens from three TAK patients, with control data sourced from a publicly available database (GSE155468).
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