Purpose: The authors aimed to evaluate the prognostic value of thrombin receptor (TR) expression in microvessel endothelial cells (VECs) by coagulation state in oesophageal squamous cell carcinoma (ESCC).
Methods: In 138 ESCC normal and para-tumour samples, we investigated the association of the expression of TR and CD34 (microvessel marker) seen on immunohistochemical staining and clinicopathological parameters, coagulation state, microvessel density (MVD), and survival of patients.
Result: In total, 62 ESCC tissues were positive for TR in VECs, and in 48 cases, the activated partial thromboplastin time (APTT) was <28.5 s, with significant difference in tumour depth between TR-positive and -negative cases with APTT<28.5 s. Also with APTT<28.5 s, TR-positive MVD (TRMVD) was significantly greater with high than low CD34-positive MVD (CD34MVD; 7.96±4.27 vs 5.64±2.99; p=0.032). High CD34MVD was associated with increased TR expression in patients with APTT<28.5 than ≥28.5 s. In patients with high CD34MVD, the number of TR-positive microvessels was greater with APTT<28.5 than ≥28.5 s (n=17 vs n=6; p=0.002), and APTT and TR expressions were negatively correlated for patients with APTT<28.5 s (r(2) =-0.472, p=0.023). For patients with APTT<28.5 s, the cumulative survival rate was poorer with high than low TRMVD (p=0.027). On multivariate analysis, tumour size (p=0.006), tumour stage (p=0.004) and TRMVD (p=0.024) were independently associated with survival for patients with APTT<28.5 s. TRMVD had the second highest HR.
Conclusion: TR positivity in VECs may be an adverse prognostic factor for patients with ESCC and increased coagulation state. TR expression in VECs might be related to angiogenesis in ESCC.
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http://dx.doi.org/10.1136/jclinpath-2011-200568 | DOI Listing |
Blood
January 2025
Cleveland Clinic, Cleveland, Ohio, United States.
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January 2025
University of North Carolina at Chapel Hill, Chapel Hill, North Carolina, United States.
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January 2025
Department of Dermatology, The First Affiliated Hospital of Ningbo University, Ningbo, Zhejiang Province, China.
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Department of Marine Biotechnology & Genetic Engineering, Bangabandhu Sheikh Mujibur Rahman Maritime University, Dhaka, Bangladesh.
Due to their superior physicochemical features, chitosan thermosensitive hydrogels are multipurpose platforms that are frequently used in the biomedical industry. Many investigations have been conducted recently to modify their pore dimensions, expansion, biodegradability, stimulus-reaction characteristics, and other characteristics in order to better tailor them to the complex craniofacial tissues. They have been the focus of various studies that have attempted to load biological cargos for therapeutic and regenerative uses in the oro-facial tissues.
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January 2025
Cancer Hospital of Dalian University of Technology, Dalian R&D Center for Stem Cell and Tissue Engineering, Dalian University of Technology, Dalian, China.
Osteochondral damage, caused by trauma, tumors, or degenerative diseases, presents a major challenge due to the limited self-repair capacity of the tissue. Traditional treatments often result in significant trauma and unpredictable outcomes. Recent advances in bone/cartilage tissue engineering, particularly in scaffold materials and fabrication technologies, offer promising solutions for osteochondral regeneration.
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