Urachal remnants in a urinary bladder with non-invasive papillary carcinoma and in situ urothelial carcinoma

Author(s):  
Sofia Pappa
2018 ◽  
Vol 472 (5) ◽  
pp. 749-758 ◽  
Author(s):  
Isabella Barth ◽  
Ursula Schneider ◽  
Tobias Grimm ◽  
Alexander Karl ◽  
David Horst ◽  
...  

2021 ◽  
Author(s):  
Shinsuke Oda ◽  
Masayoshi Fujisawa ◽  
Li Chunning ◽  
Toshihiro Ito ◽  
Takahiro Yamaguchi ◽  
...  

Aberrant activation of the Ras/Raf/ERK (extracellular-signal-regulated kinase)-MAPK (mitogen-activated protein kinase) pathway is involved in the progression of cancer, including urothelial carcinoma; but the negative regulation remains unclear. In the present study, we investigated pathological expression of Spred2 (Sprouty-related EVH1 domain-containing protein 2), a negative regulator of the Ras/Raf/ERK-MAPK pathway, and the relation to ERK activation and Ki67 index in various categories of 275 urothelial tumors obtained from clinical patients. In situ hybridization demonstrated that Spred2 mRNA was highly expressed in high-grade non-invasive papillary urothelial carcinoma (HGPUC), and the expression was decreased in carcinoma in situ (CIS) and infiltrating urothelial carcinoma (IUC). Immunohistochemically, membranous Spred2 expression, important to interact with Ras/Raf, was preferentially found in HGPUC. Interestingly, membranous Spred2 expression was decreased in CIS and IUC relative to HGPUC, while ERK activation and the expression of the cell proliferation marker Ki67 index were increased. HGPUC with membranous Spred2 expression correlated significantly with lower levels of ERK activation and Ki67 index as compared to those with negative Spred2 expression. Thus, our pathological findings suggest that Spred2 negatively regulates cancer progression in non-invasive papillary carcinoma possibly through inhibiting the Ras/Raf/ERK-MAPK pathway, but this regulatory mechanism is lost in cancers with high malignancy. Spred2 appears to be a key regulator in the progression of non-invasive bladder carcinoma.


1998 ◽  
Vol 39 (1) ◽  
pp. 2-9 ◽  
Author(s):  
K. Svanberg ◽  
I. Wang ◽  
S. Colleen ◽  
I. Idvall ◽  
C. Ingvar ◽  
...  

Purpose: the detection of malignant tumours relies on a variety of diagnostic procedures including X-ray images and, for hollow organs, endoscopy. the purpose of this study was to present a new technique for non-invasive tumour detection based on tissue fluorescence imaging Material and Methods: A clinically adapted multi-colour fluorescence system was employed in the real-time imaging of malignant tumours of the skin, breast, head and neck region, and urinary bladder. Tumour detection was based on the contrast displayed in fluorescence between normal and malignant tissue, related to the selective uptake of tumour-marking agents, such as haematoporphyrin derivative (HPD) and δ-amino levulinic acid (ALA), and natural chromophore differences between various tissues. in order to demarcate basal cell carcinomas of the skin, ALA was applied topically 4–6 h before the fluorescence investigation. for urinary bladder tumour visualisation (transitional cell carcinoma of different stages including carcinoma in situ), ALA was instilled into the bladder 1–2 h prior to the study. Malignant and premalignant lesions in the head and neck region were imaged after i.v. injection of HPD (Photofrin). Finally, the extent of in situ and invasive carcinomas of the breast was investigated in surgically excised specimens from patients that received a low-dose injection of HPD 24 h prior to the study. the tumour imaging system was coupled to an endoscope. Fluorescence light emission from the tissue surface was induced with 100-nslong optical pulses at 390 nm, generated from a frequency-doubled alexandrite laser. with the use of special image-splitting optics, the tumour fluorescence, intensified in a micro-channel plate, was imaged in 3 selected wavelength bands. These 3 images were processed together to form a new optimised-contrast image of the tumour. This image, updated at a rate of about 3 frames/s, was mixed with a normal colour video image of the tissue Results: A clear demarcation from normal surrounding tissue was found during in vivo measurements of superficial bladder carcinoma, basal cell carcinoma of the skin, and leukoplakia with dysplasia of the lip, and in in vitro investigations of resected breast cancer Conclusions: the initial clinical experience of using multi-colour fluorescence imaging has shown that the technique has the potential to reveal malignant tumour tissue, including non-invasive early carcinoma and also precancerous tissue. Further investigations are needed to fully develop the method


2001 ◽  
Vol 38 (1) ◽  
pp. 113-116 ◽  
Author(s):  
G. Borzacchiello ◽  
V. Ambrosio ◽  
P. Galati ◽  
F. Poggiali ◽  
A. Venuti ◽  
...  

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