Chromophobe renal cell carcinoma with focal papillary configuration, nuclear basaloid arrangement and stromal osseous metaplasia containing fatty bone marrow element.
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Recently, the characterization of mucinous tubular and spindle-cell carcinoma (MTSCC) has been established. MTSCC predominantly occurs in females. This tumor is histologically characterized by eosinophilic cytoplasm, elongated and anastomosing tubules, myxomatous stroma and low-grade nuclear cytology. Proliferation of spindle cells or foci of clear cells are also observed. Histochemically, the myxomatous stroma exhibits a positive reaction for alcian blue and colloidal iron stainings. Ultrastructurally, short microvilli are focally observed and junctional complexes are present. Recently, multiple losses of chromosomes 1, 4, 6, 8, 9, 13, 14, 15 and 22 in MTSCC have been elucidated by using comparative genomic hybridization. The prognosis of MTSCC is generally favorable, but some cases may show local recurrence or metastasis. Some cases with MTSCC seem to show overlapping histology with low-grade collecting-duct carcinoma. Therefore, further investigation will be needed to elucidate pathobiological characteristics of MTSCC.
The presence of myofibroblasts has been elucidated in neoplastic capsules of various organs. In the present article, we examine the presence of myofibroblasts in the capsule of renal cell carcinoma (RCC) and discuss the origin of the myofibroblasts. Nineteen renal tumors (conventional RCC, n=17; chromophobe RCC, n=2) with evident and totally surrounded fibrous capsule were selected. Abundant myofibroblasts were immunohistochemically observed in the capsule of the RCCs. These findings were confirmed by electron and immunoelectron microscopic studies of three conventional RCCs. Type III and I collagens were predominant in the outer and inner layers of the RCC capsule, respectively. The cytoplasm of the tubular epithelial cells in the tissue surrounding the neoplastic capsule stained positively for transforming growth factor (TGF)-beta 1. In situ hybridization detected type I collagen mRNA in myofibroblasts of the capsule. Myofibroblasts may participate in the capsular formation of conventional and chromophobe RCCs through the collagen production.
Renal oncocytomas and chromophobe renal cell carcinomas (RCCs) share a common phenotype and both originate from the intercalated cells of the collecting duct. This makes it very difficult to differentiate between the two tumors immunohistochemically. Therefore, we studied the results of immunohistochemistry focusing on certain characteristic structures that are occasionally present in renal oncocytomas. We carried out Hale's colloidal iron staining and immunohistochemistry for various cytokeratins (cytokeratins 7, 8, 10, 10/13, 14, 18, 19 and 20, and AE1/AE3) in four oncocytomas and six chromophobe RCCs. In addition, one renal oncocytoma and one chromophobe RCC were studied using electron microscopy. Two renal oncocytomas and one chromophobe RCC were completely unstained by colloidal iron. There was no evident difference between the immunohistochemical characteristics of oncocytomas and those of chromophobe RCCs. However, in all four renal oncocytomas we identified intracytoplasmic ring-like positive reactions for some cytokeratins (at least 3 antigens of cytokeratins 7, 8 and 19, and AE1/AE3), which corresponded ultrastructurally to the intracytoplasmic lumens (ICLs). In contrast, no such structures were found in any of the chromophobe RCCs using the antibodies employed. Therefore, immunohistochemical identification of ICLs by cytokeratin typing may be useful for differentiating between renal oncocytomas and chromophobe RCCs and be more sensitive in this respect than colloidal iron staining.
Renal oncocytomas account for about 3-7% of all renal tumors. Macroscopically, the cut surface of the tumor is generally mahogany brown or dark red in color. A central scar is occasionally observed. Histologically, tumor cells with finely granular cytoplasm proliferate in an edematous, myxomatous or hyalinized stroma with a nested, tubulocystic, solid or trabecular pattern. Ultrastructurally, tumor cells contain many mitochondria with lamellar cristae. Mitochondrial DNA alterations are consistently observed in renal oncocytomas. In chromosomal analysis, renal oncocytomas comprise a heterogenous group. Combined loss of chromosomes Y and 1, rearrangements affecting band 11q12-13, involvement of 12q12-13, loss of 14q, and the lack of combination of LOH at specific chromosomal sites have been reported. In differential diagnosis, the histological separation from chromophobe RCCs is of great importance. In such a setting, ultrastructural or chromosomal analysis is very useful. However, there are several findings suggesting a close relationship between chromophobe RCC and oncocytoma. First, both tumors share a phenotype of intercalated cells of the collecting duct system and mitochondrial DNA alterations. Second, some cases of coexistent oncocytoma and chromophobe RCC, designated as "renal oncocytosis", have recently been reported. Third, oncocytic variants of chromophobe RCCs that have similar ultrastructural features to those of oncocytomas have been reported. Fourth, the existence of chromophobe adenoma, which is the benign counterpart of chromophobe RCC and shows loss of chromosomes Y and 1, has recently been suggested. Finally, although almost all oncocytomas behave in a benign fashion, some cases of oncocytoma that caused metastasis or resulted in death have also been reported. Therefore, further studies are needed to resolve these problems and also to elucidate the genetic mechanisms responsible for the occurrence of oncocytomas.
The von Hippel-Lindau tumor-suppressor protein (pVHL) forms a protein complex (VCB-Cul2) with elongin C, elongin B, Cul-2, and Rbx1, which functions as a ubiquitin-protein ligase (E3). The alpha-subunits of the hypoxia-inducible factors have been identified as targets for the VCB-Cul2 ubiquitin ligase. However, a variety of cellular defects caused by the depletion of pVHL cannot be explained solely by the ubiquitin-mediated degradation of hypoxia-inducible factor-alpha. We show here that a member of the atypical protein kinase C (PKC) group, PKClambda, is ubiquitinated by the pVHL-containing E3 enzyme. An active PKClambda mutant is ubiquitinated more extensively than wild-type PKClambda in HEK293 cells, and the ubiquitination is further enhanced by the overexpression of pVHL. The activation of wild-type PKClambda by serum stimulation of cells enhances the ubiquitination of the protein, supporting the notion that active PKClambda is preferentially ubiquitinated by VCB-Cul2 ubiquitin ligase. Furthermore, we show that PKClambda can be ubiquitinated in vitro in a cell-free ubiquitination assay using purified recombinant components including VCB-Cul2. Given the known function of aPKC in the regulation of cell polarity and cell growth, PKClambda may be a target of pVHL in its function as a tumor suppressor.
In spite of the general recognition of von Hippel-Lindau (VHL) as a tumor suppressor gene, the physiological and pathological importance of VHL protein in cell growth regulation and tumorigenesis remains unclear. Here we show that in normal human renal proximal tubule epithelial cells (RPTEC), the steady-state amount of VHL protein is strictly regulated by cell density. The cellular VHL content is more than 100-fold higher in dense cultures than in sparse cultures. The increase in VHL protein at high cell density was also observed for NIH3T3 fibroblasts, suggesting the generality of the phenomenon. The growth rates of renal cell carcinoma cells lacking an intact VHL gene and their derivatives with wild-type or mutant VHL expression vector do not differ significantly when they are growing in log-phase. Importantly, however, there is a difference when they reach confluency: cells lacking wild-type VHL grew continuously, while cells expressing exogenous VHL protein showed relatively limited cell growth. Using an ecdysone-inducible VHL expressing cell line, we also show that the growth inhibition at high cell density can be released by attenuating the VHL expression. Taken together, we propose that VHL protein functions as a growth suppressor at high cell density, and this might be the basis of the tumor suppressor function of VHL.
Mutation of the von Hippel-Lindau (VHL) gene is responsible for familial and sporadic renal cell carcinomas as well as for cancers in many other organs. According to recent studies, the VHL protein (pVHL) is a multifunctional tumor suppressor protein associated with the inhibition of angiogenesis, cell cycle exit, fibronectin matrix assembly, and proteolysis. To examine whether pVHL affects other important cellular events such as morphogenesis, adhesion, cytoskeletal organization, or motility, we introduced the VHL gene into human kidney and lung cancer cells and compared its effects with those in parental cells. Compared with non-pVHL-expressing cells, the morphogenesis of pVHL-expressing cells was remarkably changed, with cells having many focal adhesions and stress fibers and a spreading morphology. The attachment ability of non-pVHL-expressing cells was significantly increased by expression of pVHL. Additional studies showed that vinculin was translocalized from the cytoplasm to the cell membrane by the pVHL expression, indicating induction of focal adhesion formation by pVHL. Furthermore, motility of the pVHL-expressing cells was significantly reduced compared with that of non-pVHL-expressing cells (P < 0.05). These results indicate that pVHL stabilized actin organization and inhibited cell motility through focal adhesion formation. Thus, pVHL plays a crucial role in cytoskeletal organization and motility and functions as a unique suppressor protein in malignant cells.
The construction of the hepatocyte tight junction is one of the most important events during liver regeneration leading to the reorganization of the bile canaliculi and the repolarization of hepatocytes after cell division. To understand this event at the molecular level, we examined the expression of tight junction proteins by Western blot analysis and their cellular localization by immunofluorescence microscopy in regenerating rat liver after two-thirds hepatectomy. The levels of tight junction components such as claudin-3, ZO-1 and atypical protein kinase C (PKC)-specific interacting protein (ASIP) increased two- to three-fold over control levels in coordination with a peak 2-3 days after partial hepatectomy, whereas occludin levels remained unchanged. The bile canaliculi outlined by tight junction components and actin filaments reveal significant morphological changes from 2-3 days after partial hepatectomy. During this period, claudin-3/ZO-1 and ASIP/ZO-1 were nearly co-localized, whereas occludin was locally reduced or almost absent on the bile canaliculi outlined by ZO-1 staining. The uncoupled localization of F-actin and tight junction components was often observed. The function of hepatocytes, as revealed by the serum bile acids level, was distorted temporally at an early stage of regeneration but mostly restored 3 days after partial hepatectomy. These observations suggest that the de novo construction of tight junctions proceeds mainly 2-3 days after partial hepatectomy in parallel with the cell polarization required for hepatocyte function. However, the complete normalization of the composition of the tight junction components, such as occludin and the association with F-actin, requires additional time, which may support the regeneration of fully polarized normal hepatocytes.
Primary adenocarcinoma of the urinary bladder has shown an extremely poor response to radiation or chemotherapy. Therefore, radical surgery is the only therapeutic treatment for it. A case report is presented of a primary advanced adenocarcinoma of the urinary bladder invaded into the uterus with distant metastases which responded completely to systemic combination chemotherapy including tegafur-uracil. The patient was a 53-year-old woman with a history of asymptomatic macrohematuria. She was treated with the combination of cisplatinum, mitomycin-C, etoposide and tegafur-uracil chemotherapy. After four courses of the chemotherapy, computed tomography showed marked regression of the primary tumor of the urinary bladder and the complete disappearance of the distant metastases in the liver, lung and para-aortic lymph node. Subsequently, she underwent radical cystectomy and cutaneous ureterostomy. Pathologically, no viable cancer cells were detected. Three years after the operation, she has no evidence of disease recurrence. Treatment of advanced adenocarcinoma of the urinary bladder by this combination chemotherapy is of benefit.
CD9 is a glycoprotein that is abundant in hematopoietic cells. Recently, it has been reported that CD9 is also present in the human kidney. In this article, we investigated the expression of CD9 using an immunohistochemical technique. We also studied the expression of CD9 protein and messenger RNA (mRNA) in tissue samples of some renal tumors using immunoblotting and reverse-transcription polymerase chain reaction (RT-PCR) analysis. Immunohistochemically, all tumors of papillary and chromophobe renal cell carcinomas (RCCs) and oncocytomas expressed CD9. In addition, CD9 was expressed in 31 of 66 conventional RCCs and 1 of 4 collecting duct carcinomas. On immunoelectron microscopy, CD9 was identified on the plasma membrane of a conventional RCC. The presence of CD9 protein in normal kidneys and various renal tumors, except for a collecting duct carcinoma and an oncocytoma, was confirmed by immunoblotting. On RT-PCR analysis, the expression of CD9 mRNA was observed in 1 normal kidney, 2 conventional RCCs, and 1 oncocytoma. The frequency of immunohistochemical CD9 positivity was significantly higher in papillary and chromophobe RCCs than in collecting duct carcinomas and conventional RCCs, respectively. These results suggest that CD9 may be a beneficial marker in the differential diagnosis between papillary RCCs and collecting duct carcinomas and also between chromophobe and conventional RCCs.
Paxillin is a cytoskeletal protein that was recently identified as a component of focal adhesions and links between F-actin and integrin. In this study, 91 renal tumors--65 conventional renal cell carcinomas (RCCs), 14 papillary RCCs, 6 chromophobe RCCs, 4 collecting duct carcinomas, 2 oncocytomas--were investigated for the immunohistochemical expression of paxillin. In a normal kidney, paxillin was predominantly expressed in the cytoplasm of distal tubules, loops of Henle, collecting ducts, and vascular smooth muscle cells. In all of the chromophobe RCCs and oncocytomas, strong expression of paxillin was observed in the tumor cytoplasm. In contrast to these tumors, conventional RCCs, papillary RCCs, and collecting duct carcinomas showed negative reactions for paxillin except for one case in each subgroup with weak reactivity. An immunoblot analysis confirmed the presence of paxillin in healthy kidney, chromophobe RCC, and oncocytoma. These data suggest that paxillin possibly plays a role in signal transductions as a focal adhesion intervening between tumor cells and the extracellular matrix in renal tumors with collecting duct phenotypes such as chromophobe RCCs and oncocytomas, but not in conventional RCCs. In addition, paxillin may be an available marker in distinguishing chromophobe RCCs from conventional or papillary RCCs.
Although reduction in the serum prostate specific antigen (PSA) correlates with clinical outcome for high dose rate Iridium-192 (HDR Ir-192) brachytherapy, it takes a long latency period. We investigated numerical chromosome changes of prostatic cancer during the pre- and post-treatment periods of HDR Ir-192 brachytherapy (and external beam radiotherapy), using fluorescence in situ hybridization (FISH) to clear the effect of treatment in early phase. Transitional changes in the frequency of aneuploidy for chromosomes 7, 8, 10, 12, 16, X, and Y in prostate cancer during the pre- and post-treatment periods were observed. Gains of chromosomes 7, 8 and 12 were noted in the pre-treatment samples (4 out of 12 cases in chromosomes 7 and 8; 1 out of 12 cases in chromosome 12), while a notable reduction in the number of cells with extra copies of these chromosomes was observed in post-treatment specimens. This change appears earlier than the reduction in the value of prostate specific antigen (PSA) and strongly reflects the effect of HDR brachytherapy with external beam radiotherapy in localized prostate cancer. Decrease in the number of cells with high ploidies of chromosomes 7, 8 and 12 at 12 weeks after treatment may predict clinical effects of radiation therapy, which may explain the radiation dependency of localized prostate cancer cells.
There have been few detailed studies conducted on the cell population in relation to cytogenetic changes between the pre- and post-treatment periods in patients with prostate cancer. We investigated numerical chromosome changes associated with anti-androgen therapy, using fluorescence in situ hybridization (FISH). FISH using chromosome-specific centromeric probes was used to assess transitional changes in the frequency of aneuploidy for chromosomes 7, 8, 10, 12, 16, X, and Y in prostate cancer during the pre- and post-treatment periods. Gains of chromosomes 7, 8 and 12 were notable in the pre-treatment samples (8 out of 9 cases in chromosome 7; 8 out of 9 cases in chromosome 8; 7 out of 9 cases in chromosome 12), while a notable reduction in the number of cells with extra copies of these chromosomes was observed in post-treatment specimens. Other chromosomes did not show noticeable change in their FISH signals at each phase of clinical treatment in all 9 cases. Changes in cell number with high ploidies of chromosome 7, 8 and 12 reflect the clinical effects of anti-androgen therapy at the early phase, which might explain the androgen dependency of metastatic prostate cancer cells.
PURPOSE: We tried to improve the materials and methods of high-dose rate Iridium-192 brachytherapy for localized prostate cancer and evaluated the stress during the treatment in 20 patients with whom the therapy was performed. MATERIALS AND METHODS: Rigid applicators made of stainless steel of 1.6 mm in diameter were indwelt with a template as usual for 30 hours in 14 patients (group A). Flexible applicators made of polyoxymethylene rosin (POM) of 2.0 mm in diameter were indwelt without a template for 30 hours after the applicator insertion in 6 patients (group B). We made inquiries about lumbago, inconvenience and necessity of assistant help and sleep in the course of therapy, and urinary incontinence and erectile function after the course of therapy as the QOL. RESULTS: The stress during the course of therapy in the patients of group B was obviously less than that of group A. There were no significant differences in urinary incontinence and erectile function after the course of therapy between group A and B. CONCLUSION: In this study, our trial successfully reduced the stress during the course of therapy in the patients with localized prostate cancer in the course of high-dose rate Iridium-192 brachytherapy.
PURPOSE: We report our technique and also preliminary results in the cases with localized prostate cancer treated by the combination of high-dose rate Iridium-192 (HDR-Ir192) brachytherapy and external irradiation. MATERIALS AND METHODS: From June 1999 to August 2000, 17 patients were treated by the combination of HDR-Ir 192 and external beam. The mean age of patients was 72 years (range, 48-81 years). The clinical stage was B1 in 5, B2 in 7 and C (no cancer with seminal vesicle) in 5 cases. Of 10 patients without neoadjuvant hormonal therapy, the median initial pretreatment PSA was 15.3 ng/ml (6.93-222.32 ng/ml). The treatment was given by HDR-Ir 192 brachytherapy (6 Gy x 3 times/2 days) and external beam irradiation (40 or 45 Gy). The brachytherapy was given using TRUS guided percutaneously inserted temporary needles with a high dose rate remote afterloading control. Local control was evaluated by digital rectal examination. TRUS-guided biopsies and serum PSA evaluations. Follow-up ranged from 2 to 14 months, with a median of 8 months. RESULTS: In 4 (40.0%) of 10 patients without neoadjuvant hormonal therapy the level of serum PSA was decreased to less than 4.0 ng/ml within 3 months after the therapy. The effective grade in the biopsy specimens of 8 patients without neoadjuvant hormonal therapy was Grade Ob in 4, Grade 1 in 1, Grade 3 in 3 cases at 3 months after the therapy. No severe intra- or peri-operative complications occurred. CONCLUSION: The combined radiotherapy treatment is safe and effective for use in the patients with localized prostate cancer. However, more comprehensive studies involving long-term follow-up and great numbers of the cases with localized prostate cancer treated by the combination of HDR-Ir 192 brachytherapy and external irradiation will be necessary to determine whether this therapy contributes to better prognosis.
A 69-year-old man was referred to our department for a cystic tumor, 4.0 cm in diameter, in the lower portion of the right kidney, which was detected by computed tomography. The patient had been admitted to the department of surgery in our hospital for treatment of ileus caused by transverse colon cancer. With a diagnosis of cystic renal cell carcinoma. T2N0M0, in situ non-ischemic tumor enucleation was performed using a microwave tissue coagulator (Microtaze, Heiwa Electronics Industry Inc., Tokyo). The enucleation was accompanied by a defect of the renal pelvis, but it was easily repaired. The operation time was 120 minutes and blood loss was 110 cc. The histological diagnosis was renal cell carcinoma, pT2N0M0V1, expansive, alveolar type, clear cell subtype, G1 > G2. Diagnostic imaging done postoperatively showed no sign of damage to renal function. At the present time, the patient has been disease-free with interferon-alpha for 12 months and is being followed on an outpatient basis. In this report, the advantages of nephron-sparing surgery, especially in situ non-ischemic tumor enucleation using a microwave tissue coagulator for renal tumor are discussed. In particular, the technique of performing tumor enucleation with repair of the defect of renal pelvis used in this case may extend the indication of nephron-sparing surgery.
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