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T Burchardt

Publications and source records attributed to T Burchardt.

26 records · Page 2Linked to original sources

Vascular anatomy of the rat ventral prostate.

The rat ventral prostate gland is a model tissue to study the effects of androgenic steroids on prostate cells. Recent reports suggest that the prostatic vascular system is a primary target of androgen action in this tissue. In order to better understand how the vascular system of the ventral prostate supports the tissue in an androgenically normal adult male rat we utilized a variety of microscopic imaging techniques to more fully characterize its structural anatomy and its interaction with other prostatic cell types. Vascular corrosion casts were produced from the mature ventral prostate glands of rats. These casts were analyzed by scanning electron microscopy (SEM) to describe gross and fine details of the prostate vascular anatomy. Fixed thin sections of ventral prostates were immunostained with antiFactor XIII and analyzed by light microscopy for the presence of capillary elements within the prostatic glands. Other sections were directly analyzed by transmission electron microscopy (TEM) to describe the anatomical relationship between the capillaries and the prostatic ducts and their associated glands. The rat ventral prostate is supplied with blood by branches of the inferior vesical artery which enters the apex of the tissue from the base of the urinary bladder. Visualization of the prostatic vascular network under SEM shows that this major vessel is found on the posterior-medial surface of the tissue (closest to the bladder). This surface also has numerous serpentine vessels that appear to facilitate a stable blood supply to the prostate in accommodation of urinary bladder distension. Examination of the opposing surface of the casts allowed a crude description of the structure of the prostatic ductal system with the distal tips of the ducts (containing the prostate glands) oriented towards the anterior-lateral surface of the tissue. On this surface, one can discern a series of adjacent basket-shaped vascular structures of distributing arterioles that supply a dense complex of fine capillaries to the glands. Analysis of the interface of the prostatic ductal system with its vascular elements by light microscopy and TEM shows that some capillaries lie immediately adjacent to the basement membranes of the glands while others can be found interspersed within the myofibroblast layer surrounding the ducts and glands. Veins accompany the arteries and combine with the superior vesical before entering the common iliac vein. This study gives a comprehensive and detailed view of the microvasculature of the rat ventral prostate gland. The findings here will provide the basis for future experiments to evaluate how the ventral prostate vascular system changes in response to androgenic manipulation and to other pathological conditions.

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The microvascular architecture of the rat vagina revealed by image analysis of vascular corrosion casts.

BACKGROUND: Female sexual dysfunction is a common but poorly understood human condition. One of the aspects hindering progress in this area is the lack of appropriate animal models that can be used to study the complex factors involved in this sexual health problem. Recently, attention has focused on the probable role of vascular dynamics of the genital organs and their potential for impact on female sexuality. The objective of this study was to provide a better description of the vascular anatomy of the female rat vagina and external genital organs in an attempt to better develop this as an animal model to study female sexual dysfunction. METHODS: Young female (nonestrous) virgin rats were anesthetized, the abdominal aorta was cannulated, and the distal vasculature was flushed and fixed in vivo for histological studies or for subsequent infusion with Mercox resin for vascular corrosion casting. Vascular corrosion casts of the external genitalia (vagina and vulva) were studied using a scanning electron microscope (SEM). Fixed tissue specimens were also embedded and sectioned for histochemical and immunohistochemical analysis. RESULTS: Scanning electron microscopy imaging allowed a description of the vascular and microvascular system of the nonestrous female rat genitalia. Major feeding vessels were located laterally in the muscular and serosal layers of the vagina with a complex system of interanastomosing collaterals between these large lateral trunks. The sub-epithelial region of the vaginal wall contains a dense and rich network of capillaries that perfuse the epithelium. These data were corroborated by two- dimensional histochemistry and immunostaining for endothelial and smooth muscle cells on paraffin-embedded thin sections of the female vagina and vulva. CONCLUSION: This study provides the first detailed three-dimensional en bloc view of the macro- and microvascular anatomy of the female rat vagina and vulva. The findings suggest an active interaction between the microvasculature and the epithelial cells of the vaginal wall. This study will provide the basic anatomic groundwork for future experiments on perturbations of the vascular system of the rat female genitalia in response to hormonal stimuli and various disease states.

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Expression of VEGF splice variants 144/145 and 205/206 in adult male tissues.

Currently, at least five different mRNA species encoding vascular endothelial growth factor-A (VEGF-A) have been characterized. These variants result from alternative splicing of the VEGF-A transcript and encode human isoforms of VEGF protein of 121, 145, 165, 189, and 206 amino acids. In the rat, a similar profile of VEGF-A splice variants has been described, each encoding one fewer amino acid than the human species. Studies of mammalian tissues have shown that these mRNA isoforms vary in abundance. Whereas VEGF 188/189, 164/165, and 120/121 (rat/human, respectively) are the predominant forms expressed in most tissues and cells examined, VEGF 144/145 and 205/206 are rare variants. Previously, VEGF 144/145 had been detected only in placental and uterine tissues and endometrial carcinoma cell lines, whereas VEGF 205/206 was detected only in fetal liver and placenta. Using an RT-PCR technique, cDNA cloning, and sequencing, we have detected and confirmed the presence of mRNA encoding VEGF 144/145 and 205/206 in both adult rat lung and penis. Therefore, these low-abundance VEGF splice variants have a more diverse expression pattern than originally predicted.

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Expression of messenger ribonucleic acid splice variants for vascular endothelial growth factor in the penis of adult rats and humans.

Erectile dysfunction is often associated with problems in vascular perfusion to the erectile components of the penis. In order to better understand the factors that control vascular formation and perfusion in the erectile tissues of the penis, we have begun to characterize the expression of vascular endothelial growth factor (VEGF) in penis tissues. VEGF is one of several polypeptides that have significant angiogenic activity in vitro and in vivo. Extensive characterization of the VEGF gene and its products has shown that several different mature mRNA transcripts exist, originating from alternative splicing of the basic VEGF transcript. These variant transcripts can encode peptides with different biological activities. Penile tissue was obtained from adult rats and from human patients undergoing penile prosthesis implantation. Analysis of the forms of VEGF transcripts was performed using a reverse transcription-polymerase chain reaction technique with primer pairs derived from the first and eighth exon of the VEGF gene. The expression levels of the various isoforms in the rat penis were then quantified using RNase protection assays. Four previously described splice variants of VEGF mRNA (VEGF 120, 144, 164, 188) were detected in rat and human penile tissues. In contrast to what is seen in the rat lung, where the most abundant form of VEGF mRNA is the 188 splice isoform, VEGF 164 is the most abundant transcript detected in the penis. Finally, sequence analysis of numerous VEGF cDNA clones obtained from the rat penis demonstrated the presence of a previously undescribed VEGF splice variant that could give rise to a protein of 110 amino acid residues (VEGF 110, GenBank accession no. AF080594). In summary, a number of VEGF mRNA isoforms are expressed in the rat and human penis, with the splice variant encoding a 164-amino acid protein present in greatest abundance. This study is a prelude to attempts to genetically manipulate VEGF expression in the penis as a therapy for erectile dysfunction.

Adult↗

Can perineural invasion on prostate needle biopsy predict prostate specific antigen recurrence after radical prostatectomy?

PURPOSE: We evaluated the role of perineural invasion identified on prostate needle biopsy as a predictor of prostate specific antigen (PSA) recurrence after radical prostatectomy. MATERIALS AND METHODS: Between 1993 and 1998 radical prostatectomy was performed in 319 consecutive patients. Prostate needle biopsies were reviewed in all cases. We compared perineural invasion with other preoperative parameters, including digital rectal examination, PSA and biopsy Gleason score, for the ability to predict PSA recurrence with recurrence defined as any serum PSA level greater than 0.2 ng./ml. RESULTS: Perineural invasion was identified on 77 of 319 preoperative prostate biopsies (24%). There was PSA recurrence in 46 patients (14.4%) at a mean followup of 25.4 months (range 0.2 to 62.1). Perineural invasion statistically correlated with PSA recurrence. Kaplan-Meier analysis revealed disease-free survival rates of 24 versus 64% when perineural invasion was and was not present in the prostate biopsy (p = 0.0003, log rank 12.92). Multivariate analysis demonstrated that perineural invasion (p = 0.012) and PSA (p = 0.005) were independent preoperative predictive factors of PSA recurrence. When perineural invasion was compared with postoperative parameters, including disease stage, surgical margins and seminal vesicle invasion, it was not an independent predictor because it closely correlated with tumor stage. CONCLUSIONS: Perineural invasion on preoperative prostate needle biopsy is a strong independent predictor of PSA recurrence in patients in whom prostate cancer was treated with radical prostatectomy.

Adult↗

[Columbia University experience of detection of circulating cells by RT-PCR PSA in prostate cancer as a predictive factor of stage and biochemical recurrence].

OBJECTIVES: The Columbia University experience of RT-PCR PSA as a predictive factor of stage and biochemical recurrence is reviewed by trying to explain its differences. PATIENTS AND METHODS: 319 patients were included between January 1993 and March 1998. Radical prostatectomy was performed in all patients by the same surgeon. The RT-PCR protocol has been previously described (Katz et al., Urology, 1994). Biochemical recurrence was defined by a PSA greater than or equal to 0.2 ng/ml. RESULTS: Histological examination diagnosed 218 pT2 and 101 pT3 tumours. Thirty-four of the 218 pT2 patients (16%) had a positive RT-PCR versus 51 of the 101 pT3 patients (51%, p < 0.001). Analysis of Kaplan-Meier curves showed an 84% recurrence-free survival when RT-PER was negative versus 47% when RT-PCR was positive (Log-rank test, p = 0.0002). Multivariate analysis showed that independent predictive factors of biochemical recurrence were stage (p = 0.004), Gleason score estimated on the operative specimen (p = 0.010) and serum PSA (p = 0.047); RT-PCR (p = 0.075), strongly correlated with stage, was not an independent predictive factor. By exclusively comparing preoperative parameters, PSA (p = 0.004) and RT-PCR (p = 0.006) were found to be independent predictive factors compared to digital rectal examination (p = 0.371) and Gleason score on biopsies (p = 0.076). CONCLUSION: In this institution, RT-PCR PSA is a predictive parameter of stage and biochemical recurrence. No consensus has yet been reached in the literature concerning the reference protocol, as each team has developed its own RT-PCR technique applied to its own patient population. Comparison of results is therefore difficult.

Adult↗

Castration induces acute vasoconstriction of blood vessels in the rat prostate concomitant with a reduction of prostatic nitric oxide synthase activity.

PURPOSE: Previous studies demonstrating a rapid and drastic reduction of blood flow to the rat prostate gland resulting from castration caused us to consider the influence of castration on the state of vascular constriction and on the activity of the vascular tone-regulating factors (nitric oxide synthase and cyclic GMP) in the rat prostate. MATERIALS AND METHODS: Sections of ventral prostate glands obtained from intact and castrated rats were analyzed for the mean areas within smooth muscle-coated blood vessels using a computerized microscopic image analysis system. Nitric oxide synthase (NOS) levels were measured in prostatic extracts from unoperated or castrated rats using an enzyme assay system that measures conversion of 3H-L-arginine to citruline. Cyclic GMP levels were measured in prostatic extracts from unoperated or castrated rats using a competitive radioimmunoassay system. RESULTS: The mean area within ventral prostate smooth muscle-coated blood vessels was reduced 39% at 24 hours after castration (p = 0.039) and 47.7% at 48 hours after castration (p = 0.039). NOS activity measured in prostatic extracts was reduced 38% at 24 hours (p = 0.0012) and 51.6% at 36 hours after castration (p = 0.0001) compared with the control group of noncastrated rats. Finally, prostatic cGMP levels were reduced 55.8% (p = 0.0018) at 36 hours after castration when compared with controls rats. CONCLUSION: Within 24 hours after castration, the lumenal areas of smooth muscle-coated blood vessels in the rat prostate gland were found to be significantly reduced. This vasoconstriction was associated with a significant reduction of prostatic NOS activity as well as a reduction in the prostatic levels of the NOS co-factor, cGMP. Thus, acute vasoconstriction is a prominent early event associated with rat prostate regression in response to castration and likely contributes to the regression of the tissue.

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Transdifferentiation of prostate cancer cells to a neuroendocrine cell phenotype in vitro and in vivo.

PURPOSE: To better understand the source of neuroendocrine cells associated with human prostate cancer progression, we studied the ability of a cultured prostate cancer cell line, LNCaP, to transdifferentiate into neuroendocrine-like cells in vitro and in vivo. MATERIALS AND METHODS: Cyclic AMP concentrations were measured in extracts of LNCaP cells cultured in the presence of normal or hormone-deficient medium (containing charcoal-stripped serum) with the use of an immunoassay. Quantitative RT-PCR procedures were used to determine whether hormone depletion affects TGF-beta2 mRNA expression. Western blotting procedures (for neuron specific enolase [NSE]) were used to determine whether TGF-beta2 supplementation or antibody neutralization might affect the ability of cultured LNCaP cells to transdifferentiate to neuroendocrine-like cells. Finally, tumors formed from LNCaP cells xenografted into male nude mice were evaluated for the presence of neuroendocrine cells (prior and subsequent to castration of the host mouse) using an immunohistochemical stain for chromogranin A. RESULTS: LNCaP cells cultured in a hormone-deficient medium have a mean 9-fold increase in cyclic AMP (p = 0.02) and a significant decline in the expression of TGF-beta2 mRNA when compared with cells grown in normal medium. Supplementation or depletion of TGF-beta2 did not affect the neuroendocrine conversion of LNCaP cells as assessed by NSE expression patterns. LNCaP tumors growing in castrated male nude mice were found to have significantly increased numbers of chromogranin A positive neuroendocrine cells (46/high powered field) when compared with tumors growing in intact male mice (3/high powered field) (p = 0.0038). CONCLUSIONS: Exposure of LNCaP cells to a hormone deficient medium drastically increased cyclic AMP production and this may identify the biochemical pathway through which hormone depletion induces a neuroendocrine conversion of prostate cancer cells. Hormone depletion also reduced TGF-beta2 mRNA expression and this finding was consistent with our inability to demonstrate any effect of TGF-beta2 on neuroendocrine conversion in vitro. Finally, our demonstration of increased neuroendocrine cells found in LNCaP tumors growing in castrated immunodeficient mice suggests that the neuroendocrine cells associated with advanced human prostate tumors in vivo, arise from prostate cancer cells through the transdifferentiation process.

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