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Yegappan Lakshmanan

Publications and source records attributed to Yegappan Lakshmanan.

8 recordsLinked to original sources

Valproic acid inhibits invasiveness in bladder cancer but not in prostate cancer cells.

Histone deacetylase inhibitors (HDACIs) represent a promising new class of antineoplastic agents that affect proliferation, differentiation, and apoptosis in both solid and hematologic malignancies. In addition, HDACIs can alter the expression of at least one cellular adhesion molecule, the coxsackie and adenovirus receptor, in bladder cancer. Because HDACIs can increase expression of a known cellular adhesion molecule, we hypothesized that migration and/or invasion may also be affected. We evaluated this hypothesis using valproic acid (VPA), a commonly prescribed anticonvulsant recently shown to have potent HDACI activity, in the bladder cancer cell lines T24 TCC-SUP, HT1376, and RT4. Analyses of cell migration and invasion were both qualitative (fluorescent microscopy) and quantitative (static and dynamic migration/invasion assays). Our results show that acute VPA treatment (72 h) causes a dose-dependent decrease in invasion for all bladder cancer cell lines, except RT4, a noninvasive papilloma. Migration, in contrast, was not affected by VPA treatment. The inhibitory effect of VPA may be cancer type-specific, because there was no difference in invasion between treated and untreated prostate cancer cell lines LNCaP, PC3, and DU145. Furthermore, when administered chronically (34 days), VPA significantly inhibits growth of T24t tumor xenografts. Our data suggest that VPA exerts some of its antineoplastic effects by inhibiting invasion as well as tumor growth, and thus it may represent a novel adjuvant strategy for patients at high risk of recurrence and/or progression of muscle invasive bladder cancer.

Acetylation↗

Human embryoid body-derived stem cells in tissue engineering-enhanced migration in co-culture with bladder smooth muscle and urothelium.

OBJECTIVES: To evaluate the affinity between human stem cells and human bladder cells by analyzing their migration and proliferation patterns in co-culture. Human stem cells have great potential for tissue engineering purposes. Co-culture of stem cells with mature cells may promote differentiation. METHODS: Equal numbers of green fluorescent protein-labeled human embryonic germ cell derivates (SDECs) were plated, either alone or in the presence of red fluorescence-labeled (PKH 26) human bladder smooth muscle cells (SMCs) or urothelial cells (UROs). The co-cultures shared the same media (EGM2MV). The migration patterns of the different cell lines were measured daily, using an integrated grid, for 8 days with fluorescence microscopy. RESULTS: SDECs, grown alone, had a robust basal migration rate of between 0.3 and 0.7 mm/day compared with SMCs, which had a rate of 0.1 to 0.3 mm/day and UROs with a rate of 0.1 to 0.2 mm/day. Stem cell migration was enhanced in co-culture with SMCs or UROs to 0.5 to 1.0 mm/day. Migration of SDECs was more linear, directed toward SMCs or UROs, compared with the circumferential growth when plated alone. SMCs, more than UROs, migrated more rapidly in the presence of stem cells. CONCLUSIONS: Human stem cells showed improved migration in the presence of mature human bladder cells and were attracted to them, as shown by the altered direction of growth. Thus, co-culture of human stem cells with host SMCs can enhance seeding of matrices due to positive chemotaxis. Identifying the responsible factors may help to augment chemotaxis between desired cell types and optimize tissue regeneration.

Cell Movement↗

Fetal sheep development on ultrasound and magnetic resonance imaging: a standard for the in utero assessment of models of congenital abnormalities.

OBJECTIVE: To establish normative data for the size, conspicuity, and imaging characteristics of normal developing fetal sheep organs on ultrasound (US) and magnetic resonance (MR) imaging. METHODS: US and MR images of ten normal pregnant sheep, at 40, 65, 90, 115, and 140 gestational days (term = 145 days), were scored for organ conspicuity and imaging characteristics. Imaging biometry was correlated with specimens. Gestational age-based growth parameters were modeled using regression. RESULTS: Imaging biometry showed excellent correlation with specimens. Kidney, bladder, stomach, lung, liver, and spine were seen well from 65 days to term by US. More organs were consistently visible from 90 days to term by MR than by US. Most organ imaging characteristics tended not to change throughout gestation. CONCLUSION: Normal fetal sheep biometry, organ conspicuity, and imaging characteristics are established for US and MR and have potential use for the in utero assessment of sheep models of congenital abnormalities.

Animals↗

Human embryoid body-derived stem cells in co-culture with bladder smooth muscle and urothelium.

OBJECTIVES: Human pluripotent stem cells have excellent regenerative abilities, making them attractive in bladder regeneration. Porcine small intestinal submucosa (SIS) is an established matrix well-suited to the urinary tract. We evaluated the ability of human embryonic germ (hEG) cell-derived stem cells to form a composite graft on SIS, grown alone or in combination with human bladder smooth muscle cells (SMCs) or urothelial (URO) cells. METHODS: The hEG cell-derived cell line SDEC had the best-fit profile for smooth muscle, as determined by its gene and protein expression. SDEC cells were seeded on SIS, either on its serosal or mucosal surface, and cultured for 7 or 14 days. Co-cultures of stem cells with URO cells or SMCs were also assessed under similar conditions. The grafts were analyzed by histologic examination for cell growth, morphology, and matrix penetration. RESULTS: SDEC cells grew in a monolayer on SIS, with a marked increase in three-dimensional growth when co-cultured with URO cells or SMCs. Penetration of the matrix was evident when seeded on the rough surface of the SIS, progressing with time. Stratification of the cell layers occurred on the smooth side of the SIS. CONCLUSIONS: This is the first description of hEG cell-derived stem cells in co-culture with bladder cells. hEG cell-derived stem cells grow well on SIS even when seeded at low concentrations in the presence of bladder cells (URO cells or SMCs). These composite grafts will be ideal to evaluate the in vivo functional characteristics of stem cells using an animal model of bladder regeneration.

Animals↗

Human embryoid body-derived stem cells in bladder regeneration using rodent model.

OBJECTIVES: To evaluate the capability of a human embryonic germ (hEG) cell-derived cell line (SDEC), previously characterized in our laboratory, seeded on porcine small intestinal submucosa (SIS) to regenerate the injured rat bladder. METHODS: Fluorescent-labeled SDEC cells seeded on SIS for 8 days in vitro were used as bladder grafts in rats. A total of 30 congenitally athymic rats (six groups of 5 rats each), underwent partial cystectomy and replacement with plain SIS (groups 1 to 3) or cell-seeded SIS (groups 4 to 6). The rats were sacrificed after 7 (groups 1 and 4), 14 (groups 2 and 5), and 28 (groups 3 and 6) days. The bladders were analyzed by histopathologic examination and fluorescence microscopy. RESULTS: No graft rejection or diminution in bladder capacity occurred. Plain SIS implants had multiple calcareous deposits, not seen with the cell-seeded implants. Macroscopically, at 7 days, the grafts were healed with a cellular lining on the luminal aspect in groups 4 to 6. Microscopically, the rat bladder was completely regenerated 28 days after stem cell-seeded SIS implantation. Labeled stem cells were identified throughout the graft and contributed significantly to bladder regeneration. CONCLUSIONS: The results of this study have demonstrated the successful replacement of a bladder defect in a rat model using hEG cell-derived cells seeded on SIS grafts. Longer term analysis of these bladder grafts will allow evaluation of function, cell migration, and differentiation processes of human stem cells.

Animals↗

Variants of the exstrophy complex: a single institution experience.

PURPOSE: Variants of the bladder/cloacal exstrophy complex are rare. Different presentations and subsequent management and outcome are discussed. MATERIALS AND METHODS: We performed a retrospective review of our database of more than 815 patients with the exstrophy complex. Patients with variants of classic epispadias or bladder or cloacal exstrophy were identified. Anatomical presentation, surgical management, type of continence procedures and final outcome were evaluated. RESULTS: Of the 25 patients with variants 13 were treated primarily at our institution and 12 were referred. Time until primary bladder closure ranged from 1 day to 4 years. Followup after continence procedure ranged from 1 month to 39 years. Seven of the 25 patients are awaiting a continence procedure. Six patients are dry without a continence procedure, of whom 4 have superior vesical fistulas. A total of 11 patients underwent bladder neck reconstruction (BNR), of whom 3 are dry, 2 are dry during the day but are wet at night, 1 had a failed procedure and 5 are dry after continent diversion (CD). One additional patient underwent CD initially and is dry. Referred cases of epispadias with bladder prolapse were not recognized at birth and had delayed closure. Impaired bladder growth or failed BNR required CD in 4 patients, and 2 are awaiting a continence procedure. Skin covered and duplicate exstrophy had comparable outcomes to the classic presentations. Duplicated organs were used for reconstructive procedures. Of the 6 patients with cloacal variant 2 are continent of stool and 2 await a Pena procedure. One of these patients has an ileal stoma and 1 has a colostomy. CONCLUSIONS: The initial presentation of exstrophy variants can be confusing, often delaying initial treatment. Superior vesical fistulas permit continence without BNR due to an intact urinary sphincter. Variants such as epispadias with bladder prolapse and duplicate or skin covered exstrophy should be closed at birth with standardized techniques to promote bladder growth for later BNR. These cases are faced with the same long-term problems as the classic presentation. Cloacal variants can present with intact anal innervation, allowing a later Pena procedure.

Abnormalities, Multiple↗

Fetal bony pelvis in the bladder exstrophy complex: normal potential for growth?

OBJECTIVES: To provide the first look at the bony histologic features of fetuses with the exstrophy complex, specifically evaluating the endochondral ossification, stage of development, and microscopic potential for normal growth. METHODS: Three fetuses between 28 and 30 weeks of gestation, one with classic bladder exstrophy, one with cloacal exstrophy, and one control, were obtained from France. The bony pelves were dissected and preserved in formalin, and multiple representative sections were sliced from all pelvic areas: pubis, ischium, ilium, and sacrum. These slices were sequentially processed as slides, stained with hematoxylin-eosin, and evaluated microscopically for histologic changes, developmental stage, and degree of endochondral ossification. RESULTS: All slides from the three specimens showed cartilage analogue with endochondral ossification. Histologically the exstrophy specimens were identical to the control and appeared completely normal; bone development was occurring at an expected rate with the potential for continued normal growth. CONCLUSIONS: These new findings illustrate that fetal bone in the exstrophy complex displays normal microscopic growth patterns and unhindered endochondral ossification at 28 weeks of gestation, well beyond the embryologic period. With no evident microscopic bony defect, the gross bony anomalies in exstrophy should be surgically correctable, leading us to conclude that early reapproximation of the physiologic shape of the pelvis could lead to more normal gross bone growth, decreased shortage of bone, and a more appropriate distribution of the mechanical and developmental forces on a closed, normally functioning pelvic ring.

Abortion, Legal↗

Continent urinary diversions in the exstrophy complex: why do they fail?

PURPOSE: Urinary continence is one of the primary goals in the surgical treatment of the patient with exstrophy. Children with inadequate bladder capacity, noncompliant or neuropathic bladder, or failed bladder neck reconstruction may require creation of a continent urinary reservoir to achieve continence. While initial success rates are excellent, some patients suffer persistent urinary incontinence, severely affecting their quality of life. The reasons for such failure and subsequent management were evaluated. MATERIALS AND METHODS: A retrospective database review was performed in 748 patients with the exstrophy complex. Patients with a history of failed continent urinary diversion with incontinence from the stoma or urethra were identified. Initial diagnosis, number of previous operations, reason for and time interval after surgery when failure occurred, and management strategies were evaluated. RESULTS: Of 92 patients undergoing continent diversion procedures 19 (21%) had failure initially (15 with classic and 4 with cloacal exstrophy). Four of the 19 patients underwent primary surgery at our institution and 15 were referred. The procedure initially performed was an intussuscepted nipple valve in 8 patients, an intussuscepted ileocecal valve in 1 and an ileal or sigmoid reservoir with appendiceal flap valve (Mitrofanoff) in 10. Main reasons for failure included de-intussusception and bladder neck incompetence. Mean followup after continence was achieved was 2.9 years (range 3 months to 10 years). These patients underwent up to 8 operations to achieve continence (mean 5). Most patients (79%) were successfully treated with either 1 (47%) or 2 revisions (32%), while 1 required 3 reoperations. Overall, 89 of 92 patients (97%) are currently continent, including those requiring medications and further surgical procedures, while 3 are still wet. CONCLUSIONS: Most patients with exstrophy with failure of continent urinary diversion have a long complicated surgical history. In this series incontinence from an intussuscepted nipple stoma was mostly due to de-intussusception. In patients with an initial Mitrofanoff stoma all incontinence occurred within the first few months postoperatively. Continence was achieved by either recreation of a Mitrofanoff stoma or bladder neck transection. Patients with a failed continent urinary diversion benefit from careful preoperative evaluation, meticulous surgical execution and persistent attempts to achieve continence.

Adolescent↗