Silvana Gisele Pegorin de Campos's research while affiliated with São Paulo State University and other places

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Publications (6)


Prostatic morphological changes throughout life: Cytochemistry as a tool to reveal tissue aging markers
  • Article

January 2024

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16 Reads

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1 Citation

Microscopy Research and Technique

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Silvana Gisele Pegorin Campos

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The prostate undergoes normal or pathological morphological changes throughout life. An understanding of these changes is fundamental for the comprehension of aging‐related pathological processes such as benign prostatic hyperplasia (BPH) and cancer. In the present study, we show some of these morphological changes, as well as histochemical techniques like Weigert's resorcin‐fuchsin method, Picrosirius Red, and Gömöri's reticulin for use as tools in the study of prostate tissue under light microscopy. For this purpose, prostates of the Mongolian gerbil ( n = 9), an experimental model that develops BPH spontaneously, were analyzed at three life stages: young (1 month old), adult (3 months old), and old (15 months old). The results showed that fibrillar components such as collagen, and reticular and elastic fibers, change throughout life. In young animals, the prostate has cuboidal epithelium surrounded by thin layers of smooth muscle, continuous collagen fibers, winding reticular fibers, and sporadic elastic fibers. With adulthood, the epithelium becomes columnar, encircled by compacted muscle cells among slender collagen fibers, elongated reticular fibers, and linear elastic fibers. In aging individuals, the prostate's epithelium stratifies, surrounded by thick muscle layers among dense collagen fibers, disordered reticular fibers, and elastic fibers in different planes. We also identified a few accumulations of lipid droplets and lipofuscin granules in adult animals and high accumulation in old animals evidenced by Oil red O and Gömöri‐Halmi techniques, respectively. The histochemical techniques presented here have been demonstrated to be useful and accessible tools in prostate studies. Research Highlights Cytochemical techniques to study prostate morphology. The prostate changes with age.

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The impacts of exposure to Bisphenol A in the adult female prostate Meriones unguiculatus

May 2023

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17 Reads

Reproductive Toxicology

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Gustavo Matheus Amaro

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[...]

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Silvana Gisele Pegorin de Campos

The female prostate is associated with the urogenital system and presents homology in morphological terms with the male prostate. Due to its responsiveness to endogenous hormones, this gland is under a constant risk of developing prostatic pathologies and neoplasia when exposed to certain exogenous compounds. Bisphenol A (BPA) is an endocrine disruptor found in different plastic and resin products. Studies have emphasized the effects of perinatal exposure to this compound on different hormone-responsive organs. However, there have been few studies highlighting the influence on female prostate morphology of perinatal exposure to BPA. The objective of this study was to describe the histopathological alterations caused by perinatal exposure to BPA (50µg/kg) and 17-β estradiol (E2) (35µg/kg) in the prostate of adult female gerbils. The results showed that E2 and BPA induced proliferative lesions in the female prostate and acted along similar pathways by modulating steroid receptors in the epithelium. BPA was also found to be a pro-inflammatory and pro-angiogenic agent. The impacts of both agents were marked in the prostatic stroma. An increase in the thickness of the smooth muscle layer and a decrease in AR expression were observed, but no alterations in the expression of ERα and ERβ, leading to estrogenic sensitivity of the prostate. However, a peculiar response of the female prostate was to diminish the collagen frequency under BPA exposure correlated to smooth muscle layer. These data therefore indicate the development of features related to estrogenic and non-estrogenic tissue repercussions by BPA perinatally exposure in gerbil female prostate.


The Mongolian Gerbil as a Useful Experimental Model in Reproductive Biology

January 2023

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60 Reads

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2 Citations

Reproductive sciences (Thousand Oaks, Calif.)

Ultimately, the Mongolian gerbils (Meriones unguiculatus) have acquired a relevant role in biological and biomedical experiments alongside other rodents. The use of gerbils in research has been mainly oriented to physiological and pharmacological studies, with special attention to nervous, digestive, and auditory systems as well as microbiology and parasitology. Ultimately, gerbils have also been applied for studying carcinogenesis in different organs and systems, since these animals show a natural propensity to develop spontaneous proliferative lesions, especially in steroid-responsive organs. This characteristic shed light on the reproductive aspects of this rodent model regarding morphological features in male and female individuals. This review of literature summarizes the significance of this model as an alternative to the use of inbred mice and rats in reproductive experimental research, highlighting recent findings. Gerbils have contributed to the expansion of knowledge in prostate biology in male and female individuals, providing studies related to prostatic morphogenesis and neoplasia. In the testes, spermiogenesis occurs in 15 steps, differently from other experimental models. Also, the complete maturation of the testis-epididymal complex occurs between the second and third months. Mammary gland alterations related to the estrous cycle and pregnancy were described, as well as its modulation under endogenous and exogenous estrogenic compounds. The ovaries frequently present ovarian cysts. Furthermore, this organ shows predominantly interstitial steroidogenic glands in the stroma, especially at aging. Adrenal gland shows a large size compared to other animals, presenting three distinct zones with a remarkable role in steroidogenesis.



Gestational and lactational xenoestrogen exposure disrupts morphology and inflammatory aspects in mammary gland of gerbil mothers during involution

December 2021

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18 Reads

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2 Citations

Environmental Toxicology and Pharmacology

In the mammary gland (MG), the developmental window for gestational/lactational differentiation and growth is highly vulnerable to hormonal disruption. Here we describe that the MG involution process in female gerbil mothers is delayed by bisphenol A (BPA) exposure during gestation and lactation. The process is directly influenced by changes in expression of extracellular matrix proteases MMP-2, MMP-9, and FAP, and the incidence of collagen and elastin is reduced after 7 and 14 days of weaning. A pro-inflammatory environment in the late involution process was confirmed by higher expression of TNF-α, COX-2 and phospho-STAT3 n the MG stroma, allied to increases in the incidence of macrophages and mast cells. These aspects impacted the proliferative pattern of epithelial cells, which decreased on the 14th post-weaning day. These data confirm that the milk production window of susceptibility is vulnerable to the impact of BPA, which promotes a suggestive pro-tumoral microenvironment during mammary involution.


Protective effect of the association of curcumin with piperine on prostatic lesions: New perspectives on BPA-induced carcinogenesis

November 2021

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36 Reads

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12 Citations

Food and Chemical Toxicology

Bisphenol A (BPA) is a chemical agent which can exert detrimental effects on the male reproductive system, especially the prostate gland. In this study we described the efficacy of the dietary agent curcumin, alone or combined with piperine, to suppress the impact of BPA on the prostate. Adult gerbils were divided into nine experimental groups (n = 7 each group), regarding control (water and oil), exposed to BPA (50 μg/kg/day in water) or curcumin (100 mg/kg) and/or piperine (20 mg/kg). To evaluate the effects of the phytotherapic agents, the other groups received oral doses every two days, BPA plus curcumin (BCm), piperine (BP), and curcumin + piperine (BCmP). BPA promoted prostatic inflammation and morphological lesions in ventral and dorsolateral prostate lobes, associated with an increase in androgen receptor-positive cells and nuclear atypia, mainly in the ventral lobe. Curcumin and piperine helped to minimize these effects. BPA plus piperine or curcumin showed a reduction in nuclear atypical phenotype, indicating a beneficial effect of phytochemicals. Thus, these phytochemicals minimize the deleterious action of BPA in prostatic lobes, especially when administered in association. The protective action of curcumin and piperine consumption is associated with weight loss, anti-inflammatory potential, and control of prostate epithelial cell homeostasis.

Citations (3)


... To strengthen this evidence, in vivo studies showed that NLRP3 pathway inhibition mitigates age-related organ damage [10][11][12]. Prostatic diseases such as hyperplasia and cancer are a consequence of glandular aging due to the loss of homeostasis [13]. The main pathological manifestations of benign prostate hyperplasia (BPH) are overgrowth and tissue remodeling. ...

Reference:

The Effects of Caloric Restriction on Inflammatory Targets in the Prostates of Aged Rats
Prostatic morphological changes throughout life: Cytochemistry as a tool to reveal tissue aging markers
  • Citing Article
  • January 2024

Microscopy Research and Technique

... 4 Mongolian gerbil (Meriones unguiculatus) is a rodent species that belongs to the hamster family, subfamily Gerbilidae, genus Gerbil. 5 They have been used as a laboratory animal for over a century and are widely utilized in various fields, including brain neurology, parasitology, microbiology, endocrinology, nutrition, metabolism, pharmacology, tumors (gastric cancer), epilepsy, hearing, and anxiety disorders; thus, they are known as a multifunctional laboratory animal. 5,6 Due to their high frequency of anatomical anomalies in the circle of Willis, gerbils have been investigated as an animal model for cerebral ischemia. ...

The Mongolian Gerbil as a Useful Experimental Model in Reproductive Biology
  • Citing Article
  • January 2023

Reproductive sciences (Thousand Oaks, Calif.)

... Bisphenol A (BPA), also known as 2,2′-bis (4-hydroxyphenyl) propane), is one of the most commonly used chemicals worldwide, often in polycarbonate and epoxy resins for food storage, packaging, feeding bottles and beverage cans [1][2][3][4]. However, the widespread use of BPA has led to its penetration into food and water, accumulating in humans and aquatic organisms [5,6]. ...

Protective effect of the association of curcumin with piperine on prostatic lesions: New perspectives on BPA-induced carcinogenesis
  • Citing Article
  • November 2021

Food and Chemical Toxicology