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      • KCI등재

        Garlic Powder Ameliorates Cisplatin-Induced Nephrotoxicity and Oxidative Stress

        Ana Carolina Razo-Rodríguez,Yolanda I. Chirino,Dolores Javier Sánchez-González,Claudia María Martínez-Martínez,Cristino Cruz,José Pedraza-Chaverri 한국식품영양과학회 2008 Journal of medicinal food Vol.11 No.3

        cis-Diamminedichloroplatinum (II) (cisplatin) is an effective chemotherapeutic agent successfully used in the treatment of a wide range of tumors. Nevertheless, nephrotoxicity has restricted its clinical use. The use of more than a few antioxidants has shown that reactive oxygen species are involved in cisplatin-induced nephrotoxicity. In the present work the effect of garlic powder, a recognized antioxidant, on cisplatin-induced nephrotoxicity and oxidative and nitrosative stress was studied. Rats were fed with a 2% garlic powder diet for 4 weeks. A single injection of cisplatin (7.5 mg/kg) induced tubular damage and an increase in the following markers of renal injury 3 days later: blood urea nitrogen, serum creatinine, and urinary excretion of N-acetyl-β-D-glucosaminidase. The cisplatin injection also increased 3-nitrotyrosine and 4-hydroxy-2-nonenal immunostaining in renal cortex and medulla. It was found that the garlic powder feeding was able to prevent by 40–59% the alterations in the markers of renal injury studied, by 33% the histological damage, and by 38–75% the increase in markers of oxidative and nitrosative stress. It is concluded that the ability of garlic powder to ameliorate cisplatin-induced renal injury is associated with its antioxidant properties. Our data support the use of garlic powder as a renoprotective agent.

      • KCI등재

        Synergistic Activities of Abdominal Muscles Are Required for Efficient Micturition in Anesthetized Female Mice

        Chuan Zhang,Yingchun Zhang,Yolanda Cruz,Timothy B. Boone,Alvaro Munoz 대한배뇨장애요실금학회 2018 International Neurourology Journal Vol.22 No.1

        Purpose: To characterize the electromyographic activity of abdominal striated muscles during micturition in urethane-anesthetized female mice, and to quantitatively evaluate the contribution of abdominal responses to efficient voiding. Methods: Cystometric and multichannel electromyographic recordings were integrated to enable a comprehensive evaluation during micturition in urethane-anesthetized female mice. Four major abdominal muscle domains were evaluated: the external oblique, internal oblique, and superior and inferior rectus abdominis. To further characterize the functionality of the abdominal muscles, pancuronium bromide (25 μg/mL or 50 μg/mL, abdominal surface) was applied as a blocking agent of neuromuscular junctions. Results: We observed a robust activation of the abdominal muscles during voiding, with a consistent onset/offset concomitant with the bladder pressure threshold. Pancuronium was effective, in a dose-dependent fashion, for partial and complete blockage of abdominal activity. Electromyographic discharges during voiding were significantly inhibited by applying pancuronium. Decreased cystometric parameters were recorded, including the peak pressure, pressure threshold, intercontractile interval, and voiding duration, suggesting that the voiding efficiency was significantly compromised by abdominal muscle relaxation. Conclusions: The relevance of the abdominal striated musculature for micturition has remained a topic of debate in human physiology. Although the study was performed on anesthetized mice, these results support the existence of synergistic abdominal electromyographic activity facilitating voiding in anesthetized mice. Further, our study presents a rodent model that can be used for future investigations into micturition-related abdominal activity.

      • KCI등재

        Voiding Dysfunction in Old Male Rats Associated With Enlarged Prostate and Irregular Afferent-Triggered Reflex Responses

        Chuan Zhang,Xuhong Li,Timothy B. Boone,Yolanda Cruz,Yingchun Zhang,Alvaro Munoz 대한배뇨장애요실금학회 2020 International Neurourology Journal Vol.24 No.3

        Purpose: This study was conducted to evaluate the hypothesis that an enlarged prostate in old rats may lead to complications associated with voiding dysfunction involving ionotropic P2X2/3-type purinergic receptors Methods: Intact animals were divided into male young (MYR; 8–10 weeks old) and male old (MOR; 20 months old) rats. The animals underwent simultaneous detrusor electromyography (EMG) and suprapubic cystometry (CMG) under urethane anesthesia. Immunofluorescence techniques were used to evaluate prostatic autonomic innervation and P2X3R expression in bladder urothelial cells. The functional role of P2X3R was characterized by intramuscular application of AF-353, a selective P2X2/3R antagonist. Results: The prostate index significantly increased in MOR, suggestive of an enlarged prostate affecting micturition patterns. Significant EMG and CMG differences were found between MYR and MOR. Higher immunoreactivity for P2X2/3R in the urothelial layer and for prostatic neurofilaments was seen in MOR. Systemic inhibition of P2X2/3R had minimal effects on MYR responsiveness, but improved voiding function in MOR with a marked decrease of intravesical pressure and bladder contractile responses. Conclusions: The data support the hypothesis that an enlarged prostate in MOR may contribute to voiding dysfunction involving activation of P2X2/3R, which enhances a prostate-bladder reflex. This reflex may increase bladder afferent transmission and activation of increased prostate innervation, leading to voiding dysfunction.

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        In vitro anti-Trypanosoma cruzi activity of methanolic extract of Bidens pilosa and identification of active compounds by gas chromatography-mass spectrometry analysis

        Gabriel Enrique Cázares-Jaramillo,Zinnia Judith Molina-Garza,Itza Eloisa Luna-Cruz,Luisa Yolanda Solís-Soto,José Luis Rosales-Encina,Lucio Galaviz-Silva 대한기생충학ㆍ열대의학회 2023 The Korean Journal of Parasitology Vol.61 No.4

        Chagas disease, caused by Trypanosoma cruzi parasite, is a significant but neglected tropical public health issue in Latin America due to the diversity of its genotypes and pathogenic profiles. This complexity is compounded by the adverse effects of current treatments, underscoring the need for new therapeutic options that employ medicinal plant extracts without negative side effects. Our research aimed to evaluate the trypanocidal activity of Bidens pilosa fractions against epimastigote and trypomastigote stages of T. cruzi, specifically targeting the Brener and Nuevo León strains—the latter isolated from Triatoma gerstaeckeri in General Terán, Nuevo León, México. We processed the plant’s aerial parts (stems, leaves, and flowers) to obtain a methanolic extract (Bp-mOH) and fractions with varying solvent polarities. These preparations inhibited more than 90% of growth at concentrations as low as 800 μg/ml for both parasite stages. The median lethal concentration (LC50) values for the Bp-mOH extract and its fractions were below 500 μg/ml. Tests for cytotoxicity using Artemia salina and Vero cells and hemolytic activity assays for the extract and its fractions yielded negative results. The methanol fraction (BPFC3MOH1) exhibited superior inhibitory activity. Its functional groups, identified as phenols, enols, alkaloids, carbohydrates, and proteins, include compounds such as 2-hydroxy-3-methylbenzaldehyde (50.9%), pentadecyl prop-2-enoate (22.1%), and linalool (15.4%). Eight compounds were identified, with a match confirmed by the National Institute of Standards and Technology (NIST-MS) software through mass spectrometry analysis.

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