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Biomedical subjects

Sergio Ortiz

Publications and source records attributed to Sergio Ortiz.

8 recordsLinked to original sources

Complementary activity of an ancient combination of natural ingredients on the dysbiosis symptoms linked to acne.

ETHNOPHARMACOLOGICAL RELEVANCE: Acne is one of the most common dermatologic diseases in the world. It is due to the secretion of a high level of sebum that causes follicular hyperkeratinisation, alterations of the cutaneous microbiota, and inflammatory processes. One of the first-line treatments is still an antibiotic prescription, that inhibits bacterial growth and, as a consequence, lowers some of the other symptoms. Nevertheless, this high level of antibiotic prescription contributes to the increase of antibiotic resistance. Alternatives to antibiotics are thus highly required, as acne does not represent per se an infection. AIM OF THE STUDY: In the frame of the IRGAP (Interdisciplinary Research Group on Ancient Pharmacopeias) consortium, different preparations dedicated to cutaneous ailments have been identified based on ancient traditional uses, dating back to Antiquity or Middle Ages. Among them, the combination of Aloe vera and Myrrh was widely conserved over centuries. Even though this combination is no longer in use, we wondered why this combination was so widely conserved. We considered the use of this combination of ingredients to treat acne, a case study for which both plants are still used, but separately. MATERIALS AND METHODS: The effects of both plant extracts were analyzed on the growth of different bacteria from the skin microbiota, cultivated alone or in co-culture conditions. As the skin is a rather heterologous environment, we further tested the robustness of our study by varying the experimental conditions. We further analyzed any complementary effects of these extracts on the inflammation process linked to acne. RESULTS: We showed that both plant extracts have complementary effects on micro-organisms and on macrophages. Indeed, while Myrrh extracts inhibited the growth of specific skin microbiota bacteria, Aloe vera gel extracts on the opposite, favored the growth of others: the two plants could act in a complementary way to restore a healthy microbiota. Another complementarity was also observed on macrophages: while Myrrh extracts showed an anti-inflammatory effect, Aloe vera gel extracts showed an antioxidant effect. CONCLUSION: Our results highlight the potential of the combination of Myrrh and Aloe vera to address both the dysbiosis of the skin microbiota and the inflammation associated with acne. Thus, this exploration of forgotten combinations from historical pharmacopoeias underscores the importance of revisiting past traditional knowledge as a source of innovation.

Aloe vera↗

Interactions between cannabinoid and opioid receptor systems in the mediation of ethanol effects.

Over the past few years, advances in the investigation of the neurochemical circuits involved in the development and treatment of alcohol dependence have identified peptides and receptors as potential key targets in the treatment of problems related to alcohol consumption. The endogenous opioid system is modified by alcohol intake in areas of the brain related to reward systems, and differential basal levels of opioid gene expression are found in rodents with a high preference for ethanol. This suggests a greater vulnerability to alcohol consumption in relation to differences in genetic background. Further evidence of the involvement of opioid peptides in alcohol dependence is the ability of the opioid antagonist naltrexone to reduce alcohol intake in animal models of dependence and in alcohol-dependent patients. Abundant evidence indicates that the activation of cannabinoid receptors stimulates the release of opioid peptides, therefore the cannabinoid receptor antagonists may presumably alter opioid peptide release, thus facilitating the reduction of ethanol consumption. However, little is known about the effects of ethanol on the endogenous cannabinoid system, the vulnerability of cannabinoid receptors to alcohol intake or their neurochemical implications in reducing consumption of alcohol. In this paper, we review the role of opioid and cannabinoid receptor systems, their vulnerability to alcohol intake and the development of dependence, and the targeting of these systems in the treatment of alcoholism.

Alcohol Drinking↗

Spontaneous cannabinoid withdrawal produces a differential time-related responsiveness in cannabinoid CB1 receptor gene expression in the mouse brain.

This study aimed to examine the behavioural and neurochemical (cannabinoid CB1 receptor gene expression) changes induced by spontaneous cannabinoid withdrawal in mice. Tolerance was assessed by measuring rectal temperature and motor activity in the open-field test after CP-55, 940 administration. Cannabinoid withdrawal symptoms were determined by measuring motor activity and behavioural signs of abstinence. Cessation of CP-55, 940 treatment in tolerant mice induced a spontaneous time-dependent behavioural withdrawal syndrome consisting of marked increases (140%) in motor activity, number of rearings (170%), decreases in grooming (57%), wet dog shakes (73%) and rubbing behaviours (74%) on day 1, progressively reaching values similar to vehicle-treated mice on day 3. Interestingly, this spontaneous cannabinoid withdrawal resulted in CB1 gene expression upregulation (20-30%) in caudate-putamen, ventromedial hypothalamic nucleus, central amygdaloid nucleus and CA1, whereas in the CA3 field of hippocampus, a significant decrease (15-20%) was detected. Taken together, the results of this study suggest that cessation of CP-55, 940 administration in tolerant mice produces a behavioural cannabinoid withdrawal syndrome and a selective and differential responsiveness in CB1 receptor gene expression in several brain regions of the mice. These findings further suggest a time and regional differential role for cannabinoid receptors in short- and long-term neuroadaptations that occur after exposure to cannabis derivatives.

Animals↗

[Relation between clinical presentation and prognosis of patients with papillary thyroid microcarcinoma].

BACKGROUND AND OBJECTIVE: We aimed to analyze patients with papillary thyroid microcarcinoma (PTM) in order to establish the prognosis according to the differences observed between those diagnosed before surgery and those diagnosed postoperatively. PATIENTS AND METHOD: Retrospective study of 83 PTM patients who were distributed in 2 groups. Clinical, histological and follow-up data were compared. Survival and disease-free interval (DFI) were analyzed in both groups. RESULTS: Group A (diagnosed before surgery): 30 patients (36.1%); group B (diagnosed postoperatively): 53 patients (63.9%). Five group A patients had a relapse. Overall survival was 98.8% and overall DFI was 94% (83.3% in group A and 100% in group B, p = 0.01). CONCLUSIONS: It is useful to differentiate patients with PTM diagnosed before surgery from those whose PTM was diagnosed after since their evolution is different.

Adolescent↗

Behavioural and gene transcription alterations induced by spontaneous cannabinoid withdrawal in mice.

This study examined behavioural signs that occur during tolerance development to cannabinoid treatment and hormonal and gene expression alterations induced by spontaneous cannabinoid withdrawal in mice. Tolerance to CP-55,940 treatment developed for hypothermia, ambulatory and exploratory locomotor activity. Cessation of cannabinoid treatment resulted in a behavioural withdrawal syndrome characterized by a pronounced increase in ambulatory activity and rearings. Corticosterone plasma concentrations dramatically increased 24 and 72 h after cessation of cannabinoid treatment. Similarly, an increase (40%) in cannabinoid [35S]GTPgammaS binding autoradiography was detected on days 1 and 3 of abstinence. Spontaneous cannabinoid withdrawal produced time-related significant alterations in gene transcription: (i) decreased (20%) tyrosine hydroxylase (TH) mRNA levels in the ventral tegmental area and increased (50%) in substantia nigra; (ii) increased proenkephalin (PENK) gene expression more than 100% in caudate-putamen, nucleus accumbens, olfactory tubercle and piriform cortex; (iii) increased (20-40%) pro-opiomelanocortin (POMC) gene expression in the arcuate nucleus of the hypothalamus. These results suggest that spontaneous cannabinoid withdrawal occur after cessation of CP-55,940 treatment. This 'syndrome' includes behavioural, hormonal and gene transcription alterations that seems to be part of the regulation of neuronal plasticity induced by spontaneous cannabinoid withdrawal.

Animals↗

Theiler's virus infection induces the expression of cyclooxygenase-2 in murine astrocytes: inhibition by the anti-inflammatory cytokines interleukin-4 and interleukin-10.

Theiler's murine encephalomyelitis virus (TMEV) causes an acute encephalomyelitis followed by a persistent infection of the central nervous system (CNS) resulting in a chronic inflammation and axonal demyelination in susceptible strains of mice. The pathogenesis of TMEV-induced demyelinating disease remains unknown, but infection of brain glial cells is a critical factor for virus persistence in the CNS. In the present study we investigated the effects of the anti-inflammatory cytokines interleukin-4 (IL-4) and interleukin-10 (IL-10) on the production of inflammatory mediators, such as prostaglandins, after infection of primary astroglial SJL/J murine cultures with TMEV. This infection resulted in a time-dependent transcription of the gene encoding cyclooxygenase-2 (COX-2) and an increased production of prostaglandin E2 (PGE(2)). Both, IL-4 but mainly, IL-10 (1 and 10 ng/ml) decreased the TMEV-induced expression of COX-2 as well as the synthesis of PGE(2). Interestingly, treatment with IL-10 completely abrogated COX-2 induction. The molecular mechanisms involved in the regulation of COX-2 expression by TMEV are unknown, but the effects of anti-inflammatory cytokines may involve the inhibition of the transcription factor nuclear factor B activity and lead to strategies capable of interrupting the inflammatory cascade triggered by TMEV in brain glial cells.

Animals↗

Chronic ethanol consumption regulates cannabinoid CB1 receptor gene expression in selected regions of rat brain.

AIMS: The aim of this study was to examine the effects of chronic ethanol consumption in cannabinoid CB(1) receptor gene expression in Wistar rats. METHODS: Rats were exposed to a bottle containing a solution of ethanol (10% v/v) and saccharin (0.25% w/v) for 52 days. At the end of this period, rats were killed by decapitation and cannabinoid CB(1) receptor gene expression was measured by in situ hybridization histochemistry. RESULTS: Our results indicated that chronic ethanol consumption reduced cannabinoid CB(1) receptor gene expression in caudate-putamen (CPu) (24%), ventromedial nucleus of the hypothalamus (VMN) (43%), CA1 (27%) and CA2 (22%) fields of hippocampus and increased dentate gyrus (DG) (30%). CONCLUSIONS: These results reveal for the first time that prolonged exposure to ethanol produces marked alterations in cannabinoid CB(1) receptor gene expression in selected regions of the rat brain, supporting an interaction between ethanol consumption and the endogenous cannabinoid receptor. Furthermore, these findings suggest that cannabinoid CB(1) receptor may be considered as a new pharmacological target for treating ethanol dependence.

Alcohol Drinking↗

Differences in basal cannabinoid CB1 receptor function in selective brain areas and vulnerability to voluntary alcohol consumption in Fawn Hooded and Wistar rats.

AIM: To specify the functional activity of cannabinoid CB1 receptor in alcohol-preferring Fawn Hooded and alcohol nonpreferring Wistar rats under naïve conditions. METHOD: Cannabinoid CB1 (WIN-55,212)-stimulated [35S]-GTPgammas binding autoradiography, and cannabinoid CB1 receptor gene expression were measured in rats of both strains that received only water. RESULTS: Cannabinoid CB1 receptor stimulated [35S]-GTPgammas binding was significantly lower in cingulate cortex (Cg), caudate-putamen (CPu), nucleus accumbens (Acc), ventromedial hypothalamic nucleus (VMN), amygdaloid area (AMG), fields (CA1, CA3) of the hippocampus and dentate gyrus (DG) in Fawn Hooded than in Wistar rats, whereas no differences were found either in substantia nigra pars reticulata (SNr) nor CA2 field of the hippocampus. In addition, cannabinoid CB1 receptor gene expression was lower in Cg, CPu, VMN and CA3 field of the hippocampus in Fawn Hooded than in Wistar rats. CONCLUSIONS: We speculate that lower cannabinoid function appears to be related to greater vulnerability to alcohol consumption. Cannabinoid CB1 receptor may represent a key target in the treatment of alcohol dependence.

Alcohol Drinking↗