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1.
Rev. Flum. Odontol. (Online) ; 3(65): 175-183, set-dez.2024. ilus
Article in Portuguese | LILACS, BBO - Dentistry | ID: biblio-1567962

ABSTRACT

A comunicação bucossinusal (CBS) é uma complicação relativamente frequente na prática odontológica que ocorre em procedimentos cirúrgicos, principalmente, exodontias dos molares superiores. O diagnóstico dessa comunicação é feito através de exames clínicos intraorais, empregando a manobra de Valsava, e para a confirmação do diagnóstico, utiliza-se exame radiográfico. A literatura cita inúmeros métodos de tratamento, entretanto não evidenciam a técnica específica para cada caso, entre esses métodos existe o retalho com o corpo adiposo da bochecha, que apresenta alto índice de sucesso no fechamento das CBS. Quando a CBS é fechada incorretamente ou de forma tardia o paciente fica propício a desenvolver quadros de sinusite crônica ou aguda, além de fístulas bucossinusais. Portanto, deve-se identificar e tratar essa comunicação de imediato para evitar o desenvolvimento de outras complicações. O objetivo do presente trabalho é apresentar um caso clínico de um paciente com comunicação bucossinusal atendido na clínica odontológica da Unidade de Ensino Superior de Feira de Santana (UNEF), com a finalidade de demostrar a técnica cirúrgica utilizando a rotação do corpo adiposo da bochecha (Bola de Bichat).


The bucosinusal communication (BCS) is a relatively frequent complication in dental practice that occurs in surgical procedures, especially extractions of the upper molars. The diagnosis of this communication is made through intraoral clinical examinations, using the Valsava maneuver, and for the confirmation of the diagnosis, radiographic examination is used. The literature cites numerous methods of treatment, however they do not evidence the specific technique for each case, among these methods there is the graft with the adipose body of the cheek, which has a high success rate in the closure of the CBS. When the CBS is closed incorrectly or late, the patient is prone to develop chronic or acute sinusitis, in addition to bucosinusal fistulas. Therefore, this communication should be identified and treated immediately to prevent the development of other complications. The objective of the present study is to present a clinical case of a patient with bucosinusal communication attended at the dental clinic of Unidade de Ensino Superior de Feira de Santana (UNEF), with the purpose of demonstrating the surgical technique using the rotation of the adipose body of the cheek (Bichat ball).


Subject(s)
Humans , Male , Surgical Procedures, Operative , Cheek , Adipose Tissue , Oroantral Fistula , Maxillary Sinus
2.
Rev. bras. cir. plást ; 39(3): 1-5, jul.set.2024. ilus
Article in English, Portuguese | LILACS-Express | LILACS | ID: biblio-1572470

ABSTRACT

Introdução: O estudo explora a cirurgia de contorno corporal em pacientes submetidos a cirurgias bariátricas. Nos últimos anos, esse tipo de intervenção cirúrgica ganhou destaque devido ao aumento na busca por procedimentos reparadores após significativa perda de peso. O texto enfatiza a importância da flancoplastia, técnica que visa melhorar o contorno corporal. Métodos: Foi realizada revisão da literatura para elucidação da anatomia da gordura profunda da fáscia toracolombar, e feito um paralelo com a técnica de flancoplastia utilizada em nosso serviço em pacientes pós-bariátricos submetidos a abdominoplastia 360° ou 270° no Hospital Daher Lago Sul, em Brasília- DF. Resultados: A lipoaspiração profunda dos flancos, muitas vezes necessária em cirurgias de contorno corporal, pode não ser suficiente para retirar a gordura profunda à fáscia toracolombar e durante esse procedimento observa-se risco aumentado de lesões retroperitoneais. No entanto, a flancoplastia, que envolve a ressecção da gordura profunda à fáscia toracolombar, demonstrou proporcionar resultados satisfatórios e minimizar esses riscos. Conclusão: O estudo enfoca a importância do conhecimento anatômico preciso, destacando a relevância da flancoplastia como uma técnica valiosa para melhorar os resultados estéticos e reduzir complicações em pacientes pós-bariátricos, complementando a cirurgia bariátrica e melhorando a qualidade de vida do paciente.


Introduction: The study explores body contouring surgery in patients undergoing bariatric surgery. In recent years, this type of surgical intervention has gained prominence due to the increase in the search for reparative procedures after significant weight loss. The text emphasizes the importance of flankplasty, a technique that aims to improve body contour. Methods: A literature review was carried out to elucidate the anatomy of the deep fat of the thoracolumbar fascia, and a parallel was made with the flankplasty technique used in our service in post-bariatric patients undergoing 360° or 270° abdominoplasty at Daher Lago Sul Hospital, in Brasília-DF. Results: Deep liposuction of the flanks, often necessary in body contouring surgeries, may not be sufficient to remove fat deep into the thoracolumbar fascia and during this procedure, there is an increased risk of retroperitoneal injuries. However, flankplasty, which involves resection of fat deep into the thoracolumbar fascia, has been shown to provide satisfactory results and minimize these risks. Conclusion: The study focuses on the importance of precise anatomical knowledge, highlighting the relevance of flankplasty as a valuable technique to improve aesthetic results and reduce complications in post-bariatric patients, complementing bariatric surgery and improving the patient's quality of life.

3.
Mol Cell Endocrinol ; 593: 112343, 2024 Nov 01.
Article in English | MEDLINE | ID: mdl-39147263

ABSTRACT

Tributyltin (TBT) is an organotin compound that has several adverse health effects, including the development of obesity. Although obesity is strongly associated with adipose redox imbalance, there is a lack of information on whether TBT promotes a pro-oxidative environment in WAT. Thus, adult male Wistar rats were randomly exposed to either vehicle (ethanol 0.4%) or TBT (1000 ng/kg) for 30 days. Body and fat pad masses, visceral fat morphology, lipid peroxidation, protein carbonylation, redox status markers, and catalase activity were evaluated. TBT promoted increased adiposity and visceral fat, with hypertrophic adipocytes, but did not alter body mass and subcutaneous fat. ROS production and lipid peroxidation were elevated in TBT group, as well as catalase protein expression and activity, although protein oxidation and glutathione peroxidase protein expression remained unchanged. In conclusion, this is the first study to demonstrate that subacute TBT administration leads to visceral adipose redox imbalance, with increased oxidative stress. This enlights the understanding of the metabolic toxic outcomes of continuous exposure to TBT in mammals.


Subject(s)
Adiposity , Catalase , Intra-Abdominal Fat , Lipid Peroxidation , Oxidation-Reduction , Oxidative Stress , Rats, Wistar , Trialkyltin Compounds , Animals , Male , Trialkyltin Compounds/toxicity , Oxidation-Reduction/drug effects , Intra-Abdominal Fat/drug effects , Intra-Abdominal Fat/metabolism , Adiposity/drug effects , Oxidative Stress/drug effects , Lipid Peroxidation/drug effects , Catalase/metabolism , Rats , Reactive Oxygen Species/metabolism , Adipose Tissue, White/metabolism , Adipose Tissue, White/drug effects , Protein Carbonylation/drug effects , Glutathione Peroxidase/metabolism
4.
Clin Sci (Lond) ; 138(17): 1071-1087, 2024 Sep 04.
Article in English | MEDLINE | ID: mdl-39136472

ABSTRACT

Perivascular adipose tissue (PVAT) negatively regulates vascular muscle contraction. However, in the context of obesity, the PVAT releases vasoconstrictor substances that detrimentally affect vascular function. A pivotal player in this scenario is the peptide endothelin-1 (ET-1), which induces oxidative stress and disrupts vascular function. The present study postulates that obesity augments ET-1 production in the PVAT, decreases the function of the nuclear factor erythroid 2-related factor-2 (Nrf2) transcription factor, further increasing reactive oxygen species (ROS) generation, culminating in PVAT dysfunction. Male C57BL/6 mice were fed either a standard or a high-fat diet for 16 weeks. Mice were also treated with saline or a daily dose of 100 mg·kg-1 of the ETA and ETB receptor antagonist Bosentan, for 7 days. Vascular function was evaluated in thoracic aortic rings, with and without PVAT. Mechanistic studies utilized PVAT from all groups and cultured WT-1 mouse brown adipocytes. PVAT from obese mice exhibited increased ET-1 production, increased ECE1 and ETA gene expression, loss of the anticontractile effect, as well as increased ROS production, decreased Nrf2 activity, and downregulated expression of Nrf2-targeted antioxidant genes. PVAT of obese mice also exhibited increased expression of Tyr216-phosphorylated-GSK3ß and KEAP1, but not BACH1 - negative Nrf2 regulators. Bosentan treatment reversed all these effects. Similarly, ET-1 increased ROS generation and decreased Nrf2 activity in brown adipocytes, events mitigated by BQ123 (ETA receptor antagonist). These findings place ET-1 as a major contributor to PVAT dysfunction in obesity and highlight that pharmacological control of ET-1 effects restores PVAT's cardiovascular protective role.


Subject(s)
Adipose Tissue , Down-Regulation , Endothelin-1 , Mice, Inbred C57BL , NF-E2-Related Factor 2 , Obesity , Reactive Oxygen Species , Animals , Endothelin-1/metabolism , Obesity/metabolism , Obesity/physiopathology , Male , Adipose Tissue/metabolism , NF-E2-Related Factor 2/metabolism , Reactive Oxygen Species/metabolism , Bosentan/pharmacology , Diet, High-Fat , Mice , Oxidative Stress , Receptor, Endothelin A/metabolism , Receptor, Endothelin A/genetics , Endothelin-Converting Enzymes/metabolism , Aorta, Thoracic/metabolism , Aorta, Thoracic/drug effects , Aorta, Thoracic/physiopathology
5.
J Cell Physiol ; : e31397, 2024 Aug 01.
Article in English | MEDLINE | ID: mdl-39091018

ABSTRACT

Chronic and excessive glucocorticoid (GC) exposure can cause Cushing's syndrome, resulting in fat accumulation in selected body areas. Particularly in the brown adipose tissue (BAT), GC acts negatively, resulting in whitening of the tissue. We hypothesized that dysregulation of microRNAs by GC could be an additional mechanism to explain its negative actions in BAT. Male Wistar rats were divided into two groups: (1) Control sham and (2) GC group that was administered dexamethasone 6.25 mg/200 µL via osmotic pump implantation over 28 days. After this period, the animals were euthanized and BAT tissue was properly stored. Human fat cells treated with dexamethasone were used to translate the experimental results found in animals to human biology. GC-treated rat BAT presented with large lipid droplets, severely impaired thermogenic activation, and reduced glucose uptake measured by 18F-FDG PET/CT. GC exposure induced a reduction in the mitochondrial OXPHOS system and oxygen consumption. MicroRNA profiling of BAT revealed five top-regulated microRNAs and among them miR-21-5p was the most significantly upregulated in GC-treated rats compared to the control group. Although upregulation of miR-21-5p in the tissue, differentiated primary brown adipocytes from GC-treated rats had decreased miR-21-5p levels compared to the control group. To translate these results to the clinic, human brown adipocytes were treated with dexamethasone and miR-21-5p inhibitor. In human brown cells, inhibition of miR-21-5p increased brown adipocyte differentiation and prevented GC-induced glucose uptake, resulting in a lower glycolysis rate. In conclusion, high-dose GC therapy significantly impacts brown adipose tissue function, with a notable association between glucose uptake and miR-21-5p.

6.
Inflamm Res ; 73(9): 1565-1579, 2024 Sep.
Article in English | MEDLINE | ID: mdl-39017739

ABSTRACT

OBJECTIVE AND DESIGN: Kinin B1 receptor (B1R) has a key role in adipocytes to protect against obesity and glycemic metabolism, thus becoming a potential target for regulation of energy metabolism and adipose tissue thermogenesis. MATERIAL OR SUBJECTS: Kinin B1 knockout mice (B1KO) were subjected to acute induction with CL 316,243 and chronic cold exposure. METHODS: Metabolic and histological analyses, gene and protein expression and RNA-seq were performed on interscapular brown adipose tissue (iBAT) and inguinal white adipose tissue (iWAT) of mice. RESULTS: B1KO mice, under acute effect of CL 316,243, exhibited increased energy expenditure and upregulated thermogenic genes in iWAT. They were also protected from chronic cold, showing enhanced non-shivering thermogenesis with increased iBAT mass (~ 90%) and recruitment of beige adipocytes in iWAT (~ 50%). Positive modulation of thermogenic and electron transport chain genes, reaching a 14.5-fold increase for Ucp1 in iWAT. RNA-seq revealed activation of the insulin signaling pathways for iBAT and oxidative phosphorylation, tricarboxylic acid cycle, and browning pathways for iWAT. CONCLUSION: B1R deficiency induced metabolic and gene expression alterations in adipose tissue, activating thermogenic pathways and increasing energy metabolism. B1R antagonists emerge as promising therapeutic targets for regulating obesity and associated metabolic disorders, such as inflammation and diabetes.


Subject(s)
Adipose Tissue, Brown , Adipose Tissue, White , Dioxoles , Mice, Knockout , Receptor, Bradykinin B1 , Thermogenesis , Animals , Male , Mice , Adipose Tissue, Brown/metabolism , Adipose Tissue, Brown/drug effects , Adipose Tissue, White/metabolism , Adipose Tissue, White/drug effects , Adrenergic beta-3 Receptor Agonists/pharmacology , Cold Temperature , Dioxoles/pharmacology , Energy Metabolism/drug effects , Mice, Inbred C57BL , Receptor, Bradykinin B1/genetics , Receptor, Bradykinin B1/metabolism , Receptors, Adrenergic, beta-3/genetics , Receptors, Adrenergic, beta-3/metabolism , Thermogenesis/drug effects , Thiazoles/pharmacology , Uncoupling Protein 1/genetics , Uncoupling Protein 1/metabolism
7.
Bioengineering (Basel) ; 11(7)2024 Jul 10.
Article in English | MEDLINE | ID: mdl-39061779

ABSTRACT

INTRODUCTION: Peripheral nerve injury (PNI) is increasingly prevalent and challenging to treat despite advances in microsurgical techniques. In this context, adipose tissue derivatives, such as adipose-derived stem cells, nanofat, and stromal vascular fraction have been gaining attention as potential allies in peripheral nerve regeneration. OBJECTIVES: This study aims to explore the use of adipose tissue derivatives in nerve regeneration following peripheral nerve transection in murine models. Thus, we assess and synthesize the key techniques and methods used for evaluating the obtained nerve regeneration to guide future experimental research and clinical interventions. METHODOLOGY: A systematic review was conducted in February 2024, adhering to the Cochrane and PRISMA 2020 guidelines, using the PubMed, SciELO, and LILACS databases. The focus was on experimental studies involving adipose tissue derivatives in nerve regeneration in animal models post-transection. Only experimental trials reporting nerve regeneration outcomes were included; studies lacking a comparator group or evaluation methods were excluded. RESULTS: Out of 273 studies initially identified from MEDLINE, 19 were selected for detailed analysis. The average study included 32.5 subjects, with about 10.2 subjects per intervention subgroup. The predominant model was the sciatic nerve injury with a 10 mm gap. The most common intervention involved unprocessed adipose-derived stem cells, utilized in 14 articles. CONCLUSIONS: This review underscores the significant potential of current methodologies in peripheral nerve regeneration, particularly highlighting the use of murine models and thorough evaluation techniques.

8.
Int J Mol Sci ; 25(14)2024 Jul 11.
Article in English | MEDLINE | ID: mdl-39062847

ABSTRACT

Mesenchymal stem/stromal cells (MSCs) and their extracellular vesicles (MSC-EVs) have been described to have important roles in tissue regeneration, including tissue repair, control of inflammation, enhancing angiogenesis, and regulating extracellular matrix remodeling. MSC-EVs have many advantages for use in regeneration therapies such as facility for dosage, histocompatibility, and low immunogenicity, thus possessing a lower possibility of rejection. In this work, we address the potential activity of MSC-EVs isolated from adipose-derived MSCs (ADMSC-EVs) cultured on cross-linked dextran microcarriers, applied to test the scalability and reproducibility of EV production. Isolated ADMSC-EVs were added into cultured human dermal fibroblasts (NHDF-1), keratinocytes (HaCat), endothelial cells (HUVEC), and THP-1 cell-derived macrophages to evaluate cellular responses (i.e., cell proliferation, cell migration, angiogenesis induction, and macrophage phenotype-switching). ADMSC viability and phenotype were assessed during cell culture and isolated ADMSC-EVs were monitored by nanotracking particle analysis, electron microscopy, and immunophenotyping. We observed an enhancement of HaCat proliferation; NHDF-1 and HaCat migration; endothelial tube formation on HUVEC; and the expression of inflammatory cytokines in THP-1-derived macrophages. The increased expression of TGF-ß and IL-1ß was observed in M1 macrophages treated with higher doses of ADMSC-EVs. Hence, EVs from microcarrier-cultivated ADMSCs are shown to modulate cell behavior, being able to induce skin tissue related cells to migrate and proliferate as well as stimulate angiogenesis and cause balance between pro- and anti-inflammatory responses in macrophages. Based on these findings, we suggest that the isolation of EVs from ADMSC suspension cultures makes it possible to induce in vitro cellular responses of interest and obtain sufficient particle numbers for the development of in vivo concept tests for tissue regeneration studies.


Subject(s)
Cell Proliferation , Extracellular Vesicles , Macrophages , Mesenchymal Stem Cells , Humans , Mesenchymal Stem Cells/metabolism , Mesenchymal Stem Cells/cytology , Extracellular Vesicles/metabolism , Macrophages/metabolism , Macrophages/cytology , Cell Movement , THP-1 Cells , Fibroblasts/metabolism , Fibroblasts/cytology , Human Umbilical Vein Endothelial Cells/metabolism , Cell Culture Techniques/methods , Cells, Cultured , Keratinocytes/metabolism , Keratinocytes/cytology , Cytokines/metabolism
9.
Diabetol Metab Syndr ; 16(1): 145, 2024 Jul 01.
Article in English | MEDLINE | ID: mdl-38951919

ABSTRACT

INTRODUCTION AND AIM: Type 3 Familial Partial Lipodystrophy (FPLD3) is a rare metabolic disease related to pathogenic PPARG gene variants. FPLD3 is characterized by a loss of fatty tissue in the upper and lower limbs, hips, and face. FPLD3 pathophysiology is usually associated with metabolic comorbidities such as type 2 diabetes, insulin resistance, hypertriglyceridemia, and liver dysfunction. Here, we clinically and molecularly characterized FPLD3 patients harboring novel PPARG pathogenic variants. MATERIALS AND METHODS: Lipodystrophy-suspected patients were recruited by clinicians from an Endocrinology Reference Center. Clinical evaluation was performed, biological samples were collected for biochemical analysis, and DNA sequencing was performed to define the pathogenic variants associated with the lipodystrophic phenotype found in our clinically diagnosed FPLD subjects. Bioinformatics predictions were conducted to characterize the novel mutated PPARγ proteins. RESULTS: We clinically described FPLD patients harboring two novel heterozygous PPARG variants in Brazil. Case 1 had the c.533T > C variant, which promotes the substitution of leucine to proline in position 178 (p.Leu178Pro), and cases 2 and 3 had the c.641 C > T variant, which results in the substitution of proline to leucine in the position 214 (p.Pro214Leu) at the PPARγ2 protein. These variants result in substantial conformational changes in the PPARγ2 protein. CONCLUSION: Two novel PPARG pathogenic variants related to FPLD3 were identified in a Brazilian FPLD cohort. These data will provide new epidemiologic data concerning FPLD3 and help understand the genotype-phenotype relationships related to the PPARG gene.

10.
Function (Oxf) ; 5(4)2024 Jul 11.
Article in English | MEDLINE | ID: mdl-38984977

ABSTRACT

Cholesteryl ester transfer protein (CETP) increases the atherosclerosis risk by lowering HDL-cholesterol levels. It also exhibits tissue-specific effects independent of HDL. However, sexual dimorphism of CETP effects remains largely unexplored. Here, we hypothesized that CETP impacts the perivascular adipose tissue (PVAT) phenotype and function in a sex-specific manner. PVAT function, gene and protein expression, and morphology were examined in male and female transgenic mice expressing human or simian CETP and their non-transgenic counterparts (NTg). PVAT exerted its anticontractile effect in aortas from NTg males, NTg females, and CETP females, but not in CETP males. CETP male PVAT had reduced NO levels, decreased eNOS and phospho-eNOS levels, oxidative stress, increased NOX1 and 2, and decreased SOD2 and 3 expressions. In contrast, CETP-expressing female PVAT displayed increased NO and phospho-eNOS levels with unchanged NOX expression. NOX inhibition and the antioxidant tempol restored PVAT anticontractile function in CETP males. Ex vivo estrogen treatment also restored PVAT function in CETP males. Moreover, CETP males, but not female PVAT, show increased inflammatory markers. PVAT lipid content increased in CETP males but decreased in CETP females, while PVAT cholesterol content increased in CETP females. CETP male PVAT exhibited elevated leptin and reduced Prdm16 (brown adipocyte marker) expression. These findings highlight CETP sex-specific impact on PVAT. In males, CETP impaired PVAT anticontractile function, accompanied by oxidative stress, inflammation, and whitening. Conversely, in females, CETP expression increased NO levels, induced an anti-inflammatory phenotype, and preserved the anticontractile function. This study reveals sex-specific vascular dysfunction mediated by CETP.


Subject(s)
Adipose Tissue , Cholesterol Ester Transfer Proteins , Mice, Transgenic , Oxidative Stress , Cholesterol Ester Transfer Proteins/metabolism , Cholesterol Ester Transfer Proteins/genetics , Animals , Male , Female , Mice , Adipose Tissue/metabolism , Humans , Sex Characteristics , Nitric Oxide/metabolism
11.
Front Nutr ; 11: 1387521, 2024.
Article in English | MEDLINE | ID: mdl-39010858

ABSTRACT

Introduction: Obesity is a complex disease that predisposes individuals to cardiometabolic alterations. It leads to adipose tissue (AT) dysfunction, which triggers insulin resistance (IR). This suggests that people with obesity develop local IR first and systemic IR later. AT secretes extracellular vesicles, which may be physiopathologically associated with the development of IR. Our aim was to evaluate the effect of a high-fat diet on different parameters of adiposity in a rat model of early-stage obesity and to determine if these parameters are associated with markers of systemic IR. In addition, we sought to explore the relationship between fasting blood measures of IR (Triglycerides/High Density Lipoprotein-cholesterol [TAG/HDL-c] and Triglycerides-Glucose Index [TyG Index]) with the size of adipocyte-derived extracellular vesicles (adEV). Methods: We used a model of diet-induced obesity for ten weeks in Wistar rats exposed to a high-fat diet. Final weight gain was analyzed by Dual X-ray absorptiometry. Visceral obesity was measured as epididymal AT weight. IR was evaluated with fasting TyG Index & TAG/HDL-c, and adEV were isolated from mature adipocytes on ceiling culture. Results: In the high-fat diet group, glucose and triglyceride blood concentrations were higher in comparison to the control group (Log2FC, 0.5 and 1.5 times higher, respectively). The values for TyG Index and adEV size were different between the control animals and the high-fat diet group. Multiple linear regression analyses showed that adEV size can be significantly associated with the TyG Index value, when controlling for epididymal AT weight. Conclusion: Our results show that lipid and glucose metabolism, as well as the size and zeta potential of adEV are already altered in early-stage obesity and that adEV size can be significantly associated with liver and systemic IR, estimated by TyG Index.

12.
J Neurochem ; 168(9): 2893-2907, 2024 Sep.
Article in English | MEDLINE | ID: mdl-38934224

ABSTRACT

Gut dysbiosis is linked to metabolic and neurodegenerative diseases and comprises a plausible link between high-fat diet (HFD) and brain dysfunction. Here we show that gut microbiota modulation by either antibiotic treatment for 5 weeks or a brief 3-day fecal microbiota transplantation (FMT) regimen from low-fat (control) diet-fed mice decreased weight gain, adipose tissue hypertrophy, and glucose intolerance induced by HFD in C57BL/6 male mice. Notably, gut microbiota modulation by FMT completely reversed impaired recognition memory induced by HFD, whereas modulation by antibiotics had less pronounced effect. Improvement in recognition memory by FMT was accompanied by decreased HFD-induced astrogliosis in the hippocampal cornu ammonis region. Gut microbiome composition analysis indicated that HFD diminished microbiota diversity compared to control diet, whereas FMT partially restored the phyla diversity. Our findings reinforce the role of the gut microbiota on HFD-induced cognitive impairment and suggest that modulating the gut microbiota may be an effective strategy to prevent metabolic and cognitive dysfunction associated with unfavorable dietary patterns.


Subject(s)
Diet, High-Fat , Fecal Microbiota Transplantation , Gastrointestinal Microbiome , Memory Disorders , Mice, Inbred C57BL , Animals , Diet, High-Fat/adverse effects , Fecal Microbiota Transplantation/methods , Male , Memory Disorders/prevention & control , Memory Disorders/etiology , Mice , Gastrointestinal Microbiome/physiology , Hippocampus , Glucose Intolerance
13.
Meat Sci ; 216: 109553, 2024 Oct.
Article in English | MEDLINE | ID: mdl-38876041

ABSTRACT

The inclusion of by-product coconut mesocarp skins (CMS) in diets was evaluated in feedlot lambs. The objective of this study was to evaluate CMS levels effects on carcass traits and meat quality of lambs. Thirty-five male lambs with an initial body weight of 16.9 ± 2.93 kg were distributed in a completely randomized design with five CMS levels in total dry matter (0; 4.8; 9.6; 14.4 and 19.2%) and fed during 71 d until slaughter. High levels of CMS decreased the intake of dry matter and negatively affected the performance of lambs. Fat and protein contents of Longissimus lumborum muscle (P < 0.05) and the saturated fatty acid (FA) decreased (P < 0.001) whereas polyunsaturated FA increased (P < 0.01) with the inclusion of CMS. The ratio t10/t11-18:1 increased with the inclusion of CMS (P < 0.001). The instrumental color descriptors were unaffected by CMS levels. According to the effects on the investigated meat quality traits we recommend up to 4.8% CMS in diets of confined lambs.


Subject(s)
Animal Feed , Cocos , Diet , Fatty Acids , Muscle, Skeletal , Red Meat , Sheep, Domestic , Animals , Male , Cocos/chemistry , Animal Feed/analysis , Red Meat/analysis , Diet/veterinary , Fatty Acids/analysis , Muscle, Skeletal/chemistry , Color , Body Composition
14.
Lifestyle Genom ; 17(1): 72-81, 2024.
Article in English | MEDLINE | ID: mdl-38889698

ABSTRACT

INTRODUCTION: Obesity, characterized by excess adipose tissue, is a major public health problem worldwide. Brown adipose tissue (BAT) and beige adipose tissue participate in thermogenesis through uncoupling protein 1 (UCP1). Polyphenols including those from Calafate (a native polyphenol-rich Patagonian berry), are considered as potential anti-obesity compounds due to their pro-thermogenic characteristics. However, polyphenols are mainly metabolized by the gut microbiota (GM) that may influence their bioactivity and bioavailability. The aim of this study was to determine the impact of dietary administration with a Calafate polyphenol-rich extract on thermogenic activity of BAT and beige adipose tissue and GM composition. METHODS: Eight-week-old C57BL6 mice (n = 30) were divided into 4 groups to receive for 24 weeks a control diet (C), a high-fat diet alone (HF), or high-fat diet supplemented with Calafate extract (HFC) or the same high-fat diet supplemented with Calafate extract but treated with antibiotics (HFCAB) from week 19-20. Administration with Calafate extract (50 mg/kg per day) was carried out for 3 weeks from week 21-23 in the HFC and HFCAB groups. After euthanasia, gene expression of thermogenic markers was analyzed in BAT and inguinal white adipose tissue (iWAT). Transmission electron microscopy was performed to assess mitochondrial morphology and cristae density in BAT. GM diversity and composition were characterized by deep sequencing with the MiSeq Illumina platform. RESULTS: Calafate extract administration had no effect on weight gain in mice fed a high-fat diet. However, it prevented alterations in mitochondrial cristae induced by HFD and increased Dio2 expression in BAT and iWAT. The intervention also influenced the GM composition, preventing changes in specific bacterial taxa induced by the high-fat diet. However, the antibiotic treatment prevented in part these effects, suggesting the implications of GM. CONCLUSION: These results suggest that the acute administration of a Calafate extract modulates the expression of thermogenic markers, prevents alterations in mitochondrial cristae and intestinal microbiota in preclinical models. The study highlights the complex interaction between polyphenols, thermogenesis, and the GM, providing valuable insights into their potential roles in the treatment of obesity-related metabolic diseases.


Subject(s)
Adipose Tissue, Brown , Diet, High-Fat , Gastrointestinal Microbiome , Mice, Inbred C57BL , Plant Extracts , Thermogenesis , Animals , Gastrointestinal Microbiome/drug effects , Thermogenesis/drug effects , Mice , Adipose Tissue, Brown/drug effects , Adipose Tissue, Brown/metabolism , Plant Extracts/pharmacology , Male , Obesity/metabolism , Uncoupling Protein 1/metabolism , Adipose Tissue, Beige/drug effects , Adipose Tissue, Beige/metabolism , Adipose Tissue, White/drug effects , Adipose Tissue, White/metabolism , Biomarkers
15.
Article in English | MEDLINE | ID: mdl-38846009

ABSTRACT

Central obesity is characterized by visceral adipose tissue (VAT) expansion, considered one of the main risk factors for metabolic complications. In recent years, new drugs have been studied for obesity treatment. Liraglutide (LGT), a GLP-1 agonist, decreases body weight, however, several mechanisms of action on VAT are still unknown. Aim: to study the effect of LGT on factors associated with VAT remodeling and mitochondrial dynamics in mice fed a high-fat diet (HFD). Methods: C57BL/6 mice were divided into Control (C) and HFD. After 15 weeks of feeding, each group was subdivided according to LGT administration for 5 weeks: C, C + LGT, HFD, and HFD + LGT. In epididymal AT (EAT) we evaluated histological and mitochondrial characteristics, vascularity, gelatinase activity (MMPs), and galectin-3 expression. Results: HFD presented larger adipocytes (p < 0.05), and lower vascular density and MMP-9 activity (p < 0.01) than C, while a major number of smaller adipocytes (p < 0.05) and an increase in vascularity (p < 0.001) and MMP-9 activity (p < 0.01) was observed in HFD + LGT. Collagen content was higher (p < 0.05) in EAT from HFD and decreased in HFD + LGT. In C, C + LGT, and HFD + LGT, mitochondria were predominantly tubular-shaped while in HFD mitochondria were mostly spherical (p < 0.001). Conclusion: LGT positively influences VAT behavior by modulating gelatinase activity, enhancing vascularization, and improving adipocyte histological characteristics. Additionally, LGT improves mitochondrial dynamics, a process that would favor VAT functionality.

16.
Rev Invest Clin ; 76(2): 65-79, 2024 02 15.
Article in English | MEDLINE | ID: mdl-38718804

ABSTRACT

UNASSIGNED: Excess body weight has become a global epidemic and a significant risk factor for developing chronic diseases, which are the leading causes of worldwide morbidities. Adipose tissue (AT), primarily composed of adipocytes, stores substantial amounts of energy and plays a crucial role in maintaining whole-body glucose and lipid metabolism. This helps prevent excessive body fat accumulation and lipotoxicity in peripheral tissues. In addition, AT contains endothelial cells and a substantial population of immune cells (constituting 60-70% of non-adipocyte cells), including macrophages, T and B lymphocytes, and natural killer cells. These resident immune cells engage in crosstalk with adipocytes, contributing to the maintenance of metabolic and immune homeostasis in AT. An exacerbated inflammatory response or inadequate immune resolution can lead to chronic systemic low-grade inflammation, triggering the development of metabolic alterations and the onset of chronic diseases. This review aims to elucidate the regulatory mechanisms through which immune cells influence AT function and energy homeostasis. We also focus on the interactions and functional dynamics of immune cell populations, highlighting their role in maintaining the delicate balance between metabolic health and obesity-related inflammation. Finally, understanding immunometabolism is crucial for unraveling the pathogenesis of metabolic diseases and developing targeted immunotherapeutic strategies. These strategies may offer innovative avenues in the rapidly evolving field of immunometabolism. (Rev Invest Clin. 2024;76(2):65-79).


Subject(s)
Adipose Tissue , Inflammation , Metabolic Diseases , Obesity , Humans , Adipose Tissue/metabolism , Adipose Tissue/immunology , Obesity/immunology , Obesity/metabolism , Inflammation/immunology , Inflammation/metabolism , Metabolic Diseases/immunology , Metabolic Diseases/metabolism , Metabolic Diseases/etiology , Energy Metabolism/physiology , Adipocytes/metabolism , Adipocytes/immunology , Lipid Metabolism/physiology , Animals , Homeostasis
17.
Am J Physiol Endocrinol Metab ; 327(1): E13-E26, 2024 Jul 01.
Article in English | MEDLINE | ID: mdl-38717362

ABSTRACT

Adipose tissue metabolism is actively involved in the regulation of energy balance. Adipose-derived stem cells (ASCs) play a critical role in maintaining adipose tissue function through their differentiation into mature adipocytes (Ad). This study aimed to investigate the impact of an obesogenic environment on the epigenetic landscape of ASCs and its impact on adipocyte differentiation and its metabolic consequences. Our results showed that ASCs from rats on a high-fat sucrose (HFS) diet displayed reduced adipogenic capacity, increased fat accumulation, and formed larger adipocytes than the control (C) group. Mitochondrial analysis revealed heightened activity in undifferentiated ASC-HFS but decreased respiratory and glycolytic capacity in mature adipocytes. The HFS diet significantly altered the H3K4me3 profile in ASCs on genes related to adipogenesis, mitochondrial function, inflammation, and immunomodulation. After differentiation, adipocytes retained H3K4me3 alterations, confirming the upregulation of genes associated with inflammatory and immunomodulatory pathways. RNA-seq confirmed the upregulation of genes associated with inflammatory and immunomodulatory pathways in adipocytes. Overall, the HFS diet induced significant epigenetic and transcriptomic changes in ASCs, impairing differentiation and causing dysfunctional adipocyte formation.NEW & NOTEWORTHY Obesity is associated with the development of chronic diseases like metabolic syndrome and type 2 diabetes, and adipose tissue plays a crucial role. In a rat model, our study reveals how an obesogenic environment primes adipocyte precursor cells, leading to epigenetic changes that affect inflammation, adipogenesis, and mitochondrial activity after differentiation. We highlight the importance of histone modifications, especially the trimethylation of histone H3 to lysine 4 (H3K4me3), showing its influence on adipocyte expression profiles.


Subject(s)
Adipocytes , Adipogenesis , Adipose Tissue , Diet, High-Fat , Epigenesis, Genetic , Histones , Transcriptome , Animals , Rats , Adipocytes/metabolism , Diet, High-Fat/adverse effects , Histones/metabolism , Male , Adipogenesis/genetics , Adipogenesis/physiology , Adipose Tissue/metabolism , Cell Differentiation/genetics , Stem Cells/metabolism , Obesity/metabolism , Obesity/genetics , Cellular Reprogramming/physiology , Cells, Cultured , Rats, Wistar , Rats, Sprague-Dawley
18.
Endocrinology ; 165(6)2024 Apr 29.
Article in English | MEDLINE | ID: mdl-38712392

ABSTRACT

Long-term ß-adrenoceptor (ß-AR) stimulation is a pathological mechanism associated with cardiovascular diseases resulting in endothelial and perivascular adipose tissue (PVAT) dysfunction. In this study, we aimed to identify whether ß-adrenergic signaling has a direct effect on PVAT. Thoracic aorta PVAT was obtained from male Wistar rats and cultured ex vivo with the ß-AR agonist isoproterenol (Iso; 1 µM) or vehicle for 24 hours. Conditioned culture medium (CCM) from Iso-treated PVAT induced a marked increase in aorta contractile response, induced oxidative stress, and reduced nitric oxide production in PVAT compared to vehicle. In addition, Iso-treated PVAT and PVAT-derived differentiated adipocytes exhibited higher corticosterone release and protein expression of 11ß-hydroxysteroid dehydrogenase type 1 (11ß-HSD1), an enzyme responsible for de novo synthesis of corticosterone. Macrophages exposed to Iso also exhibited increased corticosterone release in response to ß-AR stimulation. Incubation of Iso-treated PVAT and PVAT-derived differentiated adipocytes with ß3-AR antagonist restored aorta contractile function modulated by Iso-CCM and normalized 11ß-HSD1 protein expression. These results show that ß3-AR signaling leads to upregulation of 11ß-HSD1 in PVAT, thus increasing corticosterone release and contributing to impair the anticontractile function of this tissue.


Subject(s)
11-beta-Hydroxysteroid Dehydrogenase Type 1 , Corticosterone , Isoproterenol , Animals , Male , Rats , 11-beta-Hydroxysteroid Dehydrogenase Type 1/metabolism , 11-beta-Hydroxysteroid Dehydrogenase Type 1/genetics , Adipocytes/metabolism , Adipocytes/drug effects , Adipose Tissue/metabolism , Adrenergic beta-Agonists/pharmacology , Aorta, Thoracic/drug effects , Aorta, Thoracic/metabolism , Corticosterone/metabolism , Culture Media, Conditioned/pharmacology , Isoproterenol/pharmacology , Nitric Oxide/metabolism , Oxidative Stress/drug effects , Rats, Wistar , Receptors, Adrenergic, beta/metabolism
19.
Article in English | MEDLINE | ID: mdl-38751673

ABSTRACT

Background: Autologous fat transfer (AFT) is gaining popularity in breast surgery, offering a natural-looking and minimally invasive approach for augmentation, reconstruction, and contouring. However, concerns about its impact on breast cancer necessitate an understanding of the interplay between transplanted adipose-derived stem cells (ADSCs) and the breast tissue microenvironment. Renowned for regeneration, ADSCs raise questions about their role in cancer promotion. This systematic review delves into the complex relationship between AFT and breast cancer, exploring how ADSCs may influence development, growth, and metastasis. Methods: A systematic search of electronic databases, including PubMed, Embase, and BVS was conducted to identify relevant studies. The search strategy employed a combination of keywords, including "breast augmentation", "fat grafting", "breast enhancement", "mammoplasty", "cancer", "neoplasm" and related terms. Two reviewers independently screened titles and abstracts. Full-text articles were then retrieved for further evaluation based on their potential contribution to the review objectives. Results: Two hundred and forty records were identified. Among these, 104 duplicates were removed, resulting in 136 reports available for title and abstract screening. Subsequently, 54 papers were deemed potentially eligible for inclusion, and all reports were retrieved. Conclusions: In vitro studies reveal ADSCs dual role in breast cancer, influencing proliferation, migration, and drug resistance through complex signaling pathways. Animal studies highlight distinct ADSC subpopulations impacting tumor growth via direct interactions and extracellular vesicle cargo. In vivo, ADSC-enriched fat grafting is generally safe, showing no increased cancer recurrence risk compared to other methods. Notably, cases of invasive breast carcinoma warrant special attention. ADSC-enriched fat grafts exhibit potential benefits in graft retention and survival rates. Despite promising evidence, further studies are needed to comprehensively understand the intricate relationship between ADSCs and breast cancer for optimized clinical applications and potential therapeutic innovations.

20.
Biol Res ; 57(1): 20, 2024 May 02.
Article in English | MEDLINE | ID: mdl-38698488

ABSTRACT

BACKGROUND: Diabetes mellitus (DM) is a global epidemic with increasing incidences. DM is a metabolic disease associated with chronic hyperglycemia. Aside from conventional treatments, there is no clinically approved cure for DM up till now. Differentiating mesenchymal stem cells (MSCs) into insulin-producing cells (IPCs) is a promising approach for curing DM. Our study was conducted to investigate the effect of DM on MSCs differentiation into IPCs in vivo and in vitro. METHODS: We isolated adipose-derived mesenchymal stem cells (Ad-MSCs) from the epididymal fat of normal and STZ-induced diabetic Sprague-Dawley male rats. Afterwards, the in vitro differentiation of normal-Ad-MSCs (N-Ad-MSCs) and diabetic-Ad-MSCs (DM-Ad-MSCs) into IPCs was compared morphologically then through determining the gene expression of ß-cell markers including neurogenin-3 (Ngn-3), homeobox protein (Nkx6.1), musculoaponeurotic fibrosarcoma oncogene homolog A (MafA), and insulin-1 (Ins-1) and eventually, through performing glucose-stimulated insulin secretion test (GSIS). Finally, the therapeutic potential of N-Ad-MSCs and DM-Ad-MSCs transplantation was compared in vivo in STZ-induced diabetic animals. RESULTS: Our results showed no significant difference in the characteristics of N-Ad-MSCs and DM-Ad-MSCs. However, we demonstrated a significant difference in their abilities to differentiate into IPCs in vitro morphologically in addition to ß-cell markers expression, and functional assessment via GSIS test. Furthermore, the abilities of both Ad-MSCs to control hyperglycemia in diabetic rats in vivo was assessed through measuring fasting blood glucose (FBGs), body weight (BW), histopathological examination of both pancreas and liver and immunoexpression of insulin in pancreata of study groups. CONCLUSION: Our findings reveal the effectiveness of N-Ad-MSCs in differentiating into IPCs in vitro and controlling the hyperglycemia of STZ-induced diabetic rats in vivo compared to DM-Ad-MSCs.


Subject(s)
Cell Differentiation , Diabetes Mellitus, Experimental , Insulin-Secreting Cells , Insulin , Mesenchymal Stem Cells , Rats, Sprague-Dawley , Animals , Cell Differentiation/physiology , Diabetes Mellitus, Experimental/therapy , Male , Insulin-Secreting Cells/metabolism , Insulin/metabolism , Rats , Mesenchymal Stem Cell Transplantation/methods , Cells, Cultured , Streptozocin , Blood Glucose/analysis
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