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1.
Int J Mol Sci ; 22(22)2021 Nov 22.
Article in English | MEDLINE | ID: mdl-34830444

ABSTRACT

A dome-shaped elastic poly(l-lactide-co-caprolactone) (PLCL) scaffold with a channel and pore structure was fabricated by a combinative method of 3D printing technology and the gel pressing method (13 mm in diameter and 6.5 mm in thickness) for patient-specific regeneration. The PLCL scaffold was combined with adipose decellularized extracellular matrix (adECM) and heart decellularized extracellular matrix (hdECM) hydrogels and human adipose-derived stem cells (hADSCs) to promote adipogenesis and angiogenesis. These scaffolds had mechanical properties similar to those of native adipose tissue for improved tissue regeneration. The results of the in vitro real-time PCR showed that the dECM hydrogel mixture induces adipogenesis. In addition, the in vivo study at 12 weeks demonstrated that the tissue-engineered PLCL scaffolds containing the hydrogel mixture (hdECM/adECM (80:20)) and hADSCs promoted angiogenesis and adipose tissue formation, and suppressed apoptosis. Therefore, we expect that our constructs will be clinically applicable as material for the regeneration of patient-specific large-sized adipose tissue.


Subject(s)
Adipogenesis/drug effects , Adipose Tissue/growth & development , Neovascularization, Physiologic/drug effects , Regeneration/genetics , Adipose Tissue/transplantation , Animals , Apoptosis/drug effects , Decellularized Extracellular Matrix/pharmacology , Gene Expression Regulation, Developmental/drug effects , Humans , Hydrogels/chemistry , Hydrogels/pharmacology , Mesenchymal Stem Cells/cytology , Mice , Myocardium/cytology , Myocardium/metabolism , Neovascularization, Physiologic/genetics , Polyesters/pharmacology , Printing, Three-Dimensional , Regeneration/drug effects
2.
PLoS Med ; 18(9): e1003751, 2021 09.
Article in English | MEDLINE | ID: mdl-34499663

ABSTRACT

BACKGROUND: The potential benefits of gaining body muscle for cardiovascular disease (CVD) susceptibility, and how these compare with the potential harms of gaining body fat, are unknown. We compared associations of early life changes in body lean mass and handgrip strength versus body fat mass with atherogenic traits measured in young adulthood. METHODS AND FINDINGS: Data were from 3,227 offspring of the Avon Longitudinal Study of Parents and Children (39% male; recruited in 1991-1992). Limb lean and total fat mass indices (kg/m2) were measured using dual-energy X-ray absorptiometry scans performed at age 10, 13, 18, and 25 y (across clinics occurring from 2001-2003 to 2015-2017). Handgrip strength was measured at 12 and 25 y, expressed as maximum grip (kg or lb/in2) and relative grip (maximum grip/weight in kilograms). Linear regression models were used to examine associations of change in standardised measures of these exposures across different stages of body development with 228 cardiometabolic traits measured at age 25 y including blood pressure, fasting insulin, and metabolomics-derived apolipoprotein B lipids. SD-unit gain in limb lean mass index from 10 to 25 y was positively associated with atherogenic traits including very-low-density lipoprotein (VLDL) triglycerides. This pattern was limited to lean gain in legs, whereas lean gain in arms was inversely associated with traits including VLDL triglycerides, insulin, and glycoprotein acetyls, and was also positively associated with creatinine (a muscle product and positive control). Furthermore, this pattern for arm lean mass index was specific to SD-unit gains occurring between 13 and 18 y, e.g., -0.13 SD (95% CI -0.22, -0.04) for VLDL triglycerides. Changes in maximum and relative grip from 12 to 25 y were both positively associated with creatinine, but only change in relative grip was also inversely associated with atherogenic traits, e.g., -0.12 SD (95% CI -0.18, -0.06) for VLDL triglycerides per SD-unit gain. Change in fat mass index from 10 to 25 y was more strongly associated with atherogenic traits including VLDL triglycerides, at 0.45 SD (95% CI 0.39, 0.52); these estimates were directionally consistent across sub-periods, with larger effect sizes with more recent gains. Associations of lean, grip, and fat measures with traits were more pronounced among males. Study limitations include potential residual confounding of observational estimates, including by ectopic fat within muscle, and the absence of grip measures in adolescence for estimates of grip change over sub-periods. CONCLUSIONS: In this study, we found that muscle strengthening, as indicated by grip strength gain, was weakly associated with lower atherogenic trait levels in young adulthood, at a smaller magnitude than unfavourable associations of fat mass gain. Associations of muscle mass gain with such traits appear to be smaller and limited to gains occurring in adolescence. These results suggest that body muscle is less robustly associated with markers of CVD susceptibility than body fat and may therefore be a lower-priority intervention target.


Subject(s)
Adipose Tissue/growth & development , Adiposity , Cardiovascular Diseases/etiology , Hand Strength , Muscle Development , Muscle, Skeletal/growth & development , Absorptiometry, Photon , Adipose Tissue/diagnostic imaging , Adolescent , Adolescent Development , Adult , Age Factors , Biomarkers/blood , Cardiometabolic Risk Factors , Cardiovascular Diseases/blood , Cardiovascular Diseases/physiopathology , Cardiovascular Diseases/prevention & control , Child , Child Development , England , Female , Humans , Lipids/blood , Longitudinal Studies , Male , Muscle, Skeletal/diagnostic imaging , Protective Factors , Risk Assessment , Young Adult
3.
Am J Physiol Endocrinol Metab ; 321(5): E581-E591, 2021 11 01.
Article in English | MEDLINE | ID: mdl-34459218

ABSTRACT

This study determined if a perturbation in in utero adipogenesis leading to later life adipose tissue (AT) dysfunction underlies programming of cardiometabolic risk in offspring born to dams with metabolic dysfunction. Female mice heterozygous for the leptin receptor deficiency (Hetdb) had 2.4-fold higher prepregnancy fat mass and in late gestation had higher plasma insulin and triglycerides compared with wild-type (Wt) females (P < 0.05). To isolate the role of the intrauterine milieu, wild-type (Wt) offspring from each pregnancy were studied. Differentiation potential in isolated progenitors and cell size distribution analysis revealed accelerated adipogenesis in Wt pups born to Hetdb dams, accompanied by a higher accumulation of neonatal fat mass. In adulthood, whole body fat mass by NMR was higher in male (69%) and female (20%) Wt offspring born to Hetdb versus Wt pregnancies, along with adipocyte hypertrophy and hyperlipidemia (all P < 0.05). Lipidomic analyses by gas chromatography revealed an increased lipogenic index (16:0/18:2n6) after high-fat/fructose diet (HFFD). Postprandial insulin, ADIPO-IR, and ex vivo AT lipolytic responses to isoproterenol were all higher in Wt offspring born to Hetdb dams (P < 0.05). Intrauterine metabolic stimuli may direct a greater proportion of progenitors toward terminal differentiation, thereby predisposing to hypertrophy-induced adipocyte dysfunction.NEW & NOTEWORTHY This study reveals that accelerated adipogenesis during the perinatal window of adipose tissue development predisposes to later life hypertrophic adipocyte dysfunction, thereby compromising the buffering function of the subcutaneous depot.


Subject(s)
Adipogenesis , Adipose Tissue/metabolism , Cardiometabolic Risk Factors , Metabolic Diseases/metabolism , Adipocytes/ultrastructure , Adipose Tissue/embryology , Adipose Tissue/growth & development , Animals , Cell Size , Diet, High-Fat , Female , Fructose/pharmacology , Hyperlipidemias/genetics , Insulin/blood , Lipidomics , Male , Metabolic Diseases/pathology , Mice , Pregnancy , Receptors, Leptin/genetics , Stem Cells , Triglycerides/blood
4.
Int J Obes (Lond) ; 45(11): 2490-2498, 2021 11.
Article in English | MEDLINE | ID: mdl-34331002

ABSTRACT

BACKGROUND: To examine the associations of total and regional adiposity with metabolic and cardiovascular disease (CVD) risk markers. METHODS: This cross-sectional study included 1080 (53.8% men, aged 39-44 years) individuals from South India. Anthropometry (height, weight, waist and hip circumference), body composition assessment using dual-energy X-ray absorptiometry (DXA), blood pressure (BP), and plasma glucose, insulin and lipids were measured. Regression analysis was used to examine associations of standardized fat measurements with type 2 diabetes (T2D), insulin resistance (IR), hypertension and hypertriglyceridemia and continuous measurements of BP, glucose, insulin, HOMA-IR and lipids. Contour plots were constructed to visualize the differential effect of upper and lower fat depots. RESULTS: DXA-measured fat depots were positively associated with metabolic and CVD risk markers. After adjusting for fat mass index, upper body fat remained positively, while lower body fat was negatively associated with risk markers. A one standard deviation (SD) increase in android fat showed higher odds ratios (ORs) for T2D (6.59; 95% CI 3.17, 13.70), IR (4.68; 95% CI 2.31, 9.50), hypertension (2.57; 95% CI 1.56, 4.25) and hypertriglyceridemia (6.39; 95% CI 3.46, 11.90) in men. A 1 SD increase in leg fat showed a protective effect with ORs for T2D (0.42; 95% CI 0.24, 0.74), IR (0.31; 95% CI 0.17, 0.57) and hypertriglyceridemia (0.61; 95% CI 0.38, 0.98). The magnitude of the effect was greater with DXA-measured fat compared with anthropometry. CONCLUSION: At any level of total body fat, upper and lower body fat depots demonstrate opposite risk associations with metabolic and CVD risk markers in Asian Indians.


Subject(s)
Adipose Tissue/growth & development , Heart Disease Risk Factors , Metabolic Diseases/physiopathology , Adipose Tissue/physiopathology , Adult , Body Mass Index , Cross-Sectional Studies , Female , Humans , India , Male , Metabolic Diseases/metabolism
5.
Acta Biochim Pol ; 68(2): 287-292, 2021 May 11.
Article in English | MEDLINE | ID: mdl-33974793

ABSTRACT

The current research aimed to evaluate the effects of dietary inclusion of wood vinegar on growth performance, nutrient digestibility, and meat quality of grower-finisher pigs. In total, 132 crossbred ({Landrace × Yorkshire × Duroc}) grower-finisher pigs with an initial average body weight 30.48±4.23 kg (11 replications/treatment; 4 pigs/pen) were used in a 16-week trial. Based on the body weight and sex the pigs were randomly assigned to three treatments. Dietary treatments consisted of the basal diet (CON) or the basal diet supplemented with 0.05% and 0.1% wood vinegar. The inclusion of dietary wood vinegar supplementation significantly improved the body weight gain (BWG) and average daily gain (ADG) (P=0.0521; 0.043) of pigs at week 16. The total track nutrient digestibility of dry matter and nitrogen was linearly increased in pigs fed with an increased amount of wood vinegar. In addition, dietary supplementation of wood vinegar linearly improved longissimus muscle area, yellowness (b*) of the meat color, and carcass weight (P<0.05) and a tendency in linear reduction was observed for water holding capacity (P=0.068), and drip loss at d5 and d7 (P=0.091, 0.069). However, there was no significant difference found for lean meat percentage and backfat thickness in this experiment. In summary, dietary inclusion of wood vinegar supplementation enhanced growth performance and total track digestibility of nutrients and had no effects on lean meat percentage and backfat thickness of grower-finisher pigs.


Subject(s)
Animal Feed/analysis , Digestion , Meat/analysis , Swine/growth & development , Terpenes/administration & dosage , Acetic Acid/administration & dosage , Adipose Tissue/growth & development , Animals , Diet/methods , Dietary Supplements , Female , Male , Nutrients , Weight Gain
6.
Cell Stem Cell ; 28(10): 1790-1804.e8, 2021 10 07.
Article in English | MEDLINE | ID: mdl-34010627

ABSTRACT

The role of heterochromatin in cell fate specification during development is unclear. We demonstrate that loss of the lysine 9 of histone H3 (H3K9) methyltransferase G9a in the mammary epithelium results in de novo chromatin opening, aberrant formation of the mammary ductal tree, impaired stem cell potential, disrupted intraductal polarity, and loss of tissue function. G9a loss derepresses long terminal repeat (LTR) retroviral sequences (predominantly the ERVK family). Transcriptionally activated endogenous retroviruses generate double-stranded DNA (dsDNA) that triggers an antiviral innate immune response, and knockdown of the cytosolic dsDNA sensor Aim2 in G9a knockout (G9acKO) mammary epithelium rescues mammary ductal invasion. Mammary stem cell transplantation into immunocompromised or G9acKO-conditioned hosts shows partial dependence of the G9acKO mammary morphological defects on the inflammatory milieu of the host mammary fat pad. Thus, altering the chromatin accessibility of retroviral elements disrupts mammary gland development and stem cell activity through both cell-autonomous and non-autonomous mechanisms.


Subject(s)
Endogenous Retroviruses , Histone-Lysine N-Methyltransferase , Mammary Glands, Animal/growth & development , Adipose Tissue/growth & development , Adipose Tissue/immunology , Animals , Endogenous Retroviruses/genetics , Endogenous Retroviruses/metabolism , Female , Histone-Lysine N-Methyltransferase/metabolism , Histones/metabolism , Immunity , Mammary Glands, Animal/immunology
7.
Int J Mol Sci ; 22(6)2021 Mar 12.
Article in English | MEDLINE | ID: mdl-33809175

ABSTRACT

A flexible and bioactive scaffold for adipose tissue engineering was fabricated and evaluated by dual nozzle three-dimensional printing. A highly elastic poly (L-lactide-co-ε-caprolactone) (PLCL) copolymer, which acted as the main scaffolding, and human adipose tissue derived decellularized extracellular matrix (dECM) hydrogels were used as the printing inks to form the scaffolds. To prepare the three-dimensional (3D) scaffolds, the PLCL co-polymer was printed with a hot melting extruder system while retaining its physical character, similar to adipose tissue, which is beneficial for regeneration. Moreover, to promote adipogenic differentiation and angiogenesis, adipose tissue-derived dECM was used. To optimize the printability of the hydrogel inks, a mixture of collagen type I and dECM hydrogels was used. Furthermore, we examined the adipose tissue formation and angiogenesis of the PLCL/dECM complex scaffold. From in vivo experiments, it was observed that the matured adipose-like tissue structures were abundant, and the number of matured capillaries was remarkably higher in the hydrogel-PLCL group than in the PLCL-only group. Moreover, a higher expression of M2 macrophages, which are known to be involved in the remodeling and regeneration of tissues, was detected in the hydrogel-PLCL group by immunofluorescence analysis. Based on these results, we suggest that our PLCL/dECM fabricated by a dual 3D printing system will be useful for the treatment of large volume fat tissue regeneration.


Subject(s)
Adipose Tissue/growth & development , Hydrogels/chemical synthesis , Regeneration/genetics , Tissue Engineering , Adipose Tissue/chemistry , Animals , Cell Adhesion/drug effects , Cell Differentiation/drug effects , Elasticity/drug effects , Extracellular Matrix/drug effects , Humans , Hydrogels/chemistry , Hydrogels/pharmacology , Polymers/chemical synthesis , Polymers/pharmacology , Printing, Three-Dimensional , Tissue Scaffolds/chemistry , Wound Healing/drug effects
8.
Genes Dev ; 35(9-10): 713-728, 2021 05 01.
Article in English | MEDLINE | ID: mdl-33888555

ABSTRACT

MED1 often serves as a surrogate of the general transcription coactivator complex Mediator for identifying active enhancers. MED1 is required for phenotypic conversion of fibroblasts to adipocytes in vitro, but its role in adipose development and expansion in vivo has not been reported. Here, we show that MED1 is not generally required for transcription during adipogenesis in culture and that MED1 is dispensable for adipose development in mice. Instead, MED1 is required for postnatal adipose expansion and the induction of fatty acid and triglyceride synthesis genes after pups switch diet from high-fat maternal milk to carbohydrate-based chow. During adipogenesis, MED1 is dispensable for induction of lineage-determining transcription factors (TFs) PPARγ and C/EBPα but is required for lipid accumulation in the late phase of differentiation. Mechanistically, MED1 controls the induction of lipogenesis genes by facilitating lipogenic TF ChREBP- and SREBP1a-dependent recruitment of Mediator to active enhancers. Together, our findings identify a cell- and gene-specific regulatory role of MED1 as a lipogenesis coactivator required for postnatal adipose expansion.


Subject(s)
Adipose Tissue/growth & development , Gene Expression Regulation, Developmental/genetics , Lipogenesis/genetics , Mediator Complex Subunit 1/genetics , Mediator Complex Subunit 1/metabolism , Adipose Tissue/metabolism , Adipose Tissue, Brown/embryology , Animals , Cells, Cultured , Diet , Mice , Protein Binding/genetics
9.
Int J Mol Sci ; 22(8)2021 Apr 14.
Article in English | MEDLINE | ID: mdl-33919985

ABSTRACT

Tissue engineering strategies promote bone regeneration for large bone defects by stimulating the osteogenesis route via intramembranous ossification in engineered grafts, which upon implantation are frequently constrained by insufficient integration and functional anastomosis of vasculature from the host tissue. In this study, we developed a hybrid biomaterial incorporating decellularized cartilage extracellular matrix (CD-ECM) as a template and silk fibroin (SF) as a carrier to assess the bone regeneration capacity of bone marrow-derived mesenchymal stem cells (hBMSC's) via the endochondral ossification (ECO) route. hBMSC's were primed two weeks for chondrogenesis, followed by six weeks for hypertrophy onto hybrid CD-ECM/SF or SF alone scaffolds and evaluated for the mineralized matrix formation in vitro. Calcium deposition biochemically determined increased significantly from 4-8 weeks in both SF and CD-ECM/SF constructs, and retention of sGAG's were observed only in CD-ECM/SF constructs. SEM/EDX revealed calcium and phosphate crystal localization by hBMSC's under all conditions. Compressive modulus reached a maximum of 40 KPa after eight weeks of hypertrophic induction. µCT scanning at eight weeks indicated a cloud of denser minerals in groups after hypertrophic induction in CD-ECM/SF constructs than SF constructs. Gene expression by RT-qPCR revealed that hBMSC's expressed hypertrophic markers VEGF, COL10, RUNX2, but the absence of early hypertrophic marker ChM1 and later hypertrophic marker TSBS1 and the presence of osteogenic markers ALPL, IBSP, OSX under all conditions. Our data indicate a new method to prime hBMSC'S into the late hypertrophic stage in vitro in mechanically stable constructs for ECO-mediated bone tissue regeneration.


Subject(s)
Bone Regeneration/genetics , Chondrogenesis/genetics , Mesenchymal Stem Cells/cytology , Tissue Engineering , Adipose Tissue/growth & development , Adipose Tissue/metabolism , Animals , Bone and Bones/metabolism , Cartilage/growth & development , Cartilage/metabolism , Cell Differentiation/genetics , Chondrocytes/metabolism , Extracellular Matrix/genetics , Fibroins/chemistry , Fibroins/genetics , Humans , Osteogenesis/genetics , Tissue Scaffolds
10.
Int J Mol Sci ; 22(8)2021 Apr 12.
Article in English | MEDLINE | ID: mdl-33921246

ABSTRACT

Previously, we developed a novel, needle-free waterjet (WJ) technology capable of injecting viable cells by visual guided cystoscopy in the urethral sphincter. In the present study, we aimed to investigate the effect of WJ technology on cell viability, surface markers, differentiation and attachment capabilities, and biomechanical features. Porcine adipose tissue-derived stromal cells (pADSCs) were isolated, expanded, and injected by WJ technology. Cell attachment assays were employed to investigate cell-matrix interactions. Cell surface molecules were analyzed by flow cytometry. Cells injected by Williams Needle (WN), normal cannula, or not injected cells served as controls. Biomechanical properties were assessed by atomic force microscopy (AFM). pADSCs injected by the WJ were viable (85.9%), proliferated well, and maintained their in vitro adipogenic and osteogenic differentiation capacities. The attachment of pADSCs was not affected by WJ injection and no major changes were noted for cell surface markers. AFM measurements yielded a significant reduction of cellular stiffness after WJ injections (p < 0.001). WJ cell delivery satisfies several key considerations required in a clinical context, including the fast, simple, and reproducible delivery of viable cells. However, the optimization of the WJ device may be necessary to further reduce the effects on the biomechanical properties of cells.


Subject(s)
Adipogenesis/genetics , Cell Differentiation/genetics , Mesenchymal Stem Cell Transplantation/methods , Mesenchymal Stem Cells/cytology , Adipose Tissue/growth & development , Animals , Cell Proliferation/genetics , Cell Survival/genetics , Humans , Injections , Osteogenesis/genetics , Stromal Cells/cytology , Stromal Cells/transplantation , Swine
11.
Sci Rep ; 11(1): 6949, 2021 03 26.
Article in English | MEDLINE | ID: mdl-33772049

ABSTRACT

Excessive expansion of adipose tissue in obesity typically leads to overflow and accumulation of lipids in other tissues, causing fatty liver disease and atherosclerosis. The intracellular protein, phosphoprotein enriched in astrocytes (PEA)-15 has been linked to metabolic disease but its role in lipid storage has not been examined. To delineate the role of PEA-15 in adipose tissue, we placed PEA-15-/- mice on a high fat diet. These mice developed increased body weight and greater white adipose tissue expansion compared to high fat diet-fed wild type mice. This was due to increased adipocyte cell size in PEA-15-/- mice consistent with greater lipid storage capacity. Surprisingly, PEA-15-/- mice exhibited improvements in whole body insulin sensitivity, lower hepatic weight and decreased serum triglycerides indicating a protective phenotype. To determine effects on atherosclerosis, PEA-15-/- mice were crossed with the ApoE-/- mice on a high fat diet. Strikingly, these mice were protected from atherosclerosis and had less hepatic lipid accumulation despite increased adiposity. Therefore, we reveal for the first time that PEA-15 plays a novel role in regulating the expansion of adipose tissue. Decreasing PEA-15 expression increases the sequestering of lipids in adipose tissue, protecting other tissues in obesity, thereby improving metabolic health.


Subject(s)
Adipocytes/metabolism , Adipose Tissue/growth & development , Adiposity/genetics , Apoptosis Regulatory Proteins/genetics , Obesity/pathology , 3T3 Cells , Adiposity/physiology , Animals , Apoptosis Regulatory Proteins/metabolism , Astrocytes/metabolism , Atherosclerosis/pathology , Atherosclerosis/prevention & control , Cell Line , Diet, High-Fat , Insulin Resistance/genetics , Mice , Mice, Inbred C57BL , Mice, Knockout , Phosphoproteins/metabolism , Triglycerides/blood
12.
Exp Cell Res ; 401(2): 112548, 2021 04 15.
Article in English | MEDLINE | ID: mdl-33675805

ABSTRACT

Having healthy adipose tissue is essential for metabolic health, as excessive adipose tissue in the body can cause its dysregulation and driving chronic metabolic diseases. Protein kinase D1 (PKD1) is considered to be a key kinase in signal transduction, which regulates multiple cellular functions, but its physiological functions in adipose are still not fully understood. This study aimed at elucidating the function of adipocyte PKD1 on lipogenesis. From RNA-Sequencing data, we found that the fatty acid biosynthesis pathway in white adipose tissue lacking PKD1 was significantly affected. Critical rate-limiting enzymes for de novo lipogenesis in adipocytes, such as FASN, ACCα, and SCD1, were significantly repressed after deleting PKD1 in vivo and in vitro. Further studies revealed that blockade of PKD1 significantly increased phosphorylation of SREBP1c at serine 372 site. Co-immunoprecipitation analysis showed that PKD1 interacts with SREBP1c in vitro and in vivo. Importantly, overexpression of SREBP1c reversed the inhibition of FASN and ACCα expression caused by PKD1 silencing. Together, adipocyte PKD1 promotes de novo lipogenesis via SREBP1c-dependent manner in visceral white adipose tissue and might provide a new target for the development of anti-obesity therapies.


Subject(s)
Adipose Tissue/growth & development , Lipogenesis/genetics , Protein Kinase C/genetics , Sterol Regulatory Element Binding Protein 1/genetics , Adipose Tissue/metabolism , Animals , Gene Silencing , Mice , Mice, Knockout , Organ Specificity/genetics , Signal Transduction/genetics
13.
Sci Rep ; 11(1): 6230, 2021 03 18.
Article in English | MEDLINE | ID: mdl-33737614

ABSTRACT

The purpose of subject was to explore the optimum protein requirement of juvenile grouper (Epinephelus coioides). In the test, 450 juveniles with an average weight (10.02 ± 0.22) g were randomly divided into six groups with triplicate, and were fed with 350, 400, 450, 500, 550 and 600 g/kg iso-lipid test diet twice 1 day for 8 weeks, respectively. The results showed that: (1) With the increase of protein level, the body weight gain rate and specific growth rate first increased and then reduced, while the feed coefficient rate first decreased and then increased, while the protein efficiency significantly decreased (P < 0.05). (2) With the increase of protein level, the condition factor, hepaticsomatic index and visceralsomatic index significantly reduced (P < 0.05). (3) With the increase of protein level, the crude protein content of whole fish and muscle gradually increased, while the crude lipid content gradually decreased. (4) High-protein diet (550-600 g/kg) significantly increased the plasma total protein content and decreased the triglyceride content of orange-spotted grouper (P < 0.05). (5) Compared with the 350 g/kg group, 500, 550, 600 g/kg groups significantly increased the activities of glutamic-pyruvic transaminase and glutamic oxaloacetic transaminase in liver (P < 0.05). (6) With the increase of protein level, the protease activity of intestine first increased and then decreased, and reached the maximum at the protein level of 500 g/kg, while lipase and amylase decreased significantly (P < 0.05). (7) The activities of acid phosphatase, superoxide dismutase and lysozyme in liver increased first and then decreased with the increase of protein level, and reached the maximum in the 400 g/kg protein group. According to the analysis specific growth rate, the optimum protein level of juvenile orange-spotted grouper is 521.84 g/kg.


Subject(s)
Animal Feed/analysis , Dietary Proteins/administration & dosage , Fish Proteins/genetics , Intestines/drug effects , Liver/drug effects , Perciformes/metabolism , Acid Phosphatase/genetics , Acid Phosphatase/metabolism , Adipose Tissue/drug effects , Adipose Tissue/growth & development , Alanine Transaminase/genetics , Alanine Transaminase/metabolism , Amylases/genetics , Amylases/metabolism , Animals , Aspartate Aminotransferases/genetics , Aspartate Aminotransferases/metabolism , Body Composition/drug effects , Body Composition/physiology , Fish Proteins/metabolism , Gene Expression , Intestines/growth & development , Lipase/genetics , Lipase/metabolism , Liver/metabolism , Muramidase/genetics , Muramidase/metabolism , Muscles/drug effects , Muscles/physiology , Peptide Hydrolases/genetics , Peptide Hydrolases/metabolism , Perciformes/genetics , Perciformes/growth & development , Superoxide Dismutase/genetics , Superoxide Dismutase/metabolism , Triglycerides/metabolism , Weight Gain/drug effects , Weight Gain/physiology
14.
Sci Rep ; 11(1): 2999, 2021 02 04.
Article in English | MEDLINE | ID: mdl-33542247

ABSTRACT

This paper presents progress in the automation of cell and tissue systems and attempts toward the in situ feedback control of organs-on-a-chip. Our study aims to achieve feedback control of a cell and tissue system by a personal computer (PC), whereas most studies on organs-on-a-chip focus on the automation of status monitoring. The implemented system is composed of subsystems including automated culture, stimulation, and monitoring. The monitoring function provides imaging as well as sampling and dispensing in combination with an external analyzer. Individual subsystems can be combined accordingly. First, monitoring of skeletal muscle (SM) and adipose tissues using this system was demonstrated. The highlight of this paper is the application of the system to the feedback control of the lipid droplet (LD) size, where biochemical stimulation using insulin and adrenaline is controlled by a PC according to the obtained LD imaging data. In this study, the system demonstrated its function of maintaining the desired size of LDs. Our results expand the possibility of PC-controllable cell and tissue systems by addressing the challenge of feedback control of organs-on-a-chip. The PC-controllable cell and tissue systems will contribute to living systems-on-a-chip based on homeostasis phenomena involving interactions between organs or tissues.


Subject(s)
Automation/methods , Cell Culture Techniques/methods , Lab-On-A-Chip Devices , Organ Culture Techniques/methods , Tissue Culture Techniques/methods , Adipose Tissue/growth & development , Feedback, Physiological , Humans , Muscle, Skeletal/growth & development
15.
Genes (Basel) ; 12(2)2021 01 29.
Article in English | MEDLINE | ID: mdl-33572831

ABSTRACT

As the chick transitions from embryonic to post-hatching life, its metabolism must quickly undergo a dramatic switch in its major energy source. The chick embryo derives most of its energy from the yolk, a lipid-rich/carbohydrate-poor source. Upon hatching, the chick's metabolism must then be able to utilize a lipid-poor/carbohydrate-rich source (feed) as its main form of energy. We recently found that a number of hepatically-expressed microRNAs (miRNAs) help facilitate this shift in metabolic processes in the chick liver, the main site of lipogenesis. While adipose tissue was initially thought to mainly serve as a lipid storage site, it is now known to carry many metabolic, endocrine, and immunological functions. Therefore, it would be expected that adipose tissue is also an important factor in the metabolic switch. To that end, we used next generation sequencing (NGS) and real-time quantitative PCR (RT-qPCR) to generate miRNome and transcriptome signatures of the adipose tissue during the transition from late embryonic to early post-hatch development. As adipose tissue is well known to produce inflammatory and other immune factors, we used SPF white leghorns to generate the initial miRNome and transcriptome signatures to minimize complications from external factors (e.g., pathogenic infections) and ensure the identification of bona fide switch-associated miRNAs and transcripts. We then examined their expression signatures in the adipose tissue of broilers (Ross 708). Using E18 embryos as representative of pre-switching metabolism and D3 chicks as a representative of post-switching metabolism, we identified a group of miRNAs which work concordantly to regulate a diverse but interconnected group of developmental, immune and metabolic processes in the adipose tissue during the metabolic switch. Network mapping suggests that during the first days post-hatch, despite the consumption of feed, the chick is still heavily reliant upon adipose tissue lipid stores for energy production, and is not yet efficiently using their new energy source for de novo lipid storage. A number of core master regulatory pathways including, circadian rhythm transcriptional regulation and growth hormone (GH) signaling, likely work in concert with miRNAs to maintain an essential balance between adipogenic, lipolytic, developmental, and immunological processes in the adipose tissue during the metabolic switch.


Subject(s)
Chickens/genetics , Embryonic Development/genetics , Lipogenesis/genetics , MicroRNAs/genetics , Adipose Tissue/growth & development , Adipose Tissue/metabolism , Animals , Chick Embryo , Chickens/growth & development , Gene Expression Regulation, Developmental/genetics , High-Throughput Nucleotide Sequencing , Liver/growth & development , Liver/metabolism , MicroRNAs/classification , Signal Transduction/genetics , Transcriptome/genetics
16.
Genet Sel Evol ; 53(1): 13, 2021 Feb 06.
Article in English | MEDLINE | ID: mdl-33549052

ABSTRACT

BACKGROUND: Feed accounts for about 70% of the total cost of poultry meat production. Residual feed intake (RFI) has become the preferred measure of feed efficiency because it is phenotypically independent of growth rate and body weight. In this study, our aim was to estimate genetic parameters and identify quantitative trait loci (QTL) for feed efficiency in 3314 purebred broilers using a genome-wide association study. Broilers were genotyped using a custom 55 K single nucleotide polymorphism (SNP) array. RESULTS: Estimates of genomic heritability for seven growth and feed efficiency traits, including body weight at 28 days of age (BW28), BW42, average daily feed intake (ADFI), RFI, and RFI adjusted for weight of abdominal fat (RFIa), ranged from 0.12 to 0.26. Eleven genome-wide significant SNPs and 15 suggestively significant SNPs were detected, of which 19 clustered around two genomic regions. A region on chromosome 16 (2.34-2.66 Mb) was associated with both BW28 and BW42, and the most significant SNP in this region, AX_101003762, accounted for 7.6% of the genetic variance of BW28. The other region, on chromosome 1 (91.27-92.43 Mb) was associated with RFI and ADFI, and contains the NSUN3 and EPHA6 as candidate genes. The most significant SNP in this region, AX_172588157, accounted for 4.4% of the genetic variance of RFI. In addition, a genomic region containing the gene AGK on chromosome 1 was found to be associated with RFIa. The NSUN3 and AGK genes were found to be differentially expressed in breast muscle, thigh muscle, and abdominal fat between male broilers with high and low RFI. CONCLUSIONS: We identified QTL regions for BW28 and BW42 (spanning 0.32 Mb) and RFI (spanning 1.16 Mb). The NSUN3, EPHA6, and AGK were identified as the most likely candidate genes for these QTL. These genes are involved in mitochondrial function and behavioral regulation. These results contribute to the identification of candidate genes and variants for growth and feed efficiency in poultry.


Subject(s)
Animal Nutritional Physiological Phenomena , Chickens/genetics , Polymorphism, Single Nucleotide , Poultry Products/standards , Quantitative Trait Loci , Adipose Tissue/growth & development , Adipose Tissue/metabolism , Animal Feed , Animals , Avian Proteins/genetics , Avian Proteins/metabolism , Chickens/growth & development , Female , Male , Muscle, Skeletal/growth & development , Muscle, Skeletal/metabolism
17.
Funct Integr Genomics ; 21(1): 113-124, 2021 Jan.
Article in English | MEDLINE | ID: mdl-33404913

ABSTRACT

Nandan-Yao chicken is a Chinese native chicken with lower fat deposition and better meat quality. Fat deposition is a quite complex and important economic trait. However, its molecular mechanism is still unknown in chickens. In the current study, Nandan-Yao chicken was divided into two groups based on the rate of abdominal fat at 120 days old, namely the high-fat group and low-fat group. The total RNAs were isolated and sequenced by RNA sequencing (RNA-seq). After quality control, we gained 1222, 902, 784, 624, and 736 differentially expressed genes (DEGs) in abdominal fat, back skin, liver, pectoral muscle, and leg muscle, respectively. Analysis of Gene Ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) showed that significantly enriched GO term and KEGG signaling pathway mainly involved cytosolic ribosome, growth development, PPAR signaling pathway, Wnt signaling pathway, and linoleic acid metabolism in abdominal fat, back skin, and liver. While in pectoral muscle and leg muscle, it is mainly enriched in phosphatidylinositol signaling system, adrenergic signaling in cardiomyocytes, cytosolic ribosome, and cytosolic part. Sixteen genes were differentially expressed in all five tissues. Among them, PLA2G4A and RPS4Y1 might be the key regulators for fat deposition in Nandan-Yao chicken. The protein-protein interaction (PPI) network analysis of DEGs showed that PCK1 was the most notable genes. The findings in the current study will help to understand the regulation mechanism of abdominal fat and intramuscular fat in Nandan-Yao chicken and provide a theoretical basis for Chinese local chicken breeding.


Subject(s)
Adipose Tissue/metabolism , Chickens/genetics , Protein Interaction Maps , Transcriptome , Adipose Tissue/growth & development , Animals , Avian Proteins/genetics , Avian Proteins/metabolism , Chickens/growth & development , Chickens/metabolism , Group IV Phospholipases A2/genetics , Group IV Phospholipases A2/metabolism , Liver/metabolism , Muscle, Skeletal/metabolism , PPAR gamma/genetics , PPAR gamma/metabolism , Ribosomal Proteins/genetics , Ribosomal Proteins/metabolism , Wnt Signaling Pathway
18.
Int J Mol Sci ; 22(2)2021 Jan 08.
Article in English | MEDLINE | ID: mdl-33430047

ABSTRACT

We aimed to determine whether an experimental model of hyperthyroidism could alter the function of sympathetic and nitrergic components of mesenteric innervation. For this purpose, male Wistar rats were divided into (1) control rats (CT) and (2) rats infused with L-Thyroxine (HT). Body weight gain and adipose tissue accumulation were lower in HT rats, while systolic blood pressure and citrate synthase activity in the soleus muscle were increased by HT. In segments from the superior mesenteric artery, the application of an electrical field stimulation (EFS) induced a vasoconstrictor response, which was lower in arteries from HT animals. The alpha-adrenoceptor antagonist phentolamine diminished EFS-induced vasoconstriction to a lower extent in HT arteries, while the purinergic receptor antagonist suramin reduced contractile response to EFS only in segments from CT. In line with this, noradrenaline release, tyrosine hydroxylase expression and activation and dopamine ß hydroxylase expression were diminished in HT. The unspecific nitric oxide synthase (NOS) inhibitor L-NAME increased EFS-induced vasoconstriction more markedly in segments from HT rats. NO release was enhanced in HT, probably due to an enhancement in neuronal NOS activity, in which a hyperactivation of both PKC and PI3K-AKT signaling pathways might play a relevant role. In conclusion, perivascular mesenteric innervation might contribute to reduce the vascular resistance observed in hyperthyroidism.


Subject(s)
Body Weight/drug effects , Hyperthyroidism/genetics , Nitric Oxide Synthase/genetics , Nitric Oxide/genetics , Adipose Tissue/drug effects , Adipose Tissue/growth & development , Animals , Body Weight/genetics , Disease Models, Animal , Electric Stimulation , Humans , Hyperthyroidism/metabolism , Hyperthyroidism/pathology , Mesenteric Arteries/drug effects , Mesenteric Arteries/growth & development , Mesenteric Veins/drug effects , Mesenteric Veins/growth & development , Muscle, Skeletal/drug effects , Muscle, Skeletal/metabolism , NG-Nitroarginine Methyl Ester/pharmacology , Nitric Oxide Synthase/antagonists & inhibitors , Rats , Rats, Wistar , Thyroxine/pharmacology , Vasoconstriction/genetics
19.
FEBS J ; 288(18): 5252-5264, 2021 09.
Article in English | MEDLINE | ID: mdl-33300264

ABSTRACT

Cell membrane-bound serine proteases are important in the maintenance of physiological homeostasis. Hepsin is a type II transmembrane serine protease highly expressed in the liver. Recent studies indicate that hepsin activates prohepatocyte growth factor in the liver to enhance Met signaling, thereby regulating glucose, lipid, and protein metabolism. In addition, hepsin functions in nonhepatic tissues, including the adipose tissue, kidney, and inner ear, to regulate adipocyte differentiation, urinary protein processing, and auditory function, respectively. In mouse models, hepsin deficiency lowers blood glucose, lipid, and protein levels, impairs uromodulin assembly in renal epithelial cells, and causes hearing loss. Elevated hepsin expression has also been found in many cancers. As a type II transmembrane protease, cell surface expression and zymogen activation are essential for hepsin activity. In this review, we discuss the current knowledge regarding hepsin biosynthesis, activation, and functions in pathobiology.


Subject(s)
Liver/metabolism , Neoplasms/genetics , Serine Endopeptidases/genetics , Serine Proteases/genetics , Adipose Tissue/growth & development , Adipose Tissue/metabolism , Animals , Cell Differentiation/genetics , Gene Expression Regulation/genetics , Hepatocyte Growth Factor/genetics , Homeostasis/genetics , Humans , Kidney/metabolism , Mice , Neoplasms/pathology , Proto-Oncogene Proteins c-met/genetics
20.
Clin Nutr ; 40(3): 1289-1295, 2021 03.
Article in English | MEDLINE | ID: mdl-32896446

ABSTRACT

BACKGROUND & AIMS: The rise in the prevalence of childhood obesity has increased the demand for accurately evaluating body fatness in pediatric population. The aim of this study was to provide a series of sex- and age-specific body fat reference centiles for evaluating total body fat development and fat distribution in Chinese children and adolescents using dual-energy x-ray absorptiometry (DXA). METHODS: A nationwide sample of Chinese children and adolescents aged 3-18 years (n = 12,790) was drawn from a cross-sectional survey of the China Child and Adolescent Cardiovascular Health study (2013-2019). Fat measurements, including total fat mass index (FMI), total body fat percentage (BF%), regional FMI, trunk to leg (T/L) fat ratio and android to gynoid (A/G) fat ratio, were derived from whole body DXA scans. Sex- and age-specific centiles were estimated using the lambda-mu-sigma method and then compared with values derived from the US National Health and Nutrition Examination Survey (1999-2004) and Korean National Health and Nutrition Examination Survey (2008-2011). RESULTS: During early childhood, almost all body fat parameters decreased with age, except an increase in A/G ratio. After 7 years onward, drastic upward trends of total FMI and BF% were exhibited in boys till 10 years, followed by opposite downward trends during 11-14 years; while sustained increase of FMI was shown in girls across ages accompanied by relatively constant BF% levels. Meanwhile, steady increases were noticed for A/G ratio and T/L ratio, which were more pronounced in boys. In addition, the proposed body fat references were much lower than the US but similar to Koreans despite of subtle differences. CONCLUSIONS: This is the first study to present a set of DXA-based body fat reference for Chinese children and adolescents aged 3-18 years. The new reference provides clinicians and researchers a useful tool for assessing body fat development and distribution patterns throughout early childhood and adolescence.


Subject(s)
Absorptiometry, Photon , Adipose Tissue/growth & development , Body Composition , Adipose Tissue/physiology , Adolescent , Age Factors , Anthropometry , Child , Child, Preschool , China/epidemiology , Cross-Sectional Studies , Female , Humans , Male , Nutrition Surveys , Pediatric Obesity/epidemiology , Reference Values , Republic of Korea , Sex Factors , United States
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