• 제목/요약/키워드: adipose tissue hormones

검색결과 22건 처리시간 0.022초

Physiological Roles of Adipokines, Hepatokines, and Myokines in Ruminants

  • Roh, Sang-Gun;Suzuki, Yutaka;Gotoh, Takafumi;Tatsumi, Ryuichi;Katoh, Kazuo
    • Asian-Australasian Journal of Animal Sciences
    • /
    • 제29권1호
    • /
    • pp.1-15
    • /
    • 2016
  • Since the discovery of leptin secreted from adipocytes, specialized tissues and cells have been found that secrete the several peptides (or cytokines) that are characterized to negatively and positively regulate the metabolic process. Different types of adipokines, hepatokines, and myokines, which act as cytokines, are secreted from adipose, liver, and muscle tissue, respectively, and have been identified and examined for their physiological roles in humans and disease in animal models. Recently, various studies of these cytokines have been conducted in ruminants, including dairy cattle, beef cattle, sheep, and goat. Interestingly, a few cytokines from these tissues in ruminants play an important role in the post-parturition, lactation, and fattening (marbling) periods. Thus, understanding these hormones is important for improving nutritional management in dairy cows and beef cattle. However, to our knowledge, there have been no reviews of the characteristics of these cytokines in beef and dairy products in ruminants. In particular, lipid and glucose metabolism in adipose tissue, liver tissue, and muscle tissue are very important for energy storage, production, and synthesis, which are regulated by these cytokines in ruminant production. In this review, we summarize the physiological roles of adipokines, hepatokines, and myokines in ruminants. This discussion provides a foundation for understanding the role of cytokines in animal production of ruminants.

Dietary supplementation with Korean pine nut oil decreases body fat accumulation and dysregulation of the appetite-suppressing pathway in the hypothalamus of high-fat diet-induced obese mice

  • Shin, Sunhye;Park, Soyoung;Lim, Yeseo;Han, Sung Nim
    • Nutrition Research and Practice
    • /
    • 제16권3호
    • /
    • pp.285-297
    • /
    • 2022
  • BACKGROUND/OBJECTIVES: Korean pine nut oil (PNO) has been reported to suppress appetite by increasing satiety hormone release. However, previous studies have rendered inconsistent results and there is lack of information on whether dietary Korean PNO affects the expression of satiety hormone receptors and hypothalamic neuropeptides. Therefore, our study sought to evaluate the chronic effects of Korean PNO on the long-term regulation of energy balance. MATERIALS/METHODS: Five-week-old male C57BL/6 mice were fed with control diets containing 10% kcal fat from Korean PNO or soybean oil (SBO) (PC or SC) or high-fat diets (HFDs) containing 35% kcal fat from lard and 10% kcal fat from Korean PNO or SBO (PHFD or SHFD) for 12 weeks. The expression of gastrointestinal satiety hormone receptors, hypothalamic neuropeptides, and genes related to intestinal lipid absorption and adipose lipid metabolism was then measured. RESULTS: There was no difference in the daily food intake between PNO- and SBO-fed mice; however, the PC and PHFD groups accumulated 30% and 18% less fat compared to SC and SHFD, respectively. Korean PNO-fed mice exhibited higher messenger RNA (mRNA) expression of Ghsr (ghrelin receptor) and Agrp (agouti-related peptide) (P < 0.05), which are expressed when energy consumption is low to induce appetite as well as the appetitesuppressing neuropeptides Pomc and Cartpt (P = 0.079 and 0.056, respectively). Korean PNO downregulated jejunal Cd36 and epididymal Lpl mRNA expressions, which could suppress intestinal fatty acid absorption and fat storage in white adipose tissue. Consistent with these findings, Korean PNO-fed mice had higher levels of fecal non-esterified fatty acid excretion. Korean PNO also tended to downregulate jejunal Apoa4 and upregulate epididymal Adrb3 mRNA levels, suggesting that PNO may decrease chylomicron synthesis and induce lipolysis. CONCLUSIONS: In summary, Korean PNO attenuated body fat accumulation, and appeared to prevent HFD-induced dysregulation of the hypothalamic appetite-suppressing pathway.

Changes of Serum Adiponectin Levels in Murine Experimental Sparganosis

  • Yang, Hyun-Jong
    • Parasites, Hosts and Diseases
    • /
    • 제46권2호
    • /
    • pp.91-93
    • /
    • 2008
  • The weight gain phenomenon associated with sparganosis has been well documented and was first recognized in the 1960s. Many studies have been conducted regarding the plerocercoid growth factor in the larva of Spirometra mansoni. In the present study, we hypothesized that the weight gain may be affected by the adipocyte secreted hormones, i.e., adiponectin, which is secreted from the adipose tissues in case of tissue migrating parasitic infections. Specifically, we attempted to ascertain whether the serum levels of adiponectin change in murine sparganosis. However, serum adiponectin levels assayed by ELISA evidenced no significant changes after an experimental infection (P > 0.05). Finally, the weight gain phenomenon in mouse sparganosis is not associated with changes in adiponectin levels, and further investigations involving parasitic infection-induced weight gain remain necessary.

Osteosarcopenic Obesity in Elderly: The Cascade of Bone, Muscle, and Fat in Inflammatory Process

  • Du, Yang;Oh, Chorong;No, Jae-kyung
    • 한국조리학회지
    • /
    • 제23권6호
    • /
    • pp.173-183
    • /
    • 2017
  • Conditions related to body composition and aging, such as osteopenic obesity, sarcopenia/ sarcopenic obesity, and the newly termed osteosarcopenic obesity(triad of bone, muscle and adipose tissue impairment), are beginning to gain recognition. Currently, it has begun to attract the attention of scholars from all over the world, however, for this disease, it still needs a more clear understanding and perception. Therefore, this article considered the osteoporosis, muscle depression, and obesity, these diseases as a gate to study the relationship among muscle, bone, and fat. In addition, in the aging process, the formation of IGF-cortisol, testosterone, and estrogen is sensitive. These hormones can not only absorb muscle protein metabolism, but also affect alienation. The decrease in IGF-cortisol in the elderly resulted in increased visceral fat, decreased muscle mass and bone mineral density, and then affected decreased skeletal muscle atrophy and decreased quality. The reduction of skeletal muscle quality and strength and increase body fat affected the adipose tissue to produce inflammatory cytokines, thereby reduced skeletal muscle, promoted cardiovascular disease, metabolic syndrome and insulin resistance in chronic diseases. Almost all chronic inflammatory diseases were associated with bone, muscle and fat. These mechanisms were complex and interrelated. Inflammation reduces bone formation, increases fat and reduces muscle mass. And thus not only had a significant impact on the motor system, but also made the incidence increase of fracture, osteoporosis, fragile syndrome, fall, osteomalacia and other bone disease. This article aimed to start from the interaction between the muscles and bones of the elderly, extended to obesity, muscle deficiency, osteoporosis and other diseases, finally, from a nutritional point of view, to discuss how to treat osteoporosis obesity.

최근 척수손상 백서에서 인체지방조직유래 중간엽 줄기세포 이식 및 성장호르몬의 투여가 신경회복에 미치는 영향 (The Effect of Human Adipose Tissue Derived Mesenchymal Stem Cells and Growth Hormone on the Recovery of Neurological Deficits due to Experimental Spinal Cord Injury in Rat)

  • 이근철;문인선;허정;권용석;김석권;손희동
    • Archives of Plastic Surgery
    • /
    • 제35권1호
    • /
    • pp.13-19
    • /
    • 2008
  • Purpose: Human adipose tissue-derived mesenchymal stem cells(hATSCs) can be differentiated into multiple mesenchymal lineages, including bone, cartilage, and muscle. And growth hormone play important roles in the normal growth and development of the CNS. In this study, we explored whether the transplanted hATSCs and growth hormones could improve functional recoveries from rats with contusive spinal cord injury. Methods: We divided 30 female rats, which were subjected to a weight driven implant spinal cord injury, into 3 groups with 10 rats each; Group A as a control group, group B with hATSCs transplantation on injured region, and group C with hATSCs transplantation and GH administration for 7 days. Then, we researched their neurologic functional recoveries before and 2, 4, and 8 weeks after transplantation using Basso-Beattie-Bresnahan (BBB) locomotor rating scale. And we checked Y-chromosome positive cells by FISH(Fluorescent in situ hybridization) to identify the survival of transplanted mesenchymal stem cells. Results: After 4 weeks of transplantation, the group B and group C showed significant improvement of neurologic function on BBB locomotor rating scale in comparison with the group A(Group A: $13.1{\pm}0.58$, Group B: $14.6{\pm}0.69$, Group C: $14.9{\pm}0.56$). Moreover, the group C displayed meaningful recovery of neurologic function after 8 weeks in comparison with group B (Group B: $15.7{\pm}0.63$, Group C: $16.5{\pm}1.14$). The group A, the control one, improved for 5 weeks after injury, and had no more recovery. On the other hand, Group B and C showed the improvement of neurologic function continuously for 9 weeks after injury. Conclusion: In this study, we found out that hATSCs transplantation have an effect on neurologic functional recovery of spinal cord injured rat and GH injection seems to bring the synergistic results on this good tendency.

Perspectives on the therapeutic potential of short-chain fatty acid receptors

  • Kim, Sunhong;Kim, Jeong-Hoon;Park, Bi Oh;Kwak, Young Shin
    • BMB Reports
    • /
    • 제47권3호
    • /
    • pp.173-178
    • /
    • 2014
  • There is rapidly growing interest in the human microbiome because of its implication in metabolic disorders and inflammatory diseases. Consequently, understanding the biology of short chain fatty acids and their receptors has become very important for identifying novel therapeutic avenues. GPR41 and GPR43 have been recognized as the cognate receptors for SCFAs and their roles in metabolism and inflammation have drawn much attention in recent years. GPR43 is highly expressed on immune cells and has been suggested to play a role in inflammatory diseases such as inflammatory bowel disease. Both GPR41 and GPR43 have been implicated in diabetes and obesity via the regulation of adipose tissue and gastrointestinal hormones. So far, many studies have provided contradictory results, and therefore further research is required to validate these receptors as drug targets. We will also discuss the synthetic modulators of GPR41 and GPR43 that are critical to understanding the functions of these receptors.

저온환경 적응에 있어서의 갑상선 Hormone의 변동 (Changes of Thyroid Hormone Levels in Plasma of Rats during Cold Exposure)

  • 이향우;김원준;홍사석;김호석;홍사오
    • 대한약리학회지
    • /
    • 제17권2호
    • /
    • pp.37-45
    • /
    • 1981
  • The importance of thyroid hormones for the survival of rats in the cold is along-established fact. Hypothyroid animals are unable to survive in a cold environment. It was also reported that acute exposure of rats, guinea pigs and rabbits to cold produced an increased secretion of TSH and thereby thyroid hormone secretion within 10 to 30 min, but this increase of thyroid activity disappeared quite rapidly during warming. However, in human study no significant difference was found in the concentration of $T_4$, TSH and cortisol between summer and winter. But plasma $T_3$ concentration was increased significantly in winter in 56 adult men. On the other hand, it has been also known that catecholamines are important in the maintenance of body temperature of rat exposured to cold. Abundant evidences suggest that the sympathetic nervous system is involved in the activation of nonshivering thermogenesis and that thyroid hormone metabolism and secretion are influenced by catecholamines and consequently by the activity of the sympatheticadrenal system. Many of the metabolic effects of catecholamines are associated with an increase in the level of cAMP mediated through activation of adenylate cyclase which converts ATP to cAMP. Other studies have shown that thyroid hormones affect the amount of adenylate cyclase present in the adipose tissue. On the other hand. it was also reported that a particulate cAMP phosphodiesterase activity in fat cells was modulated by the action of thyroid hormones. The objective of the present study was to determine the interaction between thyroid activity and cyclic nucleotides during acute exposure to cold. Albino rats weighing around 200 g were used as the experimental animal. The room temperature group was kept at $25^{\circ}C$ and the cold-exposured group was kept at $4^{\circ}C$ for 1 week or 2 weeks. Each group was subdivided into three subgroups; control, KI, and MTU group. At the end of experiment the animals were etherized and blood was taken from abdominal aorta for $T_4,\;T_3$ and cyclic nucleotides. The determinations of $T_3,\;T_4$ and cyclic nucleotides were carried out with a radioimmunoassay(RIA) method. The results were summerized as followings. 1) A significant increase of thyroid weight was observed in rats exposured to cold for 2 weeks. Furthermore, in rats administered MTU while to exposure to cold the thyroid weight was also increased significantly. 2) After 2 weeks $T_3$ concentration in the plasma of cold-exposured rats was significantly increased in KI group and MTU group as well as in control group. On the contrary, after 2 weeks of cold exposure $T_4$ level was decreased in control group. 3) In the case of cyclic nucleotides, plasma cAMP was increased in the control group after 1 or 2 weeks of cold exposure. However, cAMP level in plasma was rather significantly decreased in KI group and MTU group as well as in control group.

  • PDF

인체의 복강 내 지방조직 배양을 통한 OB 유전자 발현과 Leptin 분비에 미치는 인슐린, Dexamethasone과 성장호르몬의 단독 또는 복합적 영향에 관한 연구 (The Separate and Combined Effects of Insulin, Dexamethasone and Growth Hormone on the OB Gene Expression and Leptin Secretion from Cultured Human Visceral Adipose Tissue)

  • 황일태;김경희;황진순;신충호;양세원
    • Clinical and Experimental Pediatrics
    • /
    • 제46권8호
    • /
    • pp.795-802
    • /
    • 2003
  • 목 적 : 지방조직에 존재하는 OB 유전자에서 전사된 호르몬인 leptin은 여러 가지 생리적 요인이나, 호르몬에 의해서 영향을 받는다. Leptin의 발현에 대한 호르몬에 대한 연구가 많은 동물 실험들을 상대로 시도되고 있으나 사람에서 OB 유전자와 leptin 분비를 조절하는 호르몬의 영향 및 상호작용에 대해서는 아직 명확히 밝혀져 있지 않다. 본 연구는 사람의 복강에서 추출한 조직배양에서 OB 유전자와 leptin 분비를 조절하는 호르몬의 영향 및 상호작용에 대해서 알아보고자 하였다. 방 법 : 복부수술을 위하여 입원한 환자 7명을 대상으로 복강 내 지방조직을 절제하여 배양액에 호르몬을 첨가하지 않은 상태와 배양액에 인슐린, dexamethasone 및, 성장호르몬을 단독으로 첨가하거나, 인슐린과 dexamethasone을 동시에 첨가하거나, 인슐린과 dexamethasone과 성장호르몬을 같이 첨가한 상태에서 48시간 배양한 후 RNA를 추출하여 경쟁적 역전사 중합반응(competitive RT-PCR)을 시행하여 OB 유전자의 발현을 측정하고, human leptin IRMA Kit를 사용하여 지방조직에서 분비되는 배양액 내 leptin 양을 측정하였다. 결 과 : 인슐린은 단독으로는 OB 유전자 발현과 leptin 분비에는 영향을 미치지 못하였다. Dexamethasone은 OB 유전자의 발현과 leptin 분비를 증가시켰는데, 48시간 배양 후에 대조군에 비해 의미있게 증가하였다. 인슐린과 dexamethasone을 같이 배양시에는 OB 유전자 발현에 있어서는 의미있는 차이는 없었으나, leptin 분비는 48시간 배양 후 대조군에 비해 의미있게 증가하였다. 또한 성장호르몬 단독으로는 OB 유전자의 발현에 영향을 미치지는 못하나, 인슐린, dexamethasone, 성장호르몬을 같이 배양시에 인슐린과 dexamethasone의 OB 유전자 발현과 leptin 분비증가 능력을 억제시켰다. 결 론 : 인슐린 단독으로는 leptin 분비를 증가시키지 못하나, dexamethasone에 의해 상승작용이 나타나고, 이는 dexamethasone이 OB 유전자 발현을 증가시킨 후에 인슐린이 세포질내에서의 leptin 분비를 증가시킨다고 추정할 수 있다. 성장호르몬의 억제효과는 성장호르몬이 인슐린이나 dexamethasone에 대한 지방조직의 반응성을 변화시킴으로써 간접적으로 leptin의 발현을 조절할 것으로 추정되며, dexamethasone이 OB 유전자 발현을 증가시킨 후에 인슐린이 세포질 내에서의 leptin 분비를 증가시킨다는 것에 대한 연구가 더 필요하리라 사료된다.

Effect of Thyroid hormone on Lipogenesis in Rat White and Brown Adipocytes Culture System

  • Kim, Yangha -Moon
    • Preventive Nutrition and Food Science
    • /
    • 제3권4호
    • /
    • pp.362-367
    • /
    • 1998
  • Thyroid hormone(T3) stimulates hepatic lipogenesis by increasing expression of genes, indluding acetyl-CoA carboxylase and fatty acid synthase. S14 protein, which is thougth to be involved in lipid metabolism , appears to respond in parallel . Effect of T3 on lipogenesis in white and brown adipose tissue are less clear, and may be complicated by indirect effects of the hormone. We developed an adipocytes system where the indirect effects of thyroid hormone are abolished and direct effects of T3 on lipogenesis could be tested. Fat accumulation was mesured by Oil-Red O staining. Insulin clearly enhanced fat accumulation by 2-fold . Isobutylemethylxanthie(IBMX) apeared to inhibit insulin -stimulated fat accumulation. Dexamethasone increased insulin-stimulatedfat accumulation about 1.3-fold. confluent adipocytes were cultured in serum-free medium or medium containing 10% fetal calf serum or 10% fetal calf serum stripped of thyroid hormone and lipogenesis, assessed by the incorporation of 3H2O , was measured. Medium without serum or supplemented with T3-depleted serum did not amplify the stimulatory effect of T3 on lipogenesis compared to medium containing 10% fetal calf seru. Dexamethasone alone led to a decrease inlopogenesis of about 50 % in white adipocytes and 25% in brown adipocytes. However, dexamethasone amplified the lipogenic respnse to T3 by about 30% in whit eadipocytes and 60% in brown adipocytes. T3(1$\mu$M) stimulated lipogenesis and acetyl-CoA carboxylase and fatty acid syntase mRNA levels up to 2 -fold in both types of adipocytes. It seems that these adipocytes systems are as useful model to study the effects of hormones on lipogenic gene expression as well as lipogenesis.

  • PDF

Ameliorative effect of myricetin on insulin resistance in mice fed a high-fat, high-sucrose diet

  • Choi, Ha-Neul;Kang, Min-Jung;Lee, Soo-Jin;Kim, Jung-In
    • Nutrition Research and Practice
    • /
    • 제8권5호
    • /
    • pp.544-549
    • /
    • 2014
  • BACKGROUND/OBJECTIVES: Obesity-associated insulin resistance is a strong risk factor for type 2 diabetes mellitus. The aim of this study was to investigate the effect of myricetin on adiposity, insulin resistance, and inflammatory markers in mice with diet-induced insulin resistance. MATERIALS/METHODS: Five-week-old male C57BL/6J mice were fed a basal diet, a high-fat, high-sucrose (HFHS) diet, or the HFHS diet containing 0.06% myricetin or 0.12% myricetin for 12 weeks after a 1-week adaptation, and body weight and food intake were monitored. After sacrifice, serum lipid profiles, glucose, insulin, adipocyte-derived hormones, and proinflammatory cytokines were measured. The homeostasis model assessment for insulin resistance (HOMA-IR) was determined. RESULTS: Myricetin given at 0.12% of the total diet significantly reduced body weight, weight gain, and epidydimal white adipose tissue weight, and improved hypertriglyceridemia and hypercholesterolemia without a significant influence on food intake in mice fed the HFHS diet. Serum glucose and insulin levels, as well as HOMA-IR values, decreased significantly by 0.12% myricetin supplementation in mice fed the HFHS diet. Myricetin given at 0.12% of the total diet significantly reduced serum levels of leptin, tumor necrosis factor-${\alpha}$ (TNF-${\alpha}$) and interleukin-6 (IL-6) in mice fed the HFHS diet. CONCLUSIONS: These findings suggest that myricetin may have a protective effect against diet-induced obesity and insulin resistance in mice fed HFHS diet, and that alleviation of insulin resistance could partly occur by improving obesity and reducing serum proinflammatory cytokine levels.