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1.
目的:探讨孕期和哺乳期的高脂饮食能否导致子代在生命早期出现糖脂代谢紊乱。方法成年雌性C57BL/6J小鼠与正常饮食雄性小鼠进行交配,孕鼠随机分为高脂饮食组和正常饮食组,在孕期和哺乳期喂养高脂饲料或正常饲料,至交配后第一代鼠断乳时(3周龄)观察其糖脂代谢相关性指标以及肝脏病理表现。结果较正常饮食组子鼠相比,高脂饮食子鼠出生体重更低( P<0.05)。在断乳时,高脂饮食组雄性子鼠体重较重( P =0.038),腹腔糖耐量实验30 min和60 min血糖明显升高(P值分别为<0.001和<0.01),糖耐量曲线下面积较大(P=0.0016),HOMA-IR值较大(P<0.05),雌性子鼠腹腔糖耐量实验在30 min血糖高于正常组(P<0.01),而糖耐量曲线下面积和HOMA-IR值在两组之间无明显统计学意义。雄性和雌性子代小鼠空腹胆固醇水平高脂饮食组均高于正常饮食组( P值分别为<0.0001和0.0004),而两组雄性和雌性子代小鼠空腹胰岛素和甘油三酯水平差异均无显著性( P均>0.05)。另外,在断乳时高脂饮食子鼠出现肝脏脂肪变性,雌性和雄性子鼠无明显差异。结论母鼠孕期和哺乳期高脂饮食能够诱导子代在生命早期就能出现糖脂代谢紊乱并且雄性子鼠更易出现肥胖、糖耐量异常、胰岛素抵抗。  相似文献   

2.
目的: 探讨7周不同负荷游泳运动对酒精性脂肪肝小鼠肝脏脂质代谢的改善作用及微RNA-34a(miR-34a)与过氧化物酶体增殖物激活的受体α(PPARα)的调控关系。方法: 50只雄性KM小鼠,随机分成空白组(K,n=10)和酒精性脂肪肝组(AFLD,n=40),AFLD组通过50%乙醇的谷酒王0.2 ml/10 g WT灌服7周,每周休息1 d。成功构模后,分成模型组(M)、30 min游泳运动组(LE)、60 min游泳运动组(ME)、90 min负重游泳运动组(HE,尾部铅皮负重体重的5%),每组10只,每周干预6 d,共7周。结束后,提取血清和肝脏组织,测定小鼠肝脏指数、内脏脂肪比,肝细胞损伤指标谷丙转氨酶(ALT)、谷草转氨酶(AST)、γ-谷氨酰基转肽酶(γ-GT)、总胆固醇(TC)、甘油三酯(TG)、高/低密度脂蛋白胆固醇(H/LDL-C)含量;HE染色观察肝脏结构变化,Western blot检测肝组织PPARα 、FAS、TNF-α蛋白水平,mRNA表达谱测序分析后RT-PCR验证miR-34aPPARαFASTNF-αCPT-1 mRNA表达。结果: 相比K组,AFLD组肝索紊乱,出现灶性脂质真空化,脂滴空泡样变明显,胞核畸形异位;肝功能水平显著降低(P<0.01)。相比M组,ME、HE组肝功能改善显著,血清TG、TC、LDL-C水平下降,HDL-C水平上升(P<0.01或P<0.05),肝脏指数、内脏脂肪比降低(P<0.01),肝细胞灶性脂滴样变下降,肝索结构较清晰;且ME组干预效果更为显著,肝组织PPARα蛋白表达水平上升 、FAS、TNF-α蛋白表达水平下降(P<0.01或P<0.05);基于Illumina高通量测序及mRNA差异分析,PPARα通路中有38个差异表达基因,含9个上调基因,29个下调基因,涉及肝脏脂肪酸氧化、脂质代谢、凋亡抑制等。相比M组,LE、ME、HE组miR-34aFASTNF-α基因水平降低,PPARαCPT-1基因水平升高(P<0.01或P<0.05)。结论: 不同负荷游泳运动对AFLD小鼠肝功能具有改善作用,促进脂滴降解,调节肝脏脂质代谢,可能与miR-34a/PPARα的激活有关,且中等负荷游泳运动干预效果更佳。  相似文献   

3.
目的: 探讨迷走神经刺激(VNS)对难治性癫痫(IE)模型大鼠海马神经炎性反应及α7nAChR表达的影响。方法: 80只成年雄性SD大鼠,SPF级,随机分为对照组、模型组、VNS组、甲基牛扁亭(MLA)+VNS组,其中对照组与MLA+VNS组分别20只,模型组与VNS组因模型制作失败与动物死亡,分别剩下15只和14只。除对照组之外,其余各组皆通过腹腔注射皮罗卡品建立氯化锂-皮罗卡品IE大鼠模型。对照组仅分离迷走神经,不采取电刺激;模型组不采取任何干预措施;VNS组在模型制作成功后7 d采取VNS,连续4周;MLA+VNS组先侧脑室给药MLA(3.4 μg/μl,5 μl),然后给予VNS,连续4周。观察并记录各组大鼠癫痫发作的次数与持续时间的变化;然后断头处死大鼠,快速分离海马并制备10%组织匀浆,离心并提取上清液,通过分光光度法测定上清液中AChE、ChAT活性;ELISA法检测TNF-ɑ、IL-6和IL-1β表达;Western blot检测海马组织α7nAChR蛋白表达;免疫荧光染色法检测海马组织α7nAChR与小胶质细胞共表达。结果: ①通过VNS治疗4周后,大鼠癫痫发作的频率以及持续的时间都明显低于模型组(P<0.01);MLA阻断后在给予VNS,大鼠癫痫发作的频率以及持续的时间也明显低于模型组,但高于VNS组(P<0.01)。②与对照组比较,模型组大鼠海马组织ChAT表达明显下降,AChE表达明显升高(P<0.01);与模型组比较,VNS组与MLA+VNS组大鼠海马组织ChAT表达明显升高,AChE表达明显降低(P< 0.01);与VNS组比较,MLA+VNS组大鼠海马组织ChAT、AChE表达无明显变化(P>0.05)。③与对照组比较,模型组大鼠海马组织TNF-ɑ、IL-6和IL-1β表达明显升高(P<0.01);与模型组比较,VNS组大鼠海马组织TNF-ɑ、IL-6和IL-1β表达明显降低(P<0.01);与VNS组比较,MLA+VNS组大鼠海马组织TNF-ɑ、IL-6和IL-1β表达明显升高(P<0.01)。④与对照组比较,模型组大鼠海马组织以及小胶质细胞上α7nAChR表达明显降低(P<0.01);与模型组比较,VNS组大鼠海马组织以及小胶质细胞上α7nAChR表达明显上调(P<0.01);与VNS组比较,MLA+VNS组海马小胶质细胞上共表达α7nAChR数量明显减少(P<0.01)。结论: VNS对IE大鼠有明显的治疗作用,其机制可能是通过直接激活海马小胶质细胞CAP,抑制海马神经炎性反应来实现的。  相似文献   

4.
目的: 观察半夏厚朴汤对慢性间歇性低氧小鼠肾脏NLRP3/Caspase-1/IL-1β信号通路的影响。方法: 将C57BL/6小鼠随机分为3组,每组10只,分别是正常对照组(Control)、慢性间歇性低氧组(CIH)、半夏厚朴汤治疗组(BHD)。CIH组与BHD组小鼠置于低氧舱内,先充入氮气,使氧气浓度在90 s内从21%下降到9%,后充入氧气,使氧气浓度在90 s内逐渐上升到21%,Control组小鼠置于舱内,充入正常空气,每天处理8 h,持续21 d。BHD组于每日入舱前灌胃给予半夏厚朴汤,Control组和CIH组同时灌胃等体积的生理盐水。造模结束检测各组小鼠肾功能变化和观察肾脏病理情况;通过蛋白印迹法和免疫组织化学染色法检测NOD样受体3(NLRP3)、天冬氨酸特异性半胱氨酸蛋白1(Caspase-1)、白介素 (IL-1β) 的表达水平。结果: 与Control组比较,CIH组小鼠血清尿酸(UA)、尿素氮(BUN)及肌酐(SCr)的含量显著升高(P<0.01),与CIH组比较,BHD组均显著下降(P<0.01)。病理染色结果显示,与对照组相比,CIH组肾小管管腔增大,肾小管上皮细胞肿胀和出现大小不等的空泡,少量细胞脱落、坏死;BHD组有少量的肾小管上皮细胞脱落、坏死。Masson染色结果显示,与对照组比较,CIH组肾小球周围出现明显的纤维化, BHD组纤维化明显减少。Western blot显示,与对照组比较,CIH组肾组织NLRP3、caspase-1、IL-1β及IL-18的蛋白水平显著升高(P<0.01,P<0.05),与CIH组比较,BHD组显著下降(P<0.01,P<0.05)。免疫组织化学染色显示,与对照组比较,CIH组NLRP3、caspase-1和IL-1β的蛋白表达显著增多(P<0.01),且NLRP3在肾小管上皮细胞和间质巨噬细胞内表达最多,caspase-1和IL-1β主要见于肾小管上皮细胞胞浆,经BHD治疗后,与CIH组比较,BHD组NLRP3、caspase-1和IL-1β表达显著下降(P<0.05)。结论: 半夏厚朴汤可通过抑制NLRP3/Casapse-1/IL-1β信号通路相关分子的表达,减轻肾脏炎性损伤。  相似文献   

5.
目的: 探究有氧与抗阻运动对去负荷性肌萎缩大鼠比目鱼肌收缩特性及蛋白MuRF1,PGC-1α和FNDC5表达的影响以及可能的分子生物学机制。方法: 将雄性Wistar大鼠随机分为恢复组(CT)、有氧运动组(A)、抗阻运动组(R)和对照组(C),每组6只。对照组不作任何实验处理,其余3组先进行2周尾部悬吊,而后恢复组安静恢复,有氧组与抗阻组进行2周运动干预。运动方案:有氧组大鼠采用65%最大摄氧量(VO2max)对应的跑台速度,60 min/d,5 日/周;抗阻组大鼠负重65%最大有意负重(MVCC)爬梯,3次为一组,共5组,每次休息1 min,每组间歇2 min,5 日/周。最后一次运动后禁食24 h,取比目鱼肌观察组织学变化、测试收缩性能并检测MuRF1,PGC-1α和FNDC5表达情况。结果: 与对照组相比,恢复组大鼠体重、比目鱼肌湿重、肌纤维平均横截面积与肌收缩性能都明显降低(P<0.01),PGC-1α/FNDC5表达明显降低(P<0.01)和MuRF1表达明显升高(P<0.01);与恢复组相比,有氧组和抗阻组大鼠体重、比目鱼肌湿重、肌纤维平均横截面积与肌收缩性能都明显升高(P<0.01),PGC-1α/FNDC5表达明显升高(P<0.01)和MuRF1表达明显降低(P<0.01)。与有氧组相比,抗阻组大鼠比目鱼肌PGC-1α表达显著升高(P<0.05)且MuRF1表达显著降低(P<0.05)。结论: 有氧和抗阻运动可明显提高肌收缩性能,上调PGC-1α/FNDC5的表达,抑制MuRF1蛋白表达,表明有氧与抗阻运动改善去负荷性肌萎缩的分子机制可能与PGC-1α和MuRF1蛋白相关。  相似文献   

6.
目的: 探讨miRNA-130a-3p对脂多糖(LPS)诱导的心肌细胞自噬与凋亡的影响及分子机制。方法: H9C2心肌细胞随机分为5组,即正常对照组,LPS模型组,miRNA阴性对照组(miRNA-negative control组),miRNA-130a-3p mimics组(过表达miRNA-130a-3p),miRNA-130a-3p mimics+LY294002组(过表达miRNA-130a-3p + PI3K抑制)。LPS模型组即终浓度为10 μg/ml的LPS诱导24 h,miRNA阴性对照组与miRNA-130a-3p mimics组是利用lipo3000将阴性对照miRNA及miRNA-130a-3p mimics转染至H9C2细胞,培养24 h后,再将LPS加入培养基中培养24 h。miRNA-130a-3p mimics + LY294002组是利用lipo3000将miRNA-130a-3p mimics转染至H9C2细胞,同时在培养基中加入10 μmol/L(终浓度)的LY294002,培养24 h后,再将浓度为10 μg/ml的LPS加入培养基中培养24 h。所有实验均重复5次以上。利用RT-qPCR检测细胞中miRNA-130a-3p mRNA的表达水平,利用CCK-8实验检测细胞活性,利用ELISA实验检测细胞培养液中肿瘤坏死因子-α(TNF-α),白细胞介素-6(IL-6),白细胞介素-1β (IL-1β)的含量,利用比色法检测细胞培养液中超氧化物歧化酶(SOD)、乳酸脱氢酶(LDH)的含量;利用Western blot检测细胞中p-PI3K蛋白,p-AKT蛋白,Bax蛋白,Bcl-2蛋白,cleaved-caspase-3蛋白,LC3蛋白,p62蛋白的表达水平。结果: 结果显示,与正常组相比较,LPS模型细胞中miRNA-130a-3p mRNA水平,p-PI3K蛋白与p-AKT蛋白的水平显著低于正常对照组(P<0.01);与LPS组相比较,miRNA-130a-3p mimics组细胞中p-PI3K,p-AKT蛋白的表达显著升高(P<0.01,P<0.05);与正常对照组相比较,LPS组细胞活性显著降低,细胞培养液中TNF-α,IL-6,IL-1β及 LDH的含量显著升高(P<0.01), SOD的含量显著降低(P<0.01),细胞中Bax蛋白,cleaved caspase-3蛋白,p62蛋白的表达显著升高(P<0.01),Bcl-2蛋白的表达和LC3II/I的比率显著降低(P<0.01);与LPS组相比较,miRNA-130a-3p mimics可提高细胞活性,降低细胞培养液中TNF-α,IL-6,IL-1β及LDH的含量(P<0.01,P<0.05),提高SOD的含量(P<0.05),降低细胞中Bax蛋白,cleaved caspase-3蛋白,p62蛋白的表达(P<0.01),促进Bcl-2蛋白的表达(P<0.01),提高LC3II/I的比率(P<0.05);与miRNA-130a-3p mimics组相比较,miRNA-130a-3p mimics+LY294002组,可部分逆转miRNA-130a-3p mimics对细胞的作用。结论: 过表达miRNA-130a-3p可部分通过激活PI3K/AKT信号通路促进细胞的自噬与抑制细胞凋亡,减轻LPS诱导的心肌细胞损伤。  相似文献   

7.
目的: 心力衰竭患者呼吸调控异常的机制众说纷纭,特别是动脉血气周期性波浪式变化信号的改变及其与心功能的关系尚缺乏直接的试验证据。本文依据心力衰竭患者动脉血气周期性波浪式变化信号的降低幅度,探讨心力衰竭导致呼吸调控异常的机制。方法: 选择5名心力衰竭患者,连续桡动脉逐搏取血,测定PaO2,PaCO2,pHa和SaO2。选取2个典型呼吸周期,用于分析动脉血气的波浪式变化。比较患者相邻最高和最低值,以验证是否存在周期性波浪式信号变化。此外,将心力衰竭患者与心功能正常患者动脉血气周期性波浪式信号的变化幅度进行统计学t检验分析,比较有无差异。结果: 心力衰竭患者包括2例外科手术和3例ICU住院监护患者,4男1女,年龄(69±7)岁,身高(169±10)cm,体质量(75±19)kg,左心射血分数(LVEF)=(38±3)%。动脉血液充满肝素化细长塑化管需要17±2次心跳,即取血需要17±2次心跳,覆盖超过2个呼吸周期。心力衰竭患者PaO2,PaCO2,[H+]a和SaO2均呈现明显的波浪式变化(P<0.05),幅度分别是(7.94±2.02)mmHg,(1.18±0.56)mmHg,(0.54±0.17)nmol/L和(0.21±0.07)%,分别是各自均值的(6.1±1.5)%,(3.2±1.5)%,(1.5±0.5)%和(0.2±0.1)%。与心功能正常患者比较,动脉血气波浪式变化幅度呈现明显降低趋势,但仅PaO2和[H+]a有明显统计学差异(P<0.05)。结论: 采用连续逐搏动脉取血血气分析法证实,心力衰竭患者自主呼吸时动脉血气也有周期性波浪式变化信号,但其变化幅度较心功能正常患者明显降低。  相似文献   

8.
目的分析高脂高糖饮食诱导肥胖母亲对子代菌群及脂代谢影响。方法C57BL/6J雌性小鼠30只随机分为正常对照组、肥胖组、益生菌干预组,每组10只。分别给予标准饲料、高脂高糖饲料以及高脂高糖饲料同时给予益生菌,连续喂养6周,制成肥胖母鼠模型。6周后雌、雄鼠合笼,受孕,孕期继续上述饮食。产后母乳喂养,3周后处死。留取雌性子鼠第21天粪便样本进行PCR-DGGE分析,同时酶反应比色法分析子鼠血脂情况。结果与正常对照组子代相比,肥胖母鼠子代菌群结构出现异常,益生菌干预组子代肠道菌群失调状况明显改善;肥胖母鼠子代血清总胆固醇、低密度脂蛋白含量升高,益生菌干预组子代血脂异常情况明显改善。结论高脂高糖饮食诱导肥胖母亲子代存在肠道菌群紊乱及脂代谢异常,益生菌干预母亲有利于改善子代菌群紊乱及脂代谢异常。  相似文献   

9.
目的: 观察健康志愿者不同功率递增速率完成症状限制性极限心肺运动试验(CPET)对CPET峰值运动相关核心指标的影响,及运动中呼吸交换率(RER)的变化。以探讨不同功率递增速率对CPET峰值运动相关指标的影响。方法: 选择12名健康志愿者在一周内不同工作天随机完成中等适度程度(30 W/min)及比较低(10 W/min)和比较高(60 W/min)3种不同功率递增速率CPET。按标准方法比较CPET数据主要峰值运动核心指标:峰值运动时的摄氧量、二氧化碳排出量、负荷功率、呼吸频率、潮气量、分钟通气量、心率、血压和氧脉搏,运动持续时间和CPET各时段的RER。对三组不同功率递增速率下各个指标的差异进行组间两两比较。结果: 与中等适度功率递增速率组比较,比较低和比较高功率递增速率组的峰值功率分别显著地降低和升高((162.04±41.59)W/min vs (132.92±34.55) W/min vs (197.42±46.14) W/min, P<0.01);运动时间显著延长和缩短((5.69±1.33) min vs (13.49±3.43) min vs (3.56±0.76) min,P<0.01);峰值RER(1.27±0.07 vs 1.18±0.06 vs 1.33±0.08,P<0.01~P<0.05)与恢复期RER最大值(1.72±0.16 vs 1.61±0.11 vs 1.81±0.14,P<0.01~P<0.05)均显著降低和升高。结论: 不同功率递增速率CPET显著改变峰值运动时的功率、运动持续时间、峰值RER和恢复期最大RER。CPET规范化操作要选择个体化适合受试者的中等适度功率递增速率,而且也不能以某一固定的RER值作为保证安全、受试者达到极限运动和提前终止运动的依据。  相似文献   

10.
目的: 探讨心衰患者陈施呼吸的发生率及发生机制。方法: 连续入选2015年3月~2015年5月于阜外医院行睡眠呼吸监测的患者56例,分为心衰组和非心衰组。结果: 两组睡眠呼吸暂停的发生率均较高,心衰组11例患者中呼吸暂停低通气指数(AHI)>5的有10例,平均AHI指数23.93±14.63;非心衰组45例患者中AHI>5的有33例,平均AHI指数16.20±18.76;心衰组中枢性睡眠呼吸暂停(CSA)次数占睡眠呼吸暂停总数的比例明显大于非心衰组病人,分别为80.21%±30.55%和27.16%±35.71%,P<0.01。结论: 心脏的循环功能和肺脏的呼吸功能是联合一体化,相互联系、互为因果而又互相影响。慢性心力衰竭的循环障碍促成了潮式呼吸的发生,所以称之为心源性呼吸睡眠异常。  相似文献   

11.
Protein restriction during the suckling phase can malprogram rat offspring to a lean phenotype associated with metabolic dysfunctions later in life. We tested whether protein-caloric restriction during lactation can exacerbate the effect of a high-fat (HF) diet at adulthood. To test this hypothesis, we fed lactating Wistar dams with a low-protein (LP; 4% protein) diet during the first 2 weeks of lactation or a normal-protein (NP; 23% protein) diet throughout lactation. Rat offspring from NP and LP mothers received a normal-protein diet until 60 days old. At this time, a batch of animals from both groups was fed an HF (35% fat) diet, while another received an NF (7% fat) diet. Maternal protein-caloric restriction provoked lower body weight and fat pad stores, hypoinsulinemia, glucose intolerance, higher insulin sensitivity, reduced insulin secretion and altered autonomic nervous system (ANS) function in adult rat offspring. At 90 days old, NP rats fed an HF diet in adulthood displayed obesity, impaired glucose homeostasis and altered insulin secretion and ANS activity. Interestingly, the LP/HF group also presented fat pad and body weight gain, altered glucose homeostasis, hyperleptinemia and impaired insulin secretion but at a smaller magnitude than the NP-HF group. In addition, LP/HF rats displayed elevated insulin sensitivity. We concluded that protein-caloric restriction during the first 14 days of life programs the rat metabolism against obesity and insulin resistance exacerbation induced by an obesogenic HF diet.  相似文献   

12.
Maternal malnutrition is known to increase the risk of obesity in offspring. We investigated whether green tea extract (GTE) intake during lactation affects obesity-related fibrosis and inflammation in the kidney of high-fat-diet-fed adult offspring of protein-restricted-diet-fed dams during pregnancy and lactation. Pregnant Wistar rats received diets containing 20% (normal-protein, NP) or 8% (low-protein, LP) casein, and they received 0%-, 0.12%- or 0.24%-GTE-containing LP diets (LP/LP, LP/LGT and LP/HGT, respectively) during lactation. At weaning, the pups that received a diet providing 13% (normal-fat, NF) or 45% (high-fat, HF) energy from fat were divided into five groups: NP/NP/NF, LP/LP/NF, LP/LP/HF, LP/LGT/HF and LP/HGT/HF. At week 45, the degree of fibrosis; macrophage infiltration; protein expression levels of TGF-β; and mRNA levels of TNF-α, DNMT, UHRF1 and histone lysine methyltransferase (G9a) in the kidneys of male offspring were examined. The area of fibrosis and TGF-βlevels increased in the LP/LP/HF group. Conversely, the fibrotic areas and TGF-β levels in the LP/HGT/HF group decreased (33% and 31%, respectively) compared with those in the LP/LP/HF group. The number of macrophages and mRNA levels of TNF-α in the LP/HGT/HF group decreased (34% and 29%, respectively) compared with those in the LP/LP/HF group. DNMT1, UHRF1 and G9a mRNA levels in the LP/HGT/HF group decreased compared with those in the LP/LP/HF group. In conclusion, GTE intake during lactation attenuated tubulointerstitial fibrosis and macrophage infiltration by down-regulating epigenetic modulators such as DNMT1, UHRF1 and G9a in the kidney of HF-diet-fed adult offspring programmed by maternal protein restriction.  相似文献   

13.

Aim

To determine the impact of paternal obesity, maternal obesity or the combination of two obese parents on markers of adult offspring metabolism, with a focus on body mass (BM), lipid and carbohydrate, components of lipogenesis and beta-oxidation in the liver, sex dimorphism in the offspring that received a SC diet during the postnatal period.

Materials and Methods

Male and female C57BL/6 mice were fed a high-fat diet (HF; 49% lipids) or standard chow (SC; 17% lipids) for 8 weeks before mating until lactation. The offspring were labeled according to sex, maternal diet (first letters), paternal diet (second letters), and received a SCdiet until 12-weeks of age when they were sacrificed. BM, eating behavior, glucose tolerance, plasma analysis, gene and protein expression of the components of lipogenesis and beta-oxidation in the liver of offspring were evaluated.

Results

HF diet-fed mothers and fathers were overweight, hyperglycemic and glucose intolerant and had a deteriorating lipid profile. The adult male and female offspring of HF-mothers were overweight, with an increased adiposity index, hyperphagic, had an impaired glucose metabolism, increased total cholesterol and triacylglycerol levels, increased lipogenesis concomitant with decreased beta-oxidation resulting in liver steatosis. The male and female offspring of HF-father had impaired glucose metabolism, exacerbated lipogenesis without influencing beta-oxidation and enhanced hepatic steatosis. These findings are independent of BM. Male and female offspring of a mother and father that received a HF diet demonstrated these effects most prominently in adult life.

Conclusion

Paternal obesity leads to alterations in glucose metabolism, increase in components of lipogenesis and liver steatosis. In contrast, maternal obesity leads to overweight and changes in the metabolic profile and liver resulting from activation of hepatic lipogenesis with impaired beta-oxidation. When both parents are obese, the effects observed in the male and female offspring are exacerbated.  相似文献   

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16.
Fetal programming is linked to adulthood metabolic and chronic diseases. We hypothesized that early fish oil (FO) intake would revert the programming responses in adult offspring. Pregnant mice were fed either standard chow (SC) or a low-protein diet (LP) throughout pregnancy/lactation. At weaning, the following groups were formed: SC and SC-FO, LP and LP-FO, which were fed SC or SC+FO, respectively. The LP offspring are predisposed to becoming fat, hypercholesterolemic and hyperglycemic. In addition, during adulthood, they become hypertensive with hepatic steatosis and have a high level of sterol regulatory element binding protein (SREBP-1). However, LP offspring that were fed an FO-enriched diet have decreased body mass (BM) gain and lower final BM. In addition, with this diet, these mice have improved lipid metabolism with a decrease in total cholesterol (TC) and triacylglyceride (TG) levels, reduced fat pad masses and reduced adipocyte size. Furthermore, these LP offspring show reduced liver structural damage of alanine aminotransferase (ALT), liver steatosis with low SREBP-1 protein expression and high peroxisome proliferator activity receptor-alpha expression, and improvement of blood pressure (BP) and tumor necrosis factor (TNF)-alpha level. Early fish oil intake has beneficial effects on the programming responses that control body fat pad, glucose and lipid metabolism, and liver and adipose tissue structure in adult programmed offspring.  相似文献   

17.
Maternal obesity is associated with obesity and metabolic disorders in offspring. However, intervention strategies to reverse or ameliorate the effects of maternal obesity on offspring health are limited. Following maternal undernutrition, taurine supplementation can improve outcomes in offspring, possibly via effects on glucose homeostasis and insulin secretion. The effects of taurine in mediating inflammatory processes as a protective mechanism has not been investigated. Further, the efficacy of taurine supplementation in the setting of maternal obesity is not known. Using a model of maternal obesity, we examined the effects of maternal taurine supplementation on outcomes related to inflammation and lipid metabolism in mothers and neonates. Time-mated Wistar rats were randomised to either: 1) control : control diet during pregnancy and lactation (CON); 2) CON supplemented with 1.5% taurine in drinking water (CT); 3) maternal obesogenic diet (high fat, high fructose) during pregnancy and lactation (MO); or 4) MO supplemented with taurine (MOT). Maternal and neonatal weights, plasma cytokines and hepatic gene expression were analysed. A MO diet resulted in maternal hyperinsulinemia and hyperleptinemia and increased plasma glucose, glutamate and TNF-α concentrations. Taurine normalised maternal plasma TNF-α and glutamate concentrations in MOT animals. Both MO and MOT mothers displayed evidence of fatty liver accompanied by alterations in key markers of hepatic lipid metabolism. MO neonates displayed a pro-inflammatory hepatic profile which was partially rescued in MOT offspring. Conversely, a pro-inflammatory phenotype was observed in MOT mothers suggesting a possible maternal trade-off to protect the neonate. Despite protective effects of taurine in MOT offspring, neonatal mortality was increased in CT neonates, indicating possible adverse effects of taurine in the setting of normal pregnancy. These data suggest that maternal taurine supplementation may ameliorate the adverse effects observed in offspring following a maternal obesogenic diet but these effects are dependent upon prior maternal nutritional background.  相似文献   

18.
Although a pre-pregnancy dietary intervention is believed to be able to prevent offspring obesity, research evidence is absent. We hypothesize that a long period of pre-pregnancy maternal diet transition from a high-fat (HF) diet to a normal-fat (NF) diet effectively prevents offspring obesity, and this preventive effect is independent of maternal body weight change. In our study, female mice were either continued on an NF diet (NF group) or an HF diet (HF group) until weaning, or switched from an HF to an NF for 1 week (H1N group), 5 weeks (H5N group) or 9 weeks (H9N group) before pregnancy. After weaning, the offspring were given the HF diet for 12 weeks to promote obesity. The mothers, regardless of which group, did not display maternal body weight change and glucose intolerance either before pregnancy or after weaning. Compared to the HF group, the H1N and H5N, but not the H9N, offspring developed glucose intolerance earlier, with more severely imbalanced glucose homeostasis. These offspring also displayed hepatocyte degeneration and significant adipocyte hypertrophy associated with higher expression of lipogenesis genes. The molecular mechanistic study showed blunted insulin signaling, overactivated adipocyte Akt signaling and hepatic AMPK signaling with enhanced lipogenesis genes in the H1N and H5N versus the NF offspring. However, maternal H9N diets normalized glucose and lipid metabolism of the offspring via resensitized insulin signaling and normalized Akt and AMPK signaling. In summary, we showed that a long-term maternal diet intervention effectively released the intergenerational obesogenic effect of maternal HF diet independent of maternal weight management.  相似文献   

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