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1.
Noninvasive imaging of cardiac fibrosis is important for early diagnosis and intervention in chronic heart diseases. Here, we investigated whether noninvasive, contrast agent-free MRI T2-mapping can quantify myocardial fibrosis in preclinical models of aging and pressure overload. Myocardial fibrosis and remodeling were analyzed in two animal models: (i) aging (15-month-old male CF-1 mice vs. young 6- to 8-week-old mice), and (ii) pressure overload (PO; by transverse aortic constriction in 4- to 5-month-old male C57BL/6 mice vs. sham-operated for 14 days). In vivo T2-mapping was performed by acquiring data during the isovolumic and early diastolic phases, with a modified respiratory and ECG-triggered multiecho TurboRARE sequence on a 7-T MRI. Cine MRI provided cardiac morphology and function. A quantitative segmentation method was developed to analyze the in vivo T2-maps of hearts at midventricle, apex, and basal regions. The cardiac fibrosis area was analyzed ex vivo by picro sirius red (PSR) staining. Both aged and pressure-overloaded hearts developed significant myocardial contractile dysfunction, cardiac hypertrophy, and interstitial fibrosis. The aged mice had two phenotypes, fibrotic and mild-fibrotic. Notably, the aged fibrotic subgroup and the PO mice showed a marked decrease in T2 relaxation times (25.3 ± 0.6 in aged vs. 29.9 ± 0.7 ms in young mice, p = 0.002; and 24.3 ± 1.7 in PO vs. 28.7 ± 0.7 ms in shams, p = 0.05). However, no significant difference in T2 was detected between the aged mild-fibrotic subgroup and the young mice. Accordingly, an inverse correlation between myocardial fibrosis percentage (FP) and T2 relaxation time was derived (R2 = 0.98): T2 (ms) = 30.45 – 1.05 × FP. Thus, these results demonstrate a statistical agreement between T2-map–quantified fibrosis and PSR staining in two different clinically relevant animal models. In conclusion, T2-mapping MRI is a promising noninvasive contrast agent-free quantitative technique to characterize myocardial fibrosis.  相似文献   
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Objectives: The steeling effect suggests that early-life adversity can have a beneficial impact later in life. However, little is known about its underlying mechanisms and long-term outcomes . The study aimed to examine the role of early-life adversity (ELA) on successful aging, and whether this relationship can be explained by mental and physical health.

Method: Socio-demographics, early-life adversity (ELA), individual quality of life (iQoL), and mental and physical health of 270 individuals (Mage = 66.82 years, 71.5% female) were assessed. Polynomial regressions and mediation analyses were conducted.

Results: Significant inverse U-shaped associations were found between ELA and iQoL (β = ?.59, p = .005) and between ELA and mental health (β = ?.64, p = .002), but not between ELA and physical health. Furthermore, mental health significantly mediated the relationship between ELA and iQoL (b = ?.84, BCa CI [?1.66, ?.27]).

Conclusion: Highest level of individual quality of life (i.e. successful aging) was related to a moderate amount of ELA. Additionally, mental health significantly mediated this relationship. These findings suggest that some amount of ELA could be beneficial for successful aging. Resource-focused interventions are needed to improve health and promote successful aging for an underdetected, at-risk subgroup with low early-life adversity.  相似文献   

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Recent work suggests that while voluntary episodic memory declines with age, involuntary episodic memory, which comes to mind spontaneously without intention, remains relatively intact. However, the neurophysiology underlying these differences has yet to be established. The current study used electroencephalography (EEG) to investigate voluntary and involuntary retrieval in older and younger adults. Participants first encoded sounds, half of which were paired with pictures, the other half unpaired. EEG was then recorded as they listened to the sounds, with participants in the involuntary group performing a sound localization cover task, and those in the voluntary group additionally attempting to recall the associated pictures. Participants later reported which sounds brought the paired picture to mind during the localization task. Reaction times on the localization task were slower for voluntary than involuntary retrieval and for paired than unpaired sounds, possibly reflecting increased attentional demands of voluntary retrieval and interference from reactivation of the associated pictures respectively. For the EEG analyses, young adults showed greater alpha event-related desynchronization (ERD) during voluntary than involuntary retrieval at frontal and occipital sites, while older adults showed pronounced alpha ERD regardless of intention. Additionally, older adults showed greater ERD for paired than unpaired sounds at occipital sites, likely reflecting visual reactivation of the associated pictures. Young adults did not show this alpha ERD memory effect. Taken together, these data suggest that involuntary memory is largely preserved with age, but this may be due to older adults' greater recruitment of top-down control even when demand for such control is limited.  相似文献   
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Caveolin-1 (Cav-1) appears to be both a pathophysiological contributor and a target in different inflammatory and hyperproliferative skin conditions as well as in skin aging. Skin fibroblasts demonstrate an up-regulation of Cav-1 expression both in chronological and UV-induced aging, and such an up-regulation was observed both in vitro and in vivo. Typical alterations in aging skin involve a reduction of the dermis thickness, a significant expansion of the dermal white adipose tissue as well as modifications of the content and distribution of hyaluronan, impairment of autophagic flux, a reduction of collagen expression and an increase in tissue inflammation. All of these phenomena can be connected with changes in Cav-1 expression in the aging skin. Modified expression of Cav-1 can also significantly influence the mechanical properties of individual skin layers, thus changing the total mechanical stability of the layered composite skin/WAT, leading to typical structural modifications of the skin surface in the aging skin. Selective reduction of Cav-1 expression has the potential to exert anti-aging effects on the skin.  相似文献   
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目的:观察稀土化合物硝酸钇[Y(NO33]亚慢性(90 d)暴露对大鼠学习记忆能力的影响,并探究其可能的机制,为全面评估稀土元素钇的健康风险提供科学依据。方法:选用刚离乳(PND21)SD雌性大鼠,根据质量随机分为4组,分别为对照组(ddH2O),Y(NO33低剂量组[10 mg/(kg·d)]、中剂量组[40 mg/(kg·d)]和高剂量组[160 mg/(kg·d)],每组15只。连续灌胃受试物90 d后进行旷场实验、高架十字迷宫实验、转棒实验、Morris水迷宫实验。水迷宫检测后,每组取5只雌鼠心脏原位灌注,进行脑组织病理学检查。每组剩余10只雌鼠摘取脑组织,紫外分光光度计检测雌鼠大脑皮质和海马中谷氨酸(Glu)的含量;Western blot检测海马组织中N-甲基-D-天冬氨酸(NMDA)受体蛋白表达情况。结果:与对照组相比,硝酸钇90 d暴露后,转棒实验中160 mg/(kg·d)剂量组大鼠在棒时间、在棒圈数、掉落速度明显升高(P<0.05)。在Morris水迷宫定位航向实验第4天时,40、160 mg/(kg·d)剂量组大鼠逃避潜伏期明显降低(P<0.05);Morris水迷宫空间探索实验中,40 mg/(kg·d)剂量组大鼠穿越平台次数、目标象限游泳时间明显增加(P<0.05);160 mg/(kg·d)剂量组穿越平台次数、进入目标象限次数、目标象限游泳时间明显增加(P<0.05);160 mg/(kg·d)剂量组大鼠东北、东南、西南象限的逃避潜伏期明显低于西北象限的逃避潜伏期(P<0.05)。160 mg/(kg·d)剂量组大鼠海马中Glu含量和NMDA受体NR1含量均明显低于对照组(P<0.05)。40和160 mg/(kg·d)剂量组大鼠海马中NMDA受体NR2A含量明显低于对照组(P<0.05)。结论:硝酸钇亚慢性(90 d)暴露可以引起雌性大鼠空间学习记忆能力增强;硝酸钇可能通过降低海马组织神经元细胞外Glu含量,抑制NMDA受体激活,增强雌性大鼠的空间学习记忆能力。  相似文献   
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目的 探讨N-乙酰-5-羟色胺(N-acetylserotonin,NAS)对视网膜缺血-再灌注损伤(retina ischemia-reperfusion injury,RIRI)大鼠视网膜Fas、FasL蛋白表达的影响。方法 取健康成年Sprague Dawley大鼠54只,将大鼠随机分为正常组(6只)、RIRI组(24只)与NAS组(24只);采用高眼压法建立大鼠RIRI模型,依据造模后不同时间点将RIRI组与NAS组大鼠又分为6 h、12 h、24 h及72 h四个亚组。NAS组于造模前30 min腹腔注射NAS(5 mg·kg-1),RIRI组腹腔注射等剂量的生理盐水。通过HE染色在光学显微镜下观察各组大鼠视网膜形态学变化,并记录各组大鼠视网膜厚度及视网膜神经节细胞数,采用免疫组织化学染色法检测NAS对RIRI大鼠视网膜Fas、FasL蛋白表达的影响。结果 HE染色显示,正常组大鼠视网膜各层细胞分界清晰,形态正常,神经细胞排列整齐;RIRI组大鼠再灌注后6 h视网膜各层出现水肿,以神经节细胞层及内核层较显著,神经节细胞数较正常组减少;随后视网膜水肿进一步加重,神经节细胞继续减少;NAS组大鼠在再灌注后6 h、12 h、24 h 视网膜水肿程度较 RIRI组轻,NAS组在再灌注后72 h视网膜厚度较 RIRI组厚,NAS组各时间点神经节细胞数均较 RIRI组多,差异均有统计学意义(均为P<0.05)。免疫组织化学染色显示,正常组几乎未见 Fas+细胞。再灌注后6 h,RIRI组视网膜神经节细胞及内核层开始出现少量 Fas+细胞;再灌注后12 h,RIRI组视网膜 Fas+细胞表达逐渐增多;再灌注后24 h视网膜Fas+细胞数达到高峰,棕色阳性染色细胞分布在视网膜神经节细胞层、内丛状层、内核层及神经纤维层;再灌注后 72 h 视网膜 Fas+细胞较再灌注后 24 h 减少。NAS组在再灌注后6 h、12 h、24 h、72 h 视网膜 Fas+细胞数均较 RIRI组各时间点减少,再灌注后24 h,Fas+细胞数达较高水平,随后下降,差异均有统计学意义(均为P<0.05)。正常组视网膜可见 FasL 全层低表达。RIRI组再灌注后 6 h,视网膜神经节细胞层和神经纤维层存在少量 FasL+细胞;再灌注后12 h FasL蛋白表达逐渐增多;再灌注后24 h FasL+细胞数达高峰,可见深棕色的细胞膜及细胞质染色细胞分布在视网膜神经节细胞层、内丛状层、内核层及神经纤维层;再灌注后72 h FasL蛋白的阳性表达逐渐减少。NAS组再灌注后6 h、12 h、24 h、72 h 视网膜FasL+细胞数均少于 RIRI组各时间点阳性细胞数,差异均有统计学意义(均为P<0.05)。结论 NAS可通过抑制RIRI大鼠视网膜细胞Fas、FasL蛋白的表达,减轻缺血再灌注对大鼠视网膜细胞造成的损伤。  相似文献   
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