Aleksandra Mladenovic Djordjevic
University of Belgrade
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Neurochemistry International | 2010
Aleksandra Mladenovic Djordjevic; Milka Perovic; Vesna Tesic; Nikola Tanic; Ljubisav Rakic; Sabera Ruzdijic; Selma Kanazir
Brain aging is related to the numerous structural and functional changes including decreased synaptic plasticity. The beneficial effects of dietary restriction (DR) are well known but insufficiently investigated at the level of plasticity-related markers. Therefore, the aim of this study was to examine the expression profiles of proteins structurally and functionally related to synapses-growth-associated protein 43 (GAP-43), synaptophysin (SPH) and alpha-synuclein (alpha-Syn), in the course of aging and in response to long-term DR. The mRNA and protein levels of three presynaptic proteins were assessed by Real Time RT-PCR and Western blotting in the cortex and hippocampus of young (6-month-old), middle-aged (12-month-old), aged (18-month-old) and old (24-month-old) male Wistar rats fed ad libitum and exposed to DR starting from 6 months of age. We observed that long-term DR modulated age-related transcriptional changes by maintaining stable mRNAs levels in the cortex. No major age-related changes of the protein levels were observed in the cortex, while the specific temporal decline was detected in the hippocampus for all three proteins. The SPH levels were decreased across lifespan (0.8-, 0.8- and 0.6-fold change at 12, 18 and 24 months), while the significant decrease of GAP-43 and alpha-Syn protein was detected at 24 months of age (0.6- and 0.7-fold decrease, respectively). Long-term DR eliminated this decline by increasing GAP-43, SPH and alpha-Syn protein levels (1.7-, 1.7- and 1.6-fold, respectively) thus reverting protein levels to the values measured in 6-month-old animals.Specific pattern of changes observed in the hippocampus identifies this structure as more vulnerable to the processes of aging and with a more pronounced response to the DR effects. The observed DR-induced stabilization of the levels of three presynaptic proteins indicates the beneficial effect of DR on age-related decline in the capacity for synaptic plasticity.
Mechanisms of Ageing and Development | 2016
Inês Figueira; Adelaide Fernandes; Aleksandra Mladenovic Djordjevic; Andrés J. López-Contreras; Catarina M. Henriques; Colin Selman; Elisabete Ferreiro; Efstathios S. Gonos; José Luis Trejo; Juhi Misra; Lene Juel Rasmussen; Sara Xapelli; Timothy Ellam; Ilaria Bellantuono
Over 60% of people aged over 65 are affected by multiple morbidities, which are more difficult to treat, generate increased healthcare costs and lead to poor quality of life compared to individual diseases. With the number of older people steadily increasing this presents a societal challenge. Age is the major risk factor for age-related diseases and recent research developments have led to the proposal that pharmacological interventions targeting common mechanisms of ageing may be able to delay the onset of multimorbidity. Here we review the state of the knowledge of multimorbidity, appraise the available evidence supporting the role of mechanisms of ageing in the development of the most common age-related diseases and assess potential molecules that may successfully target those key mechanisms.
Biogerontology | 2015
Kosara Smiljanic; Vesna Pešić; Aleksandra Mladenovic Djordjevic; Zeljko Pavkovic; Marjana Brkic; Sabera Ruzdijic; Selma Kanazir
Dietary restriction (DR) exerts significant beneficial effects in terms of aging and age-related diseases in many organisms including humans. The present study aimed to examine the influence of long-term DR on the BDNF system at the transcriptional and translational levels in the cortex and hippocampus of middle-aged (12-month-old) and aged (24-month-old) male Wistar rats. The obtained results revealed that the DR upregulated the expression of exon-specific BDNF transcripts in both regions, followed by elevated levels of mBDNF only in the cortex in middle-aged animals. In aged animals, DR modulated BDNF protein levels by increasing proBDNF and by declining mBDNF levels. Additionally, elevated levels of the full-length TrkB accompanied by a decreased level of the less-glycosylated TrkB protein were observed in middle-aged rats following DR, while in aged rats, DR amplified only the expression of the less-glycosylated form of TrkB. The levels of phosphorylated TrkBY816 were stable during aging regardless of feeding. Reduced levels of p75NTR were detected in both regions of middle-aged DR-fed animals, while a significant increase was measured in the cortex of aged DR-fed rats. These findings shed additional light on DR as a modulator of BDNF system revealing its disparate effects in middle-aged and aged animals. Given the importance of the proBDNF/BDNF circuit-level expression in different brain functions and various aspects of behavior, it is necessary to further elucidate the optimal duration of the applied dietary regimen with regard to the animal age in order to achieve its most favorable effects.
Journals of Gerontology Series A-biological Sciences and Medical Sciences | 2018
Smilja Todorovic; Kosara Smiljanic; Sabera Ruzdijic; Aleksandra Mladenovic Djordjevic; Selma Kanazir
Dietary restriction (DR) is an important experimental paradigm for lifespan and healthspan extension, but its specific contribution regarding the type, onset, and duration are still debatable. This study was designed to examine the impact of different dietary protocols by assessing the behavioral changes during aging. We exposed male Wistar rats of various age to ad libitum (AL) or DR (60 per cent of AL daily intake) feeding regimens with different onsets. The impact of DR on locomotor activity, memory, and learning was examined in 12-, 18-, and 24-month-old treated animals and controls using open field and Y-maze tests. We have also evaluated the effects of different DRs through the quantification of animal frailty, using behavioral data to create the frailty score. Our results indicated that DR improves general animal activity and spatial memory and decreases frailty with the effect being highly dependent on DR duration and onset. Notably, life-long restriction started at young age had the most profound effect. In contrast, shorter duration and later onset of restricted diet had significantly lower or no impact on animals behavior and frailty. This study signifies the importance of DR starting point and duration as critical determinants of DR effects on healthspan.
Biogerontology | 2018
Kosara Smiljanic; Smilja Todorovic; Aleksandra Mladenovic Djordjevic; Tim Vanmierlo; Dieter Lütjohann; Sanja Ivkovic; Selma Kanazir
Albeit aging is an inevitable process, the rate of aging is susceptible to modifications. Dietary restriction (DR) is a vigorous nongenetic and nonpharmacological intervention that is known to delay aging and increase healthspan in diverse species. This study aimed to compare the impact of different restricting feeding regimes such as limited daily feeding (LDF, 60% AL) and intermittent feeding (IF) on brain energy homeostasis during aging. The analysis was focused on the key molecules in glucose and cholesterol metabolism in the cortex and hippocampus of middle-aged (12-month-old) and aged (24-month-old) male Wistar rats. We measured the impact of different DRs on the expression levels of AMPK, glucose transporters (GLUT1, GLUT3, GLUT4), and the rate-limiting enzyme in the cholesterol synthesis pathway (HMGCR). Additionally, we assessed the changes in the amounts of cholesterol, its metabolite, and precursors following LDF and IF. IF decreased the levels of AMPK and pAMPK in the cortex while the increased levels were detected in the hippocampus. Glucose metabolism was more affected in the cortex, while cholesterol metabolism was more influenced in the hippocampus. Overall, the hippocampus was more resilient to the DRs, with fewer changes compared to the cortex. We showed that LDF and IF differently affected the brain energy homeostasis during aging and that specific brain regions exhibited distinct vulnerabilities towards DRs. Consequently, special attention should be paid to the DR application among elderly as different phases of aging do not respond equally to altered nutritional regimes.
Age | 2013
Milka Perovic; Vesna Tesic; Aleksandra Mladenovic Djordjevic; Kosara Smiljanic; Natasa Loncarevic-Vasiljkovic; Sabera Ruzdijic; Selma Kanazir
Lipids | 2013
Kosara Smiljanic; Tim Vanmierlo; Aleksandra Mladenovic Djordjevic; Milka Perovic; Natasa Loncarevic-Vasiljkovic; Vesna Tesic; Ljubisav Rakic; Sabera Ruzdijic; Dieter Lütjohann; Selma Kanazir
Histochemistry and Cell Biology | 2010
Kosara Smiljanic; Irena Lavrnja; Aleksandra Mladenovic Djordjevic; Sabera Ruzdijic; Mirjana Stojiljkovic; Sanja Pekovic; Selma Kanazir
Biogerontology | 2009
Milka Perovic; Aleksandra Mladenovic Djordjevic; Kosara Smiljanic; Nikola Tanic; Ljubisav Rakic; Sabera Ruzdijic; Selma Kanazir
Age | 2014
Kosara Smiljanic; Tim Vanmierlo; Aleksandra Mladenovic Djordjevic; Milka Perovic; Sanja Ivkovic; Dieter Lütjohann; Selma Kanazir