LOMBARDI, ASSUNTA
 Distribuzione geografica
Continente #
NA - Nord America 2.205
EU - Europa 1.344
AS - Asia 751
AF - Africa 10
OC - Oceania 7
SA - Sud America 4
Totale 4.321
Nazione #
US - Stati Uniti d'America 2.168
IT - Italia 631
SG - Singapore 389
CN - Cina 286
UA - Ucraina 140
SE - Svezia 124
FI - Finlandia 122
DE - Germania 114
IE - Irlanda 74
GB - Regno Unito 47
VN - Vietnam 44
NL - Olanda 38
CA - Canada 37
FR - Francia 20
IN - India 13
RU - Federazione Russa 12
CI - Costa d'Avorio 7
AU - Australia 6
HK - Hong Kong 6
ES - Italia 4
PT - Portogallo 4
BE - Belgio 3
BR - Brasile 3
ID - Indonesia 3
GH - Ghana 2
JP - Giappone 2
PK - Pakistan 2
TR - Turchia 2
AE - Emirati Arabi Uniti 1
AL - Albania 1
BG - Bulgaria 1
CH - Svizzera 1
CL - Cile 1
CZ - Repubblica Ceca 1
DK - Danimarca 1
EG - Egitto 1
IQ - Iraq 1
IR - Iran 1
KR - Corea 1
LT - Lituania 1
LU - Lussemburgo 1
LV - Lettonia 1
NO - Norvegia 1
NZ - Nuova Zelanda 1
RO - Romania 1
SK - Slovacchia (Repubblica Slovacca) 1
Totale 4.321
Città #
Chandler 380
Singapore 306
Jacksonville 206
Santa Clara 159
Princeton 119
Millbury 109
Boston 95
Nanjing 82
Napoli 80
Ashburn 79
Wilmington 73
Naples 57
Caserta 46
Beijing 45
Dong Ket 44
Amsterdam 36
Ottawa 32
Hebei 30
Kronberg 30
Des Moines 25
Boardman 22
Nanchang 20
Lawrence 18
Norwalk 18
Shenyang 17
Tianjin 14
Changsha 13
Jiaxing 13
Los Angeles 12
Mondragone 12
Pune 11
Falls Church 9
Orange 9
Redwood City 9
San Giorgio A Cremano 9
Woodbridge 9
Dallas 8
Dublin 8
Ercolano 8
Salerno 8
Secaucus 8
Borghetto Santo Spirito 7
Houston 7
Palermo 7
Striano 7
Buffalo 6
Cagliari 6
Cambridge 6
Hong Kong 6
Phoenix 6
Portici 6
Aversa 5
Formia 5
Helsinki 5
Shanghai 5
Sydney 5
Ann Arbor 4
Bari 4
Casalnuovo di Napoli 4
Hangzhou 4
Maddaloni 4
Manduria 4
Munich 4
Orta di Atella 4
Rome 4
Scafati 4
Toronto 4
Battipaglia 3
Brusciano 3
Changchun 3
Florence 3
Jakarta 3
Kunming 3
Nocera Superiore 3
Sant'Anastasia 3
The Dalles 3
Vertova 3
Washington 3
Accra 2
Alba 2
Andover 2
Bacoli 2
Bitonto 2
Bologna 2
Braga 2
Brussels 2
Carmignano di Brenta 2
Casoria 2
Castellammare di Stabia 2
Chiesina Uzzanese 2
Cologne 2
Columbus 2
Edinburgh 2
Elk Grove Village 2
Falkenstein 2
Fiera di Primiero 2
Frankfurt am Main 2
Frattamaggiore 2
Giugliano In Campania 2
Lappeenranta 2
Totale 2.498
Nome #
Influenza dello stato tiroideo e nutrizionale sull'effetto della 3,5-diiodotironina sull'omeostasi lipidica: tessuto specificità, vie di segnalazione e meccanismo molecolare 100
Muscle Oxidative Stress Plays a Role in Hyperthyroidism-Linked Insulin Resistance 98
Akap1 deficiency promotes mitochondrial aberrations and exacerbates cardiac injury following permanent coronary ligation via enhanced mitophagy and apoptosis 83
3,5-Diiodo-L-thyronine activates brown adipose tissue thermogenesis in hypothyroid rats. 82
ROS-Mediated Apoptotic Cell Death of Human Colon Cancer LoVo Cells by Milk δ-Valerobetaine 76
Correction: Akap1 deficiency promotes mitochondrial aberrations and exacerbates cardiac injury following permanent coronary ligation via enhanced mitophagy and apoptosis 75
The saturation degree of fatty acids and their derived acylcarnitines determines the direct effect of metabolically active thyroid hormones on insulin sensitivity in skeletal muscle cells 69
3,5-diiodo-L-thyronine affects structural and metabolic features of skeletal muscle mitochondria in high-fat-diet fed rats producing a co-adaptation to the glycolytic fiber phenotype 63
Enhanced uptake of gH625 by blood brain barrier compared to liver in vivo: characterization of the mechanism by an in vitro model and implications for delivery 63
Mitochondrial uncoupling proteins and energy metabolism. 62
UNCOUPLING PROTEINS 2 AND 3 INFLUNCE OBESITY AND INFLAMMATION IN TRANSGENIC MICE. 58
Ruolo fisiologico della proteina disaccoppiante di tipo 3 58
Loss of Akap1 exacerbates pressure overload-induced cardiac hypertrophy and heart failure 58
3,5 Diiodo-l-Thyronine (T₂) Promotes the Browning of White Adipose Tissue in High-Fat Diet-Induced Overweight Male Rats Housed at Thermoneutrality. 57
3,5-Diiodo-L-Thyronine Exerts Metabolically Favorable Effects on Visceral Adipose Tissue of Rats Receiving a High-Fat Diet 55
FASTING, LIPID METABOLISM AND TRIIODOTHYRONINE IN RAT GASTROCNEMIUS MUSCLE: INTERRELATED ROLES OF UNCOUPLING PROTEIN 3, MITOCHONDRIAL THIOESTERASE AND COENZYME Q. 50
THYROID HORMONE AND UNCOUPLING PROTEINS. 50
3,5-diiodo-l-thyronine, by modulating mitochondrial functions, reverses hepatic fat accumulation in rats fed a high-fat diet 50
3,5-diiodo-L-thyronine powerfully reduces adiposity by increasing the burning of fat 49
Exercise with food withdrawal at thermoneutrality impacts fuel use, the microbiome, AMPK phosphorylation, muscle fibers, and thyroid hormone levels in rats 49
3,5-diiodothyronine (T2) stimulates fatty acid oxidation and mitochondrial uncoupling in rat skeletal muscle 47
Pathways affected by 3,5-diiodo-l-thyronine in liver of high fat-fed rats: evidence from two-dimensional electrophoresis, blue-native PAGE, and mass spectrometry. 47
COMPOSIZIONI COMPRENDENTI LA 3,5-DIIODOTIRONINA E USO FARMACEUTICO DI ESSE 46
Peptide gH625 enters into neuron and astrocyte cell lines and crosses the blood-brain barrier in rats. 45
Oxidative damage and mitochondrial functionality in hearts from KO UCP3 mice housed at thermoneutrality 45
3,5-Diiodo-L-thyronine and 3,5,3'-triiodo-L-thyronine both improve the cold tolerance of hypothyroid rats, but possibly via different mechanisms. 44
3,5-Diiodo-L-thyronine improves glucose tolerance in high fat fed rats. 43
Chronic overnutrition, fat-storing capacity, and insulin resistance. 42
Effect of Iodothyronines on Thermogenesis: Focus on Brown Adipose Tissue. 42
Sequential changes in the signal transduction responses of skeletal muscle following food deprivation 41
Peroxisome Proliferator-Activated Receptor (PPAR) Delta, a Conserved Director of Lipid Homeostasis through Regulation of the Oxidative Capacity of Muscle 41
Combined cDNA array/ RT-PCR analysis of gene expression profile in rat gastrocnemius muscle: relation to its adaptive function in energy metabolism during fasting 40
Uncoupling protein 3 expression levels influence insulin sensitivity, fatty acid oxidation, and related signaling pathways 40
Absence of Uncoupling Protein-3 at Thermoneutrality Impacts Lipid Handling and Energy Homeostasis in Mice 40
From chronic overnutrition to insulin resistance: the role of fat-storing capacity and inflammation. CO-FIRST AUTHOR 40
Absence of UCP3 influences mitochondrial functionality in brown adipose tissue 39
ON GOING AND PROSPECTIVE RESEARCH ON NUTRITION AND MITOCHONDRIAL FUNCTIONS 38
3,5-DIIODO-L-THYRONINE PREVENTS HIGH FAT DIET-INDUCED INSULIN RESISTANCE BYREDUCING TRIGLYCERIDES ACCUMULATION 38
IDENTIFICATION OF 3,5-DIIODO-THYRONINE BINDING PROTEINS IN RAT LIVER CYTOSOL BY PHOTOAFFINITY LABELLING 37
Brain uncoupling protein 2: uncoupled neuronal mitochondria predict thermal synapses in homeostatic centers. 37
Studies of complex biological systems with applications to molecular medicine: the need to integrate transcriptomic and proteomic approaches. 37
Genetic deletion of uncoupling protein 3 exaggerates apoptotic cell death in the ischemic heart leading to heart failure 37
Hepatic mitochondrial function and efficiency in rats simultaneously exposed to chronic high-fat diet and low doses of persistent organic pollutant 37
Differential Effects of 3,5-Diiodo-L-Thyronine and 3,5,3'-Triiodo-L-Thyronine On Mitochondrial Respiratory Pathways in Liver from Hypothyroid Rats. 37
Rapid activation by 3,5,3’-L-triiodothyronine of AMPK/ACC and Akt/PKB signaling pathways: relation to changes in fuel metabolism and Myosin Heavy Chain protein content in rat gastrocnemius muscle in vivo. 36
UCP3 translocates lipid hydroperoxide and mediates lipid hydroperoxide-dependent mitochondrial uncoupling. 36
Absence of uncoupling protein 3 at thermoneutrality influences brown adipose tissue mitochondrial functionality in mice 36
3,5-diiodo-L-thyronine regulates glucose-6-phosphate dehydrogenase activity in the rat. 34
3,5-diiodo-l-thyronine protects against high fat diet induced insulin resistance and glucose intolerance in rats 34
TRC150094, a novel functional analog of iodothyronines, reduces adiposity by increasing energy expenditure and fatty acid oxidation in rats receiving a high-fat diet. 34
BN-PAGE-based approach to study thyroid hormones and mitochondrial function. 34
Regulation of skeletal muscle mitochondrial activity by thyroid hormones: focus on the "old" triiodothyronine and the "emerging" 3,5-diiodothyronine 34
Are the Effects of Triidothyronine (T3) on Resting Metabolic rate in Euthyroid Rats Entirely caused by T3 Itself? 33
3,5-diiodothyronine rapidly enhances mitochondrial fatty acid oxidation rate and thermogenesis in rat skeletal muscle: AMP-activated protein kinase involvement. 33
Time-dependent effects on body weight gain and hepatic oxidative stress in rats exposed to both high fat feeding and low doses of persistent organic pollutant 33
Thyroid hormone as molecular determinats of thermogenesis 32
Diiodotironine e Tessuto Adiposo Bruno 32
3,5-DIIODOTHYRONINE STIMULATES FATTY ACID METABOLISM IN SKELETAL MUSCLE OFHYPOTHYROID RATS 32
Insights into sarcopenia: interrelation between protein profiles and mitochondrial functionality in rat ageing skeletal muscle 32
PPARs: Nuclear Receptors Controlled by, and Controlling, Nutrient Handling through Nuclear and Cytosolic Signaling. 32
Fenofibrate activates the biochemical pathways and the de novo expression of genes related to lipid handling and uncoupling protein-3 functions in liver of normal rats. 31
Both 3,5-diiodo-L-thyronine and 3,5,3'-triiodo-L-thyronine prevent short-term hepatic lipid accumulation via distinct mechanisms in rats being fed a high-fat diet 31
Uncoupling proteins-2 and 3 influence obesity and inflammation in transgenic mice 30
Uncoupling protein 3 (UCP3) participates in the translocation of lipid hydroperoxides (LOOH) across the mitochondrial inner membrane and in the LOOH-dependent mitochondrial uncoupling 30
The thyroid hormone metabolite 3,5-diiodo-L-thyronine prevents hepatic fat accumulation and systemic insulin resistance through direct activation of sirtuin 1 (SIRT1). 30
Mild Endurance Exercise during Fasting Increases Gastrocnemius Muscle and Prefrontal Cortex Thyroid Hormone Levels through Differential BHB and BCAA-Mediated BDNF-mTOR Signaling in Rats 30
Changes in rat fatty liver proteome following 3,5-diiodothyronine treatment: a coombined blue native- and 2D electrophoresys approach 29
3,5-diiodo-L-thyronine-induced proteomic changes in liver mitochondria from high fat- fed- rats: evidences from two-dimensional electrophoresis 29
3,5-DIIODOTHYRONINE (T2) ADMINISTRATION TO HYPOTHYROID RATS ENHANCES THE OXIDATIVE CAPACITY OF BROWN ADIPOSE TISSUE 29
Thyroid-state influence on protein-expression profile of rat skeletal muscle 28
3,5-diiodothyronine: biological action and therapeutic perspective 28
Defining the transcriptomic and proteomic profiles of rat ageing skeletal muscle by the use of a cDNA array, 2D- and Blue native-PAGE approach. 28
Ablation of uncoupling protein 3 affects interrelated factors leading to lipolysis and insulin resistance in visceral white adipose tissue 28
Mitochondrial function and thyroid hormones 27
3,5-Diiodo-L-thyronine prevents high-fat-diet-induced insulin resistance in rat skeletal muscle through metabolic and structural adaptations. 27
Non-Thyrotoxic Prevention of Diet-Induced Insulin Resistance by 3,5-Diiodo-L-Thyronine in Rats. 27
1,3-Butanediol Administration Increases β-Hydroxybutyrate Plasma Levels and Affects Redox Homeostasis, Endoplasmic Reticulum Stress, and Adipokine Production in Rat Gonadal Adipose Tissue 26
Adaptive Thermogenesis Driving Catch-Up Fat Is Associated With Increased Muscle Type 3 and Decreased Hepatic Type 1 Iodothyronine Deiodinase Activities: A Functional and Proteomic Study 26
3,5-Diiodo-L-Thyronine (T2) Administration Affects Visceral Adipose Tissue Inflammatory State in Rats Receiving Long-Lasting High-Fat Diet 26
A proteomics approach to identify protein expression changes in rat liver following administration of 3,5,3'-triiodo-L-thyronine 24
Metabolic effects of thyroid hormone derivatives 24
Differential 3,5,3'-triiodothyronine-mediated regulation of uncoupling protein 3 transcription: role of atty acids. 24
Response of rat gastrocnemius skeletal muscle lipid metabolism to T3 administration: focus on FAT/CD36 24
Metabolic effects of the iodothyronine functional analogue TRC150094 on the liver and skeletal muscle of high-fat diet fed overweight rats: an integrated proteomic study. 24
Thyroid hormone effects on putative biochemical patways involved in UCP3 activation in rat skeletal muscle mitochondria 23
Skeletal muscle mitochondrial free-fatty-acid content and membrane potential sensitivity in different thyroid states: involvement of uncoupling protein-3 and adenine nucleotide translocase 23
Fuel economy in food-deprived skeletal muscle: signalling pathways and regulatory mechanisms. 23
Acute administration of 3,5-diiodo-L-thyronine to hypothyroid rats affects bioenergetic parameters in rat skeletal muscle mitochondria 23
UNCOUPLING PROTEIN-3 (UCP3) IS INVOLVEDIN METABOLIC ADAPTATION INDUCED BY TRIIODOTHYRONINE 23
Mammalian mitochondrial proteome and its functions: current investigative techniques and future perspectives on ageing and diabetes. 23
Role of uncoupling protein-3 in energy metabolism and in the prevention of high fat induced overweight of mice housed at themoneutrality 23
Control of energy metabolism by iodothyronines 22
Uncoupling prtoein-3 is a molecular determinant for the regulation of resting metabolic rate by thyroid hormone 22
Identification of 3,5-Diiodo-L-thyronine –Binding Proteins in Rat Liver Cytosol by Photoaffinity labeling 22
Thyroid hormone and uncoupling proteins 22
Age-Related Changes in Renal and Hepatic Cellular Mechanisms Associated with Variations in Rat Serum Thyroid Hormone Levels 22
Rapid stimulation in vitro of rat liver cytochrome oxidase activity by 3,5-diiodo-L-thyronine and by 3,3'-diiodo-L-thyronine. 22
Interrelated influence of superoxides and free fatty acids over mitochondrial uncoupling in skeletal muscle 21
Rapid effect of 3,5-diiodo-l-thyronine on mitochondrial fatty acid oxidation and thermogenesis in skeletal muscle 21
Fasting, lipid metabolism, and triiodothyronine in rat gastrocnemius muscle: interrelated roles of uncoupling protein 3, mitochondrial thioesterase, and coenzyme Q. 20
Totale 3.837
Categoria #
all - tutte 20.877
article - articoli 0
book - libri 0
conference - conferenze 0
curatela - curatele 0
other - altro 0
patent - brevetti 0
selected - selezionate 0
volume - volumi 0
Totale 20.877


Totale Lug Ago Sett Ott Nov Dic Gen Feb Mar Apr Mag Giu
2019/2020203 0 0 0 0 0 5 9 6 24 20 55 84
2020/2021583 4 37 69 77 46 101 42 13 77 17 47 53
2021/2022675 45 3 0 21 14 8 1 22 85 27 108 341
2022/2023912 149 77 24 91 99 108 12 108 124 46 51 23
2023/2024571 34 97 30 31 28 55 35 62 13 19 108 59
2024/2025676 190 253 17 33 74 109 0 0 0 0 0 0
Totale 4.505