1. Nicotinamide is an inhibitor of SIRT1 in vitro, but can be a stimulator in cells.
    Eun Seong Hwang et al, 2017, Cell Mol Life Sci CrossRef
  2. Anticancer Molecular Mechanisms of Resveratrol
    Elena M. Varoni et al, 2016, Front. Nutr. CrossRef
  3. Green Coffee Extract Protects H9C2 Cardiomyocytes from Doxorubicin Induced Apoptosis
    Srividya Malkapuram et al, 2016, Research J. of Medicinal Plant CrossRef
  4. Resveratrol inhibits doxorubicin-induced cardiotoxicity via sirtuin 1 activation in H9c2 cardiomyocytes
    Mi-Hua Liu et al, 2016 CrossRef
  5. SIRT1 activation attenuates diastolic dysfunction by reducing cardiac fibrosis in a model of anthracycline cardiomyopathy
    Donato Cappetta et al, 2016, International Journal of Cardiology CrossRef
  6. Mode of treatment governs curcumin response on doxorubicin-induced toxicity in cardiomyoblasts
    Aditi Jain et al, 2017, Mol Cell Biochem CrossRef
  7. Epigenetic Regulatory Mechanisms Induced by Resveratrol
    Guilherme Fernandes et al, 2017, Nutrients CrossRef
  8. Regulation of Sirtuin-Mediated Protein Deacetylation by Cardioprotective Phytochemicals
    Niria Treviño-Saldaña et al, 2017, Oxidative Medicine and Cellular Longevity CrossRef
  9. Doxorubicin-induced nitrosative stress is mitigated by vitamin C via the modulation of nitric oxide synthases
    Gauri Akolkar et al, 2017, American Journal of Physiology-Cell Physiology CrossRef
  10. Downregulation of microRNA-199a-5p protects cardiomyocytes in cyanotic congenital heart disease by attenuating endoplasmic reticulum stress
    Yang Zhou et al, 2017 CrossRef
  11. Resveratrol suppresses doxorubicin-induced cardiotoxicity by disrupting E2F1 mediated autophagy inhibition and apoptosis promotion
    Jun Gu et al, 2018, Biochemical Pharmacology CrossRef
  12. SLAB51 Probiotic Formulation Activates SIRT1 Pathway Promoting Antioxidant and Neuroprotective Effects in an AD Mouse Model
    Laura Bonfili et al, 2018, Mol Neurobiol CrossRef
  13. Doxorubicin triggers bioenergetic failure and p53 activation in mouse stem cell-derived cardiomyocytes
    Teresa Cunha-Oliveira et al, 2018, Toxicology and Applied Pharmacology CrossRef
  14. Natural products targeting ER stress pathway for the treatment of cardiovascular diseases
    Ker Woon Choy et al, 2018, Pharmacological Research CrossRef
  15. A novel agent attenuates cardiotoxicity and improves antitumor activity of doxorubicin in breast cancer cells
    Ying Zhang et al, 2018, J Cell Biochem CrossRef
  16. Effects of resveratrol pretreatment on endoplasmic reticulum stress and cognitive function after surgery in aged mice
    Bei Wang et al, 2018, BMC Anesthesiol CrossRef
  17. Reactive Oxygen Species Drive Epigenetic Changes in Radiation-Induced Fibrosis
    Shashank Shrishrimal et al, 2019, Oxidative Medicine and Cellular Longevity CrossRef
  18. Leveraging the Cardio-Protective and Anticancer Properties of Resveratrol in Cardio-Oncology
    Ibrahim Abdelgawad et al, 2019, Nutrients CrossRef
  19. Protective effect of autologous transplantation of resveratrol preconditioned adipose‐derived stem cells in the treatment of diabetic liver dysfunction in rat model
    Tung‐Sheng Chen et al, 2019, J Tissue Eng Regen Med CrossRef
  20. Modulatory effects of resveratrol on endoplasmic reticulum stress-associated apoptosis and oxido-inflammatory markers in a rat model of rotenone-induced Parkinson's disease
    Hanaa Hibishy Gaballah et al, 2016, Chemico-Biological Interactions CrossRef
  21. Energetic interventions for healthspan and resiliency with aging
    Derek M. Huffman et al, 2016, Experimental Gerontology CrossRef
  22. The role of sirtuins in mitochondrial function and doxorubicin-induced cardiac dysfunction
    Vernon W. Dolinsky, 2017 CrossRef
  23. Hsp90 inhibitor geldanamycin attenuates the cytotoxicity of sunitinib in cardiomyocytes via inhibition of the autophagy pathway
    Takayuki Kimura et al, 2017, Toxicology and Applied Pharmacology CrossRef
  24. Zn2+ and mPTP mediate resveratrol-induced myocardial protection from endoplasmic reticulum stress
    Yifei He et al, 2020, Metallomics CrossRef
  25. New Insights About Doxorubicin-Induced Toxicity to Cardiomyoblast-Derived H9C2 Cells and Dexrazoxane Cytoprotective Effect: Contribution of In Vitro1H-NMR Metabonomics
    Matthieu Dallons et al, 2020, Front. Pharmacol. CrossRef
  26. Oxidative stress: role of physical exercise and antioxidant nutraceuticals in adulthood and aging
    Carolina Simioni et al, 2018, Oncotarget CrossRef
  27. Resveratrol protects against early polymicrobial sepsis-induced acute kidney injury through inhibiting endoplasmic reticulum stress-activated NF-κB pathway
    Nian Wang et al, 2017, Oncotarget CrossRef
  28. A Bibliometric Review of Publications on Oxidative Stress and Chemobrain: 1990–2019
    Taylor McElroy et al, 2020, Antioxidants CrossRef
  29. Cardiotoxicity of doxorubicin-based therapy: What is the protective cognition that phytochemicals provide us?
    Cun Liu et al, 2020, Pharmacological Research CrossRef
  30. Encapsulation of doxorubicin in chitosan-alginate nanoparticles improves its stability and cytotoxicity in resistant lymphoma L5178 MDR cells
    Krassimira Yoncheva et al, 2020, Journal of Drug Delivery Science and Technology CrossRef
  31. Trichostatin A inhibits proliferation of PC3 prostate cancer cells by disrupting the EGFR pathway
    Hong Zhang et al, 2019, Oncol Lett CrossRef
  32. SIRT1 is a key regulatory target for the treatment of the endoplasmic reticulum stress-related organ damage
    Fuquan Wang et al, 2020, Biomedicine & Pharmacotherapy CrossRef
  33. Effects of resveratrol, curcumin, berberine and other nutraceuticals on aging, cancer development, cancer stem cells and microRNAs
    James A. McCubrey et al, 2017, Aging CrossRef
  34. GPR91 Receptor Mediates Protection against Doxorubicin-Induced Cardiotoxicity without Altering Its Anticancer Efficacy. An In Vitro Study on H9C2 Cardiomyoblasts and Breast Cancer-Derived MCF-7 Cells
    Matthieu Dallons et al, 2020, Cells CrossRef
  35. CYP1B1 as a therapeutic target in cardio-oncology
    Alexa N. Carrera et al, 2020 CrossRef
  36. Dapagliflozin suppresses ER stress and protects doxorubicin-induced cardiotoxicity in breast cancer patients
    Wei-Ting Chang et al, 2020, Arch Toxicol CrossRef
  37. The role of taurine on chemotherapy-induced cardiotoxicity: A systematic review of non-clinical study
    Mahedeh Samadi et al, 2020, Life Sciences CrossRef
  38. Endoplasmic reticulum stress in doxorubicin-induced cardiotoxicity may be therapeutically targeted by natural and chemical compounds: A review
    Fatemeh Yarmohammadi et al, 2021, Pharmacological Research CrossRef
  39. Molecular mechanisms of doxorubicin-induced cardiotoxicity: novel roles of sirtuin 1-mediated signaling pathways
    Jie Wang(a) et al, 2021, Cell. Mol. Life Sci. CrossRef
  40. Mitochondrial Sirtuins and Doxorubicin-induced Cardiotoxicity
    Ling He et al, 2021, Cardiovasc Toxicol CrossRef
  41. Polyphenols’ Cardioprotective Potential: Review of Rat Fibroblasts as Well as Rat and Human Cardiomyocyte Cell Lines Research
    Michał Otręba et al, 2021, Molecules CrossRef
  42. Protective Role of Polyphenols in Heart Failure: Molecular Targets and Cellular Mechanisms Underlying Their Therapeutic Potential
    Rami S. Najjar et al, 2021, IJMS CrossRef
  43. Recent advancements in cardiovascular bioprinting and bioprinted cardiac constructs
    Harshavardhan Budharaju et al, 2021, Biomater. Sci. CrossRef
  44. Endoplasmic reticulum stress and unfolded protein response in cardiovascular diseases.
    Jun Ren et al, 2021, Nat Rev Cardiol CrossRef
  45. Unfolded protein response during cardiovascular disorders: a tilt towards pro-survival and cellular homeostasis
    Shreya Das et al, 2021, Mol Cell Biochem CrossRef
  46. Role of acetylation in doxorubicin-induced cardiotoxicity
    Daisong Li et al, 2021, Redox Biology CrossRef
  47. A Systematic Review of the Potential Chemoprotective Effects of Resveratrol on Doxorubicin-Induced Cardiotoxicity: Focus on the Antioxidant, Antiapoptotic, and Anti-Inflammatory Activities
    Li-Feng Hu et al, 2021, Oxidative Medicine and Cellular Longevity CrossRef
  48. Perturbed ER homeostasis by IGF-IIRα promotes cardiac damage under stresses
    Sudhir Pandey et al, 2021, Mol Cell Biochem CrossRef
  49. Therapeutic Targets for DOX-Induced Cardiomyopathy: Role of Apoptosis vs. Ferroptosis
    Hiroki Kitakata et al, 2022, IJMS CrossRef
  50. Cardioprotective Strategies for Doxorubicin-induced Cardiotoxicity: Present and Future
    A. M. Chaulin et al, 2022, Racionalʹnaâ farmakoterapiâ v kardiologii CrossRef
  51. Dapagliflozin protects against doxorubicin-induced cardiotoxicity by restoring STAT3
    Wei-Ting Chang et al, 2022, Arch Toxicol CrossRef
  52. Ferulic Acid, Pterostilbene, and Tyrosol Protect the Heart from ER-Stress-Induced Injury by Activating SIRT1-Dependent Deacetylation of eIF2α
    Kévin Monceaux et al, 2022, IJMS CrossRef
  53. PRMT1 suppresses doxorubicin-induced cardiotoxicity by inhibiting endoplasmic reticulum stress
    Su Woo Kim et al, 2022, Cellular Signalling CrossRef
  54. Doxorubicin induced cardio toxicity through sirtuins mediated mitochondrial disruption
    Nisar Ahmad et al, 2022, Chemico-Biological Interactions CrossRef
  55. NF-κB and its crosstalk with endoplasmic reticulum stress in atherosclerosis
    Wenjing Li et al, 2022, Front. Cardiovasc. Med. CrossRef
  56. Therapeutic and Nutraceutical Effects of Polyphenolics from Natural Sources
    Mehtap Sahiner et al, 2022, Molecules CrossRef
  57. Resveratrol and FGF1 Synergistically Ameliorates Doxorubicin-Induced Cardiotoxicity via Activation of SIRT1-NRF2 Pathway
    Guangping Lu et al, 2022, Nutrients CrossRef
  58. SIRT1 activation and its effect on intercalated disc proteins as a way to reduce doxorubicin cardiotoxicity
    Ekaterina Podyacheva et al, 2022, Front. Pharmacol. CrossRef
  59. Exogenous 8-hydroxydeoxyguanosine attenuates doxorubicin-induced cardiotoxicity by decreasing pyroptosis in H9c2 cardiomyocytes
    Soyoung Hwang et al, 2022, BMC Mol and Cell Biol CrossRef
  60. Resveratrol Suppresses Bupivacaine-Induced Spinal Neurotoxicity in Rats by Inhibiting Endoplasmic Reticulum Stress via SIRT1 Modulation
    Yunpeng Luo et al, 2023, BioMed Research International CrossRef
  61. Immunoregulation by resveratrol; implications for normal tissue protection and tumour suppression
    Armineh Rezagholi Lalani et al, 2023, Clin Exp Pharma Physio CrossRef
  62. Resveratrol Augments Doxorubicin and Cisplatin Chemotherapy: A Novel Therapeutic Strategy
    Sepideh Mirzaei et al, 2023, CMP CrossRef
  63. Portulaca oleracea Protects H9c2 Cardiomyocytes Against Doxorubicin-Induced Toxicity by Inhibition of Oxidative Stress and Apoptosis
    Azar Hosseini et al, 2023, J Adv Med Biomed Res CrossRef
  64. Protection against cancer therapy-induced cardiovascular injury by planed-derived polyphenols and nanomaterials
    Yunshu Liao et al, 2023, Environmental Research CrossRef
  65. The Essential Strategies to Mitigate Cardiotoxicity Caused by Doxorubicin
    Aleksey Michailovich Chaulin, 2023, Life CrossRef
  66. SIRT1 regulates endoplasmic reticulum stress-related organ damage
    He Hu et al, 2024, Acta Histochemica CrossRef
  67. Metabolism and Receptor Mechanisms of Niacin Action
    S. E. Boronovskiy et al, 2024, Cell Tiss. Biol. CrossRef
  68. Metabolism and Receptor Mechanisms of Niacin Action
    S. E. Boronovskiy et al, 2023, Citologiâ CrossRef
  69. null
    Asim K. Duttaroy et al, 2024 CrossRef
  70. The Effects of Prunus Laurocerasus Fruit Extract on Oxidative and Endoplasmic Reticulum Stress Responses in Doxorubicin-induced Cardiac Damage
    Selma Cırrık et al, 2024, jarem CrossRef
  71. Marein Alleviates Doxorubicin-Induced Cardiotoxicity through FAK/AKT Pathway Modulation while Potentiating its Anticancer Activity
    Juanjuan Xu et al, 2024, Cardiovasc Toxicol CrossRef
  72. Potential of natural drug modulation of endoplasmic reticulum stress in the treatment of myocardial injury
    Kai Yang et al, 2024, Journal of Pharmaceutical Analysis CrossRef