Trehalose

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Trehalose ameliorates peritoneal fibrosis by promoting Snail degradation and inhibiting mesothelial-to-mesenchymal transition in mesothelial cells Scientific Reports
Trehalose ameliorates peritoneal fibrosis by promoting Snail degradation and inhibiting mesothelial-to-mesenchymal transition in mesothelial cells Scientific Reports
Peritoneal fibrosis (PF) is a severe complication of peritoneal dialysis, but there are few effective therapies for it. Recent studies have revealed a new biological function of trehalose as an autophagy inducer. Thus far, there are few reports regarding the therapeutic effects of trehalose on fibrotic diseases. Therefore, we examined whether trehalose has anti-fibrotic effects on PF. PF was induced by intraperitoneal injection of chlorhexidine gluconate (CG). CG challenges induced the increase of peritoneal thickness, ColIα1 mRNA expression and hydroxyproline content, all of which were significantly attenuated by trehalose. In addition, CG challenges induced a marked peritoneal accumulation of α-SMA+ myofibroblasts that was reduced by trehalose. The number of Wt1+ α-SMA+ cells in the peritoneum increased following CG challenges, suggesting that a part of α-SMA+ myofibroblasts were derived from peritoneal mesothelial cells (PMCs). The number of Wt1+ α-SMA+ cells was also suppressed by trehalose. Additionally, trehalose attenuated the increase of α-SMA and ColIα1 mRNA expression induced by TGF-β1 through Snail protein degradation, which was dependent on autophagy in PMCs. These results suggest that trehalose might be a novel therapeutic agent for PF through the induction of autophagy and the suppression of mesothelial-to-mesenchymal transition in PMCs.
·nature.com·
Trehalose ameliorates peritoneal fibrosis by promoting Snail degradation and inhibiting mesothelial-to-mesenchymal transition in mesothelial cells Scientific Reports
Trehalose Ameliorates Seizure Susceptibility in Lafora Disease Mouse Models by Suppressing Neuroinflammation and Endoplasmic Reticulum Stress SpringerLink
Trehalose Ameliorates Seizure Susceptibility in Lafora Disease Mouse Models by Suppressing Neuroinflammation and Endoplasmic Reticulum Stress SpringerLink
Lafora disease (LD) is one of the progressive and fatal forms of a neurodegenerative disorder and is characterized by teenage-onset myoclonic seizures. Neuropathological changes in LD include the formation of abnormal glycogen as Lafora bodies, gliosis, and neuroinflammation. LD is caused by defects in the gene coding for phosphatase (laforin) or ubiquitin ligase (malin). Mouse models of LD, developed by targeted disruption of these two genes, develop most symptoms of LD and show increased susceptibility to induced seizures. Studies on mouse models also suggest that defective autophagy might contribute to LD etiology. In an attempt to understand the specific role of autophagy in LD pathogenesis, in this study, we fed LD animals with trehalose, an inducer of autophagy, for 3 months and looked at its effect on the neuropathology and seizure susceptibility. We demonstrate here that trehalose ameliorates gliosis, neuroinflammation, and endoplasmic reticulum stress and reduces susceptibility to induced seizures in LD animals. However, trehalose did not affect the formation of Lafora bodies, suggesting the epileptic phenotype in LD could be either secondary to or independent of Lafora bodies. Taken together, our results suggest that autophagy inducers can be considered as potential therapeutic molecules for Lafora disease.
·link.springer.com·
Trehalose Ameliorates Seizure Susceptibility in Lafora Disease Mouse Models by Suppressing Neuroinflammation and Endoplasmic Reticulum Stress SpringerLink
Trehalose and Magnesium Chloride Exert a Common Anti-amyloidogenic Eff (...)
Trehalose and Magnesium Chloride Exert a Common Anti-amyloidogenic Eff (...)
Many degenerative disorder such as Parkinsons, Alzheimers, Huntingtons disease, etc are caused due to the deposition of amyloid fibrils, formed due to the ordered aggregation of misfolded/unfolded proteins. Misfolded or unfolded proteins aggregate mostly through hydrophobic interactions which are unexposed in native state, but become exposed upon unfolding. To counteract amyloid related diseases, inhibition of the protein self assembly into fibril is a potential therapeutic strategy. The study aims at investigating the effect of selected compounds, namely trehalose and magnesium chloride hexahydrate towards inhibition and disaggregation of amyloid fibrils using Hen Egg White Lysozyme as a model. We further attempted to understand the mechanism of action with the help of various biophysical, microscopic as well as computational studies. A common mechanism of action was identified where the selected compounds exert their anti-amyloidogenic effects by altering HEWL conformations characterized by reduction in the beta sheet content and decrease in exposed hydrophobic surfaces. The altered conformation seems to have lesser amyloidogenic propensity leading to inhibition as well as disaggregation of amyloids.
·link.springer.com·
Trehalose and Magnesium Chloride Exert a Common Anti-amyloidogenic Eff (...)
Trehalose as a promising therapeutic candidate for the treatment of Parkinson's disease - PubMed
Trehalose as a promising therapeutic candidate for the treatment of Parkinson's disease - PubMed
Parkinson's disease (PD) is a progressive movement disorder resulting primarily from loss of nigrostriatal dopaminergic neurons. PD is characterized by the accumulation of protein aggregates, and evidence suggests that aberrant protein deposition in dopaminergic neurons could be related to the dysre …
·pubmed.ncbi.nlm.nih.gov·
Trehalose as a promising therapeutic candidate for the treatment of Parkinson's disease - PubMed
Trehalose attenuates renal ischemia-reperfusion injury by enhancing autophagy and inhibiting oxidative stress and inflammation American Journal of Physiology-Renal Physiology
Trehalose attenuates renal ischemia-reperfusion injury by enhancing autophagy and inhibiting oxidative stress and inflammation American Journal of Physiology-Renal Physiology
Renal ischemia-reperfusion (IR) injury is one of the most common acute kidney injuries, but there is still a lack of effective treatment in the clinical setting. Trehalose (Tre), a natural disaccha...
·journals.physiology.org·
Trehalose attenuates renal ischemia-reperfusion injury by enhancing autophagy and inhibiting oxidative stress and inflammation American Journal of Physiology-Renal Physiology
Trehalose decreases mutant SOD1 expression and alleviates motor defici (...)
Trehalose decreases mutant SOD1 expression and alleviates motor defici (...)
Amyotrophic lateral sclerosis (ALS) is a fatal neurodegenerative disorder for which there is currently no effective treatment. Studies indicate that enhancing autophagy in mouse models of neurodegenerative disease can ameliorate the behavioral symptoms and pathological damage associated with the acc …
·ncbi.nlm.nih.gov·
Trehalose decreases mutant SOD1 expression and alleviates motor defici (...)
Trehalose differentially inhibits aggregation and neurotoxicity of bet (...)
Trehalose differentially inhibits aggregation and neurotoxicity of bet (...)
A key event in Alzheimer's disease (AD) pathogenesis is the conversion of the peptide beta-amyloid (Abeta) from its soluble monomeric form into various aggregated morphologies in the brain. Preventing aggregation of Abeta is being actively pursued as a primary therapeutic strategy for treating AD. T …
·ncbi.nlm.nih.gov·
Trehalose differentially inhibits aggregation and neurotoxicity of bet (...)
Trehalose does not improve neuronal survival on exposure to alpha-synu (...)
Trehalose does not improve neuronal survival on exposure to alpha-synu (...)
Parkinson's disease is a debilitating neurodegenerative disorder that is pathologically characterized by intracellular inclusions comprised primarily of alpha-synuclein (αSyn) that can also be transmitted from neuron to neuron. Several lines of evidence suggest that these inclusions cause neurodegen …
·ncbi.nlm.nih.gov·
Trehalose does not improve neuronal survival on exposure to alpha-synu (...)
Trehalose elevates brain zinc levels following controlled cortical impact in a mouse model of traumatic brain injury - Metallomics (RSC Publishing)
Trehalose elevates brain zinc levels following controlled cortical impact in a mouse model of traumatic brain injury - Metallomics (RSC Publishing)
Zinc (Zn) deficiency is a clinical consequence of brain injury that can result in neuropathological outcomes that are exacerbated with age. Here, we present laser ablation-inductively coupled plasma-mass spectrometry (LA-ICP-MS) imaging data showing modulation of brain Zn levels by the disaccharide trehalose
·pubs.rsc.org·
Trehalose elevates brain zinc levels following controlled cortical impact in a mouse model of traumatic brain injury - Metallomics (RSC Publishing)
Trehalose enhances the antitumor potential of methotrexate against mice bearing Ehrlich ascites carcinoma. - PubMed - NCBI
Trehalose enhances the antitumor potential of methotrexate against mice bearing Ehrlich ascites carcinoma. - PubMed - NCBI
Methotrexate (MTX) is commonly used as a standard chemotherapy for many cancers, however its usage required high doses thereby leading to severe adverse effects. In a trial to find a suitable neoadjuvant therapy to decrease MTX dosage without lowering its chemotherapeutic efficacy, we investigated t …
·ncbi.nlm.nih.gov·
Trehalose enhances the antitumor potential of methotrexate against mice bearing Ehrlich ascites carcinoma. - PubMed - NCBI
Trehalose for Ocular Surface Health
Trehalose for Ocular Surface Health
Trehalose is a natural disaccharide synthesized in various life forms, but not found in vertebrates. An increasing body of evidence demonstrates exceptional bioprotective characteristics of trehalose. This review discusses the scientific findings on potential ...
·ncbi.nlm.nih.gov·
Trehalose for Ocular Surface Health
Trehalose Improves Cognition in the Transgenic Tg2576 Mouse Model of Alzheimer's Disease. - PubMed - NCBI
Trehalose Improves Cognition in the Transgenic Tg2576 Mouse Model of Alzheimer's Disease. - PubMed - NCBI
This study assessed the therapeutic utility of the autophagy enhancing stable disaccharide trehalose in the Tg2576 transgenic mouse model of Alzheimer's disease (AD) via an oral gavage of a 2% trehalose solution for 31 days. Furthermore, as AD is a neurodegenerative condition in which the transition …
·ncbi.nlm.nih.gov·
Trehalose Improves Cognition in the Transgenic Tg2576 Mouse Model of Alzheimer's Disease. - PubMed - NCBI
Trehalose Improves Cognition in the Transgenic Tg2576 Mouse Model of A (...)
Trehalose Improves Cognition in the Transgenic Tg2576 Mouse Model of A (...)
This study assessed the therapeutic utility of the autophagy enhancing stable disaccharide trehalose in the Tg2576 transgenic mouse model of Alzheimer's disease (AD) via an oral gavage of a 2% trehalose solution for 31 days. Furthermore, as AD is a neurodegenerative condition in which the transition …
·ncbi.nlm.nih.gov·
Trehalose Improves Cognition in the Transgenic Tg2576 Mouse Model of A (...)
Trehalose improves human fibroblast deficits in a new CHIP-mutation re (...)
Trehalose improves human fibroblast deficits in a new CHIP-mutation re (...)
In this work we investigate the role of CHIP in a new CHIP-mutation related ataxia and the therapeutic potential of trehalose. The patient's fibroblasts with a new form of hereditary ataxia, related to STUB1 gene (CHIP) mutations, and three age and sex-matched controls were treated with epoxomicin a …
·ncbi.nlm.nih.gov·
Trehalose improves human fibroblast deficits in a new CHIP-mutation re (...)
Trehalose improves traumatic brain injury-induced cognitive impairment (...)
Trehalose improves traumatic brain injury-induced cognitive impairment (...)
Traumatic brain Injury (TBI) is a significant cause of death and long-term disability for which there are currently no effective pharmacological treatment options. In this study then, we utilized a mouse model of TBI to assess the therapeutic potential of the stable disaccharide trehalose, which is …
·ncbi.nlm.nih.gov·
Trehalose improves traumatic brain injury-induced cognitive impairment (...)
Trehalose improves traumatic brain injury-induced cognitive impairment. - PubMed - NCBI
Trehalose improves traumatic brain injury-induced cognitive impairment. - PubMed - NCBI
Traumatic brain Injury (TBI) is a significant cause of death and long-term disability for which there are currently no effective pharmacological treatment options. In this study then, we utilized a mouse model of TBI to assess the therapeutic potential of the stable disaccharide trehalose, which is …
·ncbi.nlm.nih.gov·
Trehalose improves traumatic brain injury-induced cognitive impairment. - PubMed - NCBI
Trehalose in Machado-Joseph Disease Safety, Tolerability, and Efficacy SpringerLink
Trehalose in Machado-Joseph Disease Safety, Tolerability, and Efficacy SpringerLink
Machado-Joseph disease (MJD) is relatively prevalent among the Yemenite Jewish subpopulation living in Israel. Currently, there is no treatment able to modify the disease progression. Trehalose is a disaccharide with protein-stabilizing and autophagy-enhancing properties. In animal models of MJD, trehalose showed reduction of cerebellar lesion size and improved motor function. This study was designed to be a proof-of-concept, phase 2 study lasting 6 to 12 months, to determine the safety, tolerability, and efficacy of weekly IV administration of 15 g or 30 g 10% trehalose solution in 14 MJD patients. Primary endpoints were safety and tolerability, which were assessed by various clinical and laboratory tests. Secondary endpoints were changes in the Scale for Assessment and Rating of Ataxia (SARA) score, Neurological Examination Score for Spinocerebellar Ataxia (NESSCA), time to do 9-hole peg test (9HPT), time to do 8-meter walk (8MW), and quality of life assessed by the World Health Organization Quality-of-Life Questionnaire-BREF (WHOQoL-BREF). Trehalose was well tolerated, and no serious drug-related adverse events were noted. The average SARA score, NESSCA, and time to do 9HPT and 8MW and the WHOQoL-BREF for all patients remained stable at 6 months. Six patients received treatment for as long as 12 months and continued to remain stable on all the above tests. IV trehalose seems to be safe in humans and probably effective to stabilize neurological impairment in MJD.
·link.springer.com·
Trehalose in Machado-Joseph Disease Safety, Tolerability, and Efficacy SpringerLink
Trehalose in ophthalmology. - PubMed - NCBI
Trehalose in ophthalmology. - PubMed - NCBI
Trehalose, a disaccharide of glucose, is a naturally occurring nontoxic and nonreducing bioactive sugar. Trehalose is synthetized by many organisms when cells are exposed to stressful conditions, including dehydration, heat, oxidation, hypoxia or even anoxia. Although trehalose is not synthesized by …
·ncbi.nlm.nih.gov·
Trehalose in ophthalmology. - PubMed - NCBI
Trehalose induced conformational changes in the amyloid-ß peptide. - P (...)
Trehalose induced conformational changes in the amyloid-ß peptide. - P (...)
Alzheimer's disease is an irreversible and progressive brain disorder featured by the accumulation of Amyloid-β (Aβ) peptide, which forms insoluble assemblies that builds up into plaques resulting in cognitive decline and memory loss. The formation of fibrillar amyloid deposits is accompanied by con …
·ncbi.nlm.nih.gov·
Trehalose induced conformational changes in the amyloid-ß peptide. - P (...)
Trehalose Induces Autophagy Against Inflammation by Activating TFEB Signaling Pathway in Human Corneal Epithelial Cells Exposed to Hyperosmotic Stress - PubMed
Trehalose Induces Autophagy Against Inflammation by Activating TFEB Signaling Pathway in Human Corneal Epithelial Cells Exposed to Hyperosmotic Stress - PubMed
Our findings demonstrate that trehalose, functioning as an autophagy enhancer, suppresses the inflammatory response by promoting autophagic flux via TFEB activation in primary HCECs exposed to hyperosmotic stress, a process that is beneficial to dry eye.
·pubmed.ncbi.nlm.nih.gov·
Trehalose Induces Autophagy Against Inflammation by Activating TFEB Signaling Pathway in Human Corneal Epithelial Cells Exposed to Hyperosmotic Stress - PubMed
Trehalose induces functionally active conformation in the intrinsicall (...)
Trehalose induces functionally active conformation in the intrinsicall (...)
(2017). Trehalose induces functionally active conformation in the intrinsically disordered N-terminal domain of glucocorticoid receptor. Journal of Biomolecular Structure and Dynamics: Vol. 35, No. 10, pp. 2248-2256.
·tandfonline.com·
Trehalose induces functionally active conformation in the intrinsicall (...)
Trehalose inhibits cell proliferation and amplifies long-term temozolomide- and radiation-induced cytotoxicity in melanoma cells A role for autoph... - PubMed - NCBI
Trehalose inhibits cell proliferation and amplifies long-term temozolomide- and radiation-induced cytotoxicity in melanoma cells A role for autoph... - PubMed - NCBI
Cutaneous melanomas frequently metastasize to the brain, with temozolomide (TMZ) plus radiotherapy (RT) offering little control of these lesions. We tested whether trehalose, a natural glucose disaccharide proved to induce autophagy, could enhance the effect of TMZ and ionizing radiation (IR). In tw …
·ncbi.nlm.nih.gov·
Trehalose inhibits cell proliferation and amplifies long-term temozolomide- and radiation-induced cytotoxicity in melanoma cells A role for autoph... - PubMed - NCBI
Trehalose inhibits cell proliferation and amplifies long-term temozolomide- and radiation-induced cytotoxicity in melanoma cells A role for autophagy and premature senescence
Trehalose inhibits cell proliferation and amplifies long-term temozolomide- and radiation-induced cytotoxicity in melanoma cells A role for autophagy and premature senescence
Trehalose, a natural disaccharide, inhibits short-term cell proliferation and, even more, colony-forming capacity in melanoma cells. Moreover, trehalose magnifies temozolomide (TMZ)- and irradiation ...
·onlinelibrary.wiley.com·
Trehalose inhibits cell proliferation and amplifies long-term temozolomide- and radiation-induced cytotoxicity in melanoma cells A role for autophagy and premature senescence