keyword
https://read.qxmd.com/read/38617985/kat7-hmgn1-signaling-epigenetically-induces-tyrosine-phosphorylation-regulated-kinase-1a-expression-to-ameliorate-insulin-resistance-in-alzheimer-s-disease
#21
JOURNAL ARTICLE
Qun-Shan Lu, Lin Ma, Wen-Jing Jiang, Xing-Bang Wang, Mei Lu
BACKGROUND: Epidemiological studies have revealed a correlation between Alzheimer's disease (AD) and type 2 diabetes mellitus (T2D). Insulin resistance in the brain is a common feature in patients with T2D and AD. KAT7 is a histone acetyltransferase that participates in the modulation of various genes. AIM: To determine the effects of KAT7 on insulin patients with AD. METHODS: APPswe/PS1-dE9 double-transgenic and db/db mice were used to mimic AD and diabetes, respectively...
March 19, 2024: World Journal of Psychiatry
https://read.qxmd.com/read/38617915/dapagliflozin-ameliorates-myocardial-infarction-injury-through-ampk%C3%AE-dependent-regulation-of-oxidative-stress-and-apoptosis
#22
JOURNAL ARTICLE
Yuce Peng, Mingyu Guo, Minghao Luo, Dingyi Lv, Ke Liao, Suxin Luo, Bingyu Zhang
Dapagliflozin (DAPA) has been demonstrated to reduce cardiovascular mortality and heart failure hospitalization rates in diabetic patients. However, the mechanism underlying its cardio-protective effect in non-diabetic patients remains unclear. Our study aimed to explore the cardio-protective impact of DAPA on myocardial infarction in non-diabetic mice. We induced myocardial infarction in C57BL/6 mice by ligating the descending branch of the left coronary artery. After surgery, the animals were randomly treated with either saline or DAPA...
April 15, 2024: Heliyon
https://read.qxmd.com/read/38617707/exploring-the-potential-of-2-arylbenzimidazole-scaffolds-as-novel-%C3%AE-amylase-inhibitors-qsar-molecular-docking-simulation-and-pharmacokinetic-studies
#23
JOURNAL ARTICLE
Khalifa Sunusi Aminu, Adamu Uzairu, Anshuman Chandra, Nagendra Singh, Stephen Eyije Abechi, Gideon Adamu Shallangwa, Abdullahi Bello Umar
Previous studies have shown that 2-arylbenzimidazole derivatives have a strong anti-diabetic effect. To further explore this potential, we develop new analogues of the compound using ligand-based drug design and tested their inhibitory and binding properties through QSAR analyses, molecular docking, dynamic simulations and pharmacokinetic studies. By using quantitative structure activity relationship and ligand-based modification, a highly precise predictive model and design of potent compounds was developed from the derivatives of 2-arylbenzimidazoles...
2024: In Silico Pharmacology
https://read.qxmd.com/read/38616679/strategies-for-improving-impaired-osseointegration-in-compromised-animal-models
#24
JOURNAL ARTICLE
J Deng, C Van Duyn, D J Cohen, Z Schwartz, B D Boyan
Implant osseointegration is reduced in patients with systemic conditions that compromise bone quality, such as osteoporosis, disuse syndrome, and type 2 diabetes. Studies using rodent models designed to mimic these compromised conditions demonstrated reduced bone-to-implant contact (BIC) or a decline in bone mineral density. These adverse effects are a consequence of disrupted intercellular communication. A variety of approaches have been developed to compensate for the altered microenvironment inherent in compromised conditions, including the use of biologics and implant surface modification...
April 15, 2024: Journal of Dental Research
https://read.qxmd.com/read/38614964/clinically-relevant-plasma-proteome-for-adiposity-depots-evidence-from-systematic-mendelian-randomization-and-colocalization-analyses
#25
JOURNAL ARTICLE
Min Cao, Bin Cui
BACKGROUND: The accumulation of visceral and ectopic fat comprise a major cause of cardiometabolic diseases. However, novel drug targets for reducing unnecessary visceral and ectopic fat are still limited. Our study aims to provide a comprehensive investigation of the causal effects of the plasma proteome on visceral and ectopic fat using Mendelian randomization (MR) approach. METHODS: We performed two-sample MR analyses based on five large genome-wide association study (GWAS) summary statistics of 2656 plasma proteins, to screen for causal associations of these proteins with traits of visceral and ectopic fat in over 30,000 participants of European ancestry, as well as to assess mediation effects by risk factors of outcomes...
April 13, 2024: Cardiovascular Diabetology
https://read.qxmd.com/read/38614373/targeting-epigenetic-and-post-translational-modifications-regulating-pyroptosis-for-the-treatment-of-inflammatory-diseases
#26
REVIEW
Ri-Wen, Yu-Hang Yang, Tie-Ning Zhang, Chun-Feng Liu, Ni Yang
Inflammatory diseases, including infectious diseases, diabetes-related diseases, arthritis-related diseases, neurological diseases, digestive diseases, and tumor, continue to threaten human health and impose a significant financial burden despite advancements in clinical treatment. Pyroptosis, a pro-inflammatory programmed cell death pathway, plays an important role in the regulation of inflammation. Moderate pyroptosis contributes to the activation of native immunity, whereas excessive pyroptosis is associated with the occurrence and progression of inflammation...
April 11, 2024: Pharmacological Research: the Official Journal of the Italian Pharmacological Society
https://read.qxmd.com/read/38614297/update-on-the-transdifferentiation-of-pancreatic-cells-into-functional-beta-cells-for-treating-diabetes
#27
REVIEW
Renata Spezani, Pedro H Reis-Barbosa, Carlos A Mandarim-de-Lacerda
The increasing global prevalence and associated comorbidities need innovative approaches for type 2 diabetes mellitus (T2DM) prevention and treatment. Genetics contributes significantly to T2DM susceptibility, and genetic counseling is significant in detecting and informing people about the diabetic risk. T2DM is also intricately linked to overnutrition and obesity, and nutritional advising is beneficial to mitigate diabetic evolution. However, manipulating pancreatic cell plasticity and transdifferentiation could help beta cell regeneration and glucose homeostasis, effectively contributing to the antidiabetic fight...
April 11, 2024: Life Sciences
https://read.qxmd.com/read/38612779/molecular-targets-of-novel-therapeutics-for-diabetic-kidney-disease-a-new-era-of-nephroprotection
#28
REVIEW
Alessio Mazzieri, Francesca Porcellati, Francesca Timio, Gianpaolo Reboldi
Diabetic kidney disease (DKD) is a chronic microvascular complication in patients with diabetes mellitus (DM) and the leading cause of end-stage kidney disease (ESKD). Although glomerulosclerosis, tubular injury and interstitial fibrosis are typical damages of DKD, the interplay of different processes (metabolic factors, oxidative stress, inflammatory pathway, fibrotic signaling, and hemodynamic mechanisms) appears to drive the onset and progression of DKD. A growing understanding of the pathogenetic mechanisms, and the development of new therapeutics, is opening the way for a new era of nephroprotection based on precision-medicine approaches...
April 3, 2024: International Journal of Molecular Sciences
https://read.qxmd.com/read/38612776/igf-1-and-igf-2-as-molecules-linked-to-causes-and-consequences-of-obesity-from-fetal-life-to-adulthood-a-systematic-review
#29
REVIEW
Justyna Szydlowska-Gladysz, Adrianna Edyta Gorecka, Julia Stepien, Izabela Rysz, Iwona Ben-Skowronek
This study examines the impact of insulin-like growth factor 1 (IGF-1) and insulin-like growth factor 2 (IGF-2) on various aspects of children's health-from the realms of growth and puberty to the nuanced characteristics of metabolic syndrome, diabetes, liver pathology, carcinogenic potential, and cardiovascular disorders. A comprehensive literature review was conducted using PubMed, with a Preferred Reporting Items for Systematic Reviews and Meta-Analyses (PRISMA) method employing specific keywords related to child health, obesity, and insulin-like growth factors...
April 2, 2024: International Journal of Molecular Sciences
https://read.qxmd.com/read/38612747/aesis-1-a-rheumatoid-arthritis-therapeutic-peptide-accelerates-wound-healing-by-promoting-fibroblast-migration-in-a-cxcr2-dependent-manner
#30
JOURNAL ARTICLE
Seung Beom Park, Yoolhee Yang, Sa Ik Bang, Tae Sung Kim, Daeho Cho
In patients with autoimmune disorders such as rheumatoid arthritis (RA), delayed wound healing is often observed. Timely and effective wound healing is a crucial determinant of a patient's quality of life, and novel materials for skin wound repair, such as bioactive peptides, are continuously being studied and developed. One such bioactive peptide, AESIS-1, has been studied for its well-established anti-rheumatoid arthritis properties. In this study, we attempted to use the anti-RA material AESIS-1 as a therapeutic wound-healing agent based on disease-modifying antirheumatic drugs (DMARDs), which can help restore prompt wound healing...
April 1, 2024: International Journal of Molecular Sciences
https://read.qxmd.com/read/38612513/bioengineering-skin-substitutes-for-wound-management-perspectives-and-challenges
#31
REVIEW
Karolina Kondej, Małgorzata Zawrzykraj, Katarzyna Czerwiec, Milena Deptuła, Agata Tymińska, Michał Pikuła
Non-healing wounds and skin losses constitute significant challenges for modern medicine and pharmacology. Conventional methods of wound treatment are effective in basic healthcare; however, they are insufficient in managing chronic wound and large skin defects, so novel, alternative methods of therapy are sought. Among the potentially innovative procedures, the use of skin substitutes may be a promising therapeutic method. Skin substitutes are a heterogeneous group of materials that are used to heal and close wounds and temporarily or permanently fulfill the functions of the skin...
March 26, 2024: International Journal of Molecular Sciences
https://read.qxmd.com/read/38612466/unveiling-anti-diabetic-potential-of-baicalin-and-baicalein-from-baikal-skullcap-lc-ms-in-silico-and-in-vitro-studies
#32
JOURNAL ARTICLE
Wencheng Zhao, Huizi Cui, Kaifeng Liu, Xiaotang Yang, Shu Xing, Wannan Li
Type 2 diabetes mellitus (T2DM) is marked by persistent hyperglycemia, insulin resistance, and pancreatic β-cell dysfunction, imposing substantial health burdens and elevating the risk of systemic complications and cardiovascular diseases. While the pathogenesis of diabetes remains elusive, a cyclical relationship between insulin resistance and inflammation is acknowledged, wherein inflammation exacerbates insulin resistance, perpetuating a deleterious cycle. Consequently, anti-inflammatory interventions offer a therapeutic avenue for T2DM management...
March 25, 2024: International Journal of Molecular Sciences
https://read.qxmd.com/read/38610878/pharmacological-and-benefit-risk-profile-of-once-weekly-basal-insulin-administration-icodec-addressing-patients-unmet-needs-and-exploring-future-applications
#33
REVIEW
Ylenia Ingrasciotta, Giacomo Vitturi, Gianluca Trifirò
Diabetes mellitus (DM) is a chronic metabolic disease affecting over 500 million people worldwide, which leads to severe complications and to millions of deaths yearly. When therapeutic goals are not reached with diet, physical activity, or non-insulin drugs, starting/adding insulin treatment is recommended by international guidelines. A novel recombinant insulin is icodec, a once-weekly insulin that successfully completed phase III trials and that has recently obtained the marketing authorization approval from the European Medicines Agency...
April 5, 2024: Journal of Clinical Medicine
https://read.qxmd.com/read/38608241/engineering-a-pathway-to-glucose-responsive-therapeutics
#34
REVIEW
Matthew J Webber
In 2014, the American Diabetes Association instituted a novel funding paradigm to support diabetes research through its Pathway to Stop Diabetes® Program. Pathway took a multifaceted approach to provide key funding to diabetes researchers in advancing a broad spectrum of research programs centered on all aspects of understanding, managing, and treating diabetes. Herein the personal perspective of a 2019 Pathway Accelerator awardee is offered, describing a research program seeking to advance a materials-centered approach to engineering glucose-responsive devices and new delivery tools for better therapeutic outcomes in treating diabetes...
April 11, 2024: Diabetes
https://read.qxmd.com/read/38608132/non-invasive-delivery-of-insulin-for-breaching-hindrances-against-diabetes
#35
JOURNAL ARTICLE
Manoj Sarangi, Sasmita Padhi, Goutam Rath
Insulin is recognized as a crucial weapon in managing diabetes. Subcutaneous (s.c.) injections are the traditional approach for insulin administration, which usually have many limitations. Numerous alternative (non-invasive) slants through different routes have been explored by the researchers for making needle-free delivery of insulin for attaining its augmented absorption as well as bioavailability. The current review delineating numerous pros and cons of several novel approaches of non-invasive insulin delivery by overcoming many of their hurdles...
2024: Critical Reviews in Therapeutic Drug Carrier Systems
https://read.qxmd.com/read/38606384/a-phase-iii-single-arm-6-month-trial-of-a-wide-dose-range-oral-testosterone-undecanoate-product
#36
JOURNAL ARTICLE
James S Bernstein, Om P Dhingra
BACKGROUND: Oral testosterone undecanoate (TU) formulations may provide effective, safe, and easily titratable testosterone replacement therapy. OBJECTIVE: Demonstrate efficacy and safety of a novel oral TU formulation. DESIGN: An open-label, single-arm, multi-center trial treated 155 hypogonadal men for 180 days. Treatment began at 200 mg TU twice daily with meals; doses were titrated over two 28-day cycles to between 100 and 800 mg TU daily, measuring average testosterone (T Cavg ) after 90 days...
2024: Therapeutic Advances in Urology
https://read.qxmd.com/read/38604183/international-roadshow-new-advances-in-endocrinology-and-metabolic-diseases
#37
JOURNAL ARTICLE
Charlotte Steenblock, Maha M Saber-Ayad, Stefan R Bornstein
Dear Readers,Currently, there is a myriad of new developments in the field of endocrinology. In particular, significant strides have been made in the development of poly-agonists for the treatment of type 2 diabetes and obesity 1 2. Poly-agonists represent a novel therapeutic approach by combining multiple actions within a single molecule, targeting multiple receptors simultaneously to achieve enhanced efficacy. These innovative compounds aim to address the complex interplay of hormonal pathways involved in glucose regulation and metabolism, offering potential breakthroughs in the management of diabetes and obesity...
April 2024: Hormone and Metabolic Research
https://read.qxmd.com/read/38602880/engineering-a-pathway-to-glucose-responsive-therapeutics
#38
REVIEW
Matthew J Webber
In 2014, the American Diabetes Association instituted a novel funding paradigm to support diabetes research through its Pathway to Stop Diabetes® Program. Pathway took a multifaceted approach to provide key funding to diabetes researchers in advancing a broad spectrum of research programs centered on all aspects of understanding, managing, and treating diabetes. Herein the personal perspective of a 2019 Pathway Accelerator awardee is offered, describing a research program seeking to advance a materials-centered approach to engineering glucose-responsive devices and new delivery tools for better therapeutic outcomes in treating diabetes...
April 11, 2024: Diabetes
https://read.qxmd.com/read/38599565/discovery-and-validation-of-a-novel-inhibitor-of-hype-mediated-ampylation
#39
JOURNAL ARTICLE
Ali Camara, Heerak Chugh, Alyssa George, Lukas Dolidze, Kevin Ryu, Katrina J Holly, Daniel P Flaherty, Seema Mattoo
AMPylation-the covalent transfer of an AMP from ATP onto a target protein-is catalyzed by the human enzyme HYPE/FicD to regulate its substrate, the heat shock chaperone BiP. HYPE-mediated AMPylation of BiP is critical for maintaining proteostasis in the ER (endoplasmic reticulum) and mounting an UPR (unfolded protein response) in times of proteostatic imbalance. Thus, manipulating HYPE's enzymatic activity is a key therapeutic strategy towards the treatment of various protein misfolding diseases, including neuropathy and early onset diabetes associated with two recently identified clinical mutations of HYPE...
April 8, 2024: Cell Stress & Chaperones
https://read.qxmd.com/read/38596692/molecular-mechanisms-of-metabolic-dysregulation-in-diabetic-cardiomyopathy
#40
REVIEW
Yue Zeng, Yilang Li, Wenyue Jiang, Ning Hou
Diabetic cardiomyopathy (DCM), one of the most serious complications of diabetes mellitus, has become recognized as a cardiometabolic disease. In normoxic conditions, the majority of the ATP production (>95%) required for heart beating comes from mitochondrial oxidative phosphorylation of fatty acids (FAs) and glucose, with the remaining portion coming from a variety of sources, including fructose, lactate, ketone bodies (KB) and branched chain amino acids (BCAA). Increased FA intake and decreased utilization of glucose and lactic acid were observed in the diabetic hearts of animal models and diabetic patients...
2024: Frontiers in Cardiovascular Medicine
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