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81.
Gudmundsson H Curran J Kashef F Snyder JS Smith SA Vargas-Pinto P Bonilla IM Weiss RM Anderson ME Binkley P Felder RB Carnes CA Band H Hund TJ Mohler PJ 《Journal of molecular and cellular cardiology》2012,52(5):1183-1190
Electrical and structural remodeling during the progression of cardiovascular disease is associated with adverse outcomes subjecting affected patients to overt heart failure (HF) and/or sudden death. Dysfunction in integral membrane protein trafficking has long been linked with maladaptive electrical remodeling. However, little is known regarding the molecular identity or function of these intracellular targeting pathways in the heart. Eps15 homology domain-containing (EHD) gene products (EHD1-4) are polypeptides linked with endosomal trafficking, membrane protein recycling, and lipid homeostasis in a wide variety of cell types. EHD3 was recently established as a critical mediator of membrane protein trafficking in the heart. Here, we investigate the potential link between EHD3 function and heart disease. Using four different HF models including ischemic rat heart, pressure overloaded mouse heart, chronic pacing-induced canine heart, and non-ischemic failing human myocardium we provide the first evidence that EHD3 levels are consistently increased in HF. Notably, the expression of the Na/Ca exchanger (NCX1), targeted by EHD3 in heart is similarly elevated in HF. Finally, we identify a molecular pathway for EHD3 regulation in heart failure downstream of reactive oxygen species and angiotensin II signaling. Together, our new data identify EHD3 as a previously unrecognized component of the cardiac remodeling pathway. 相似文献
82.
Christopher I. Udoye
BSc BChD FMCDS Hamid Jafarzadeh
DDS MSc Paul V. Abbott
BDSc MDS FRACDS 《Australian endodontic journal : the journal of the Australian Society of Endodontology Inc》2012,38(3):129-136
Management protocols for avulsed teeth should include management of the pulp and periodontal ligament (PDL) cells in order to improve the long‐term prognosis and survival of these teeth. The use of an inappropriate transport or storage medium potentially increases the risk of PDL cell necrosis, which can result in ankylosis and replacement resorption of the tooth root. Considering the critical role of these media, an informed choice of a suitable medium is essential for a favourable outcome. The literature regarding transport media for avulsed teeth was reviewed using PubMed/MEDLINE up to February 2010. This review outlines the common storage media that are available and highlights their specific features or problems. Although HBSS, ViaSpan and Eagle's medium have great potential to maintain the PDL cells in a viable state after avulsion, the practicalities of using these solutions, the costs and the lack of ready availability to the general public make them less than ideal. Milk remains the most convenient, cheapest and readily available solution in most situations while also being capable of keeping PDL cells alive. Hence, milk remains the storage medium of choice for avulsed teeth that cannot be replanted immediately or very soon after the avulsion. 相似文献
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Akash Makkar Joann Prisciandaro Sunil Agarwal Morgan Lusk Laura Horwood Jean Moran Colleen Fox James A. Hayman Hamid Ghanbari Brett Roberts Diego Belardi Rakesh Latchamsetty Thomas Crawford Eric Good Krit Jongnarangsin Frank Bogun Aman Chugh Hakan Oral Fred Morady Frank Pelosi 《Heart rhythm》2012,9(12):1964-1968
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Alloush Taha K. Mansour Osama Alloush Adel T. Roushdy Tamer Hamid Eman El-Shamy Mahmoud Shokri Hossam M. 《Neurological sciences》2022,43(2):799-809
Neurological Sciences - COVID-19 is a pandemic disease which predominantly affects the respiratory system with high critical care mortality and morbidity; however, it also causes multi-organ... 相似文献
90.
Vahid Khori Ali Mohammad Alizadeh Zohre Gheisary Sadaf Farsinejad Farrokh Najafi Solmaz Khalighfard Fatemeh Ghafari Maryam Hadji Hamid Khodayari 《Lasers in medical science》2016,31(9):1775-1782
Low-level laser therapy (LLLT) is a form of photon therapy which can be a non-invasive therapeutic procedure in cancer therapy using low-intensity light in the range of 450–800 nm. One of the main functional features of laser therapy is the photobiostimulation effects of low-level lasers on various biological systems including altering DNA synthesis and modifying gene expression, and stopping cellular proliferation. This study investigated the effects of LLLT on mice mammary tumor and the expression of Let-7a, miR155, miR21, miR125, and miR376b in the plasma and tumor samples. Sixteen mice were equally divided into four groups including control, and blue, green, and red lasers at wavelengths of 405, 532, and 632 nm, respectively. Weber Medical Applied Laser irradiation was carried out with a low power of 1–3 mW and a series of 10 treatments at three times a week after tumor establishment. Tumor volume was weekly measured by a digital vernier caliper, and qRT-PCR assays were performed to accomplish the study. Depending on the number of groups and the p value of the Kolmogorov-Smirnov test of normality, a t test, a one-way ANOVA, or a non-parametric test was used for data analyses, and p?<?0.05 was considered to be statistically significant. The average tumor volume was significantly less in the treated blue group than the control group on at days 21, 28, and 35 after cancerous cell injection. Our data also showed an increase of Let-7a and miR125a expression and a decrease of miR155, miR21, and miR376b expression after LLLT with the blue laser both the plasma and tumor samples compared to other groups. It seems that the non-invasive nature of laser bio-stimulation can make LLLT an attractive alternative therapeutic tool. 相似文献