Bridging larger gaps in peripheral nerves using neural prosthetics and physical therapeutic agents Muhammad Sana Ullah Sahar, Matthew Barton, Geoffrey Douglas Tansley Neural Regeneration Research 2019 14(7):1109-1115 Peripheral nerve injuries are relatively common and can be caused by a variety of traumatic events such as motor vehicle accidents. They can lead to long-term disability, pain, and financial burden, and contribute to poor quality of life. In this review, we systematically analyze the contemporary literature on peripheral nerve gap management using nerve prostheses in conjunction with physical therapeutic agents. The use of nerve prostheses to assist nerve regeneration across large gaps (> 30 mm) has revolutionized neural surgery. The materials used for nerve prostheses have been greatly refined, making them suitable for repairing large nerve gaps. However, research on peripheral nerve gap management using nerve prostheses reports inconsistent functional outcomes, especially when prostheses are integrated with physical therapeutic agents, and thus warrants careful investigation. This review explores the effectiveness of nerve prostheses for bridging large nerve gaps and then addresses their use in combination with physical therapeutic agents. |
Magnesium: Pathophysiological mechanisms and potential therapeutic roles in intracerebral hemorrhage Jason J Chang, Rocco Armonda, Nitin Goyal, Adam S Arthur Neural Regeneration Research 2019 14(7):1116-1121 Intracerebral hemorrhage (ICH) remains the second-most common form of stroke with high morbidity and mortality. ICH can be divided into two pathophysiological stages: an acute primary phase, including hematoma volume expansion, and a subacute secondary phase consisting of blood-brain barrier disruption and perihematomal edema expansion. To date, all major trials for ICH have targeted the primary phase with therapies designed to reduce hematoma expansion through blood pressure control, surgical evacuation, and hemostasis. However, none of these trials has resulted in improved clinical outcomes. Magnesium is a ubiquitous element that also plays roles in vasodilation, hemostasis, and blood-brain barrier preservation. Animal models have highlighted potential therapeutic roles for magnesium in neurological diseases specifically targeting these pathophysiological mechanisms. Retrospective studies have also demonstrated inverse associations between admission magnesium levels and hematoma volume, hematoma expansion, and clinical outcome in patients with ICH. These associations, coupled with the multifactorial role of magnesium that targets both primary and secondary phases of ICH, suggest that magnesium may be a viable target of study in future ICH studies. |
Network-centric medicine for peripheral nerve injury: Treating the whole to boost endogenous mechanisms of neuroprotection and regeneration David Romeo-Guitart, Caty Casas Neural Regeneration Research 2019 14(7):1122-1128 Peripheral nerve injuries caused by accidents may lead to paralysis, sensory disturbances, anaesthesia, and lack of autonomic functions. Functional recovery after disconnection of the motoneuronal soma from target tissue with proximal rupture of axons is determined by several factors: motoneuronal soma viability, proper axonal sprouting across inhibitory zones and elongation toward specific muscle, effective synapse contact rebuilding, and prevention of muscle atrophy. Therapies, such as adjuvant drugs with pleiotropic effects, that promote functional recovery after peripheral nerve injury are needed. Toward this aim, we designed a drug discovery workflow based on a network-centric molecular vision using unbiased proteomic data and neural artificial computational tools. Our focus is on boosting intrinsic capabilities of neurons for neuroprotection; this is in contrast to the common approach based on suppression of a pathobiological pathway known to be associated with disease condition. Using our workflow, we discovered neuroheal, a combination of two repurposed drugs that promotes motoneuronal soma neuroprotection, is anti-inflammatory, enhances axonal regeneration after axotomy, and reduces muscle atrophy. This drug discovery workflow has thus yielded a therapy that is close to its clinical application. |
Exogenous neural stem cell transplantation for cerebral ischemia Ling-Yi Liao, Benson Wui-Man Lau, Dalinda Isabel Sánchez-Vidaña, Qiang Gao Neural Regeneration Research 2019 14(7):1129-1137 Cerebral ischemic injury is the main manifestation of stroke, and its incidence in stroke patients is 70–80%. Although ischemic stroke can be treated with tissue-type plasminogen activator, its time window of effectiveness is narrow. Therefore, the incidence of paralysis, hypoesthesia, aphasia, dysphagia, and cognitive impairment caused by cerebral ischemia is high. Nerve tissue regeneration can promote the recovery of the aforementioned dysfunction. Neural stem cells can participate in the reconstruction of the damaged nervous system and promote the recovery of nervous function during self-repair of damaged brain tissue. Neural stem cell transplantation for ischemic stroke has been a hot topic for more than 10 years. This review discusses the treatment of ischemic stroke with neural stem cells, as well as the mechanisms of their involvement in stroke treatment. |
Potential therapeutic molecular targets for blood-brain barrier disruption after subarachnoid hemorrhage Hideki Kanamaru, Hidenori Suzuki Neural Regeneration Research 2019 14(7):1138-1143 Aneurysmal subarachnoid hemorrhage remains serious hemorrhagic stroke with high morbidities and mortalities. Aneurysm rupture causes arterial bleeding-induced mechanical brain tissue injuries and elevated intracranial pressure, followed by global cerebral ischemia. Post-subarachnoid hemorrhage ischemia, tissue injuries as well as extravasated blood components and the breakdown products activate microglia, astrocytes and Toll-like receptor 4, and disrupt blood-brain barrier associated with the induction of many inflammatory and other cascades. Once blood-brain barrier is disrupted, brain tissues are directly exposed to harmful blood contents and immune cells, which aggravate brain injuries furthermore. Blood-brain barrier disruption after subarachnoid hemorrhage may be developed by a variety of mechanisms including endothelial cell apoptosis and disruption of tight junction proteins. Many molecules and pathways have been reported to disrupt the blood-brain barrier after subarachnoid hemorrhage, but the exact mechanisms remain unclear. Multiple independent and/or interconnected signaling pathways may be involved in blood-brain barrier disruption after subarachnoid hemorrhage. This review provides recent understandings of the mechanisms and the potential therapeutic targets of blood-brain barrier disruption after subarachnoid hemorrhage. |
Choroid plexus tumor necrosis factor receptor 1: A new neuroinflammatory piece of the complex Alzheimer's disease puzzle Sophie Steeland, Roosmarijn E Vandenbroucke Neural Regeneration Research 2019 14(7):1144-1147 Due to the aging of the population and despite the enormous scientific effort, Alzheimer’s disease remains one of the biggest medical and pharmaceutical challenges in current medicine. Novel insights highlight the importance of neuroinflammation as an undeniable player in the onset and progression of Alzheimer’s disease. Tumor necrosis factor is a master inflammatory cytokine that signals via tumor necrosis factor receptor 1 and tumor necrosis factor receptor 2, but that also regulates several brain functions in health and disease. However, clinical trials investigating drugs that interfere with the tumor necrosis factor pathway in Alzheimer’s disease led to inconclusive results, partially because not only the pro-inflammatory tumor necrosis factor/tumor necrosis factor receptor 1, but also the beneficial tumor necrosis factor/tumor necrosis factor receptor 2 signaling was antagonized in these trials. We recently found that tumor necrosis factor is the main upregulated cytokine in the choroid plexus of Alzheimer’s disease patients, signaling via tumor necrosis factor receptor 1. In agreement with this, choroidal tumor necrosis factor/tumor necrosis factor receptor 1 signaling was also upregulated in different Alzheimer’s disease mouse models. Interestingly, both genetic and nanobody-based pharmacological blockage of tumor necrosis factor receptor 1 signaling was accompanied by favorable effects on Alzheimer’s disease-associated inflammation, choroidal morphology and cognitive functioning. Here, we briefly summarize the detrimental effects that can be mediated by tumor necrosis factor/tumor necrosis factor receptor 1 signaling in (early) Alzheimer’s disease, and the consequences this might have on the disease progression. As the main hypothesis in Alzheimer’s disease clinical trials is still based on the amyloid beta-cascade, the importance of Alzheimer’s disease-associated neuroinflammation urge the development of novel therapeutic strategies that might be effective in the early stages of Alzheimer’s disease and prevent the irreversible neurodegeneration and resulting memory decline. |
Transcriptional dysregulation in neurodegenerative diseases: Who tipped the balance of Yin Yang 1 in the brain? Zhefan Stephen Chen, Ho Yin Edwin Chan Neural Regeneration Research 2019 14(7):1148-1151 Yin Yang 1 (YY1) is a multi-functional transcription factor that regulates gene expression in a range of cell types, including neurons. It controls neuronal differentiation, as well as neuronal specification and migration during the development of the mammalian nervous system. Besides, YY1 also mediates the transcription of genes that are required for neuronal survival. An impairment of the transcriptional function of YY1 causes neuronal death. This review summarizes recent research findings that unveil the dysfunction of YY1 in multiple neurodegenerative disorders. The expression of disease proteins perturbs the function of YY1 via distinct molecular mechanisms, including recruitment to protein aggregates, protein degradation and aberrant nuclear/cytoplasmic shuttling. Understanding the pathogenic roles of YY1 will further broaden our knowledge of the disease mechanisms in distinct neurodegenerative disorders. |
Effects of Ginkgo biloba extract EGb761 on neural differentiation of stem cells offer new hope for neurological disease treatment Chao Ren, Yong-Qiang Ji, Hong Liu, Zhe Wang, Jia-Hui Wang, Cai-Yi Zhang, Li-Na Guan, Pei-Yuan Yin Neural Regeneration Research 2019 14(7):1152-1157 Stem cell transplantation has brought new hope for the treatment of neurological diseases. The key to stem cell therapy lies in inducing the specific differentiation of stem cells into nerve cells. Because the differentiation of stem cells in vitro and in vivo is affected by multiple factors, the final differentiation outcome is strongly associated with the microenvironment in which the stem cells are located. Accordingly, the optimal microenvironment for inducing stem cell differentiation is a hot topic. EGb761 is extracted from the leaves of the Ginkgo biloba tree. It is used worldwide and is becoming one of the focuses of stem cell research. Studies have shown that EGb761 can antagonize oxygen free radicals, stabilize cell membranes, promote neurogenesis and synaptogenesis, increase the level of brain-derived neurotrophic factors, and replicate the environment required during the differentiation of stem cells into nerve cells. This offers the possibility of using EGb761 to induce the differentiation of stem cells, facilitating stem cell transplantation. To provide a comprehensive reference for the future application of EGb761 in stem cell therapy, we reviewed studies investigating the influence of EGb761 on stem cells. These started with the composition and neuropharmacology of EGb761, and eventually led to the finding that EGb761 and some of its important components play important roles in the differentiation of stem cells and the protection of a beneficial microenvironment for stem cell transplantation. |
Amelioration of Alzheimer's disease pathology and cognitive deficits by immunomodulatory agents in animal models of Alzheimer's disease Bridget Martinez, Philip V Peplow Neural Regeneration Research 2019 14(7):1158-1176 The most common age-related neurodegenerative disease is Alzheimer’s disease (AD) characterized by aggregated amyloid-β (Aβ) peptides in extracellular plaques and aggregated hyperphosphorylated tau protein in intraneuronal neurofibrillary tangles, together with loss of cholinergic neurons, synaptic alterations, and chronic inflammation within the brain. These lead to progressive impairment of cognitive function. There is evidence of innate immune activation in AD with microgliosis. Classically-activated microglia (M1 state) secrete inflammatory and neurotoxic mediators, and peripheral immune cells are recruited to inflammation sites in the brain. The few drugs approved by the US FDA for the treatment of AD improve symptoms but do not change the course of disease progression and may cause some undesirable effects. Translation of active and passive immunotherapy targeting Aβ in AD animal model trials had limited success in clinical trials. Treatment with immunomodulatory/anti-inflammatory agents early in the disease process, while not preventive, is able to inhibit the inflammatory consequences of both Aβ and tau aggregation. The studies described in this review have identified several agents with immunomodulatory properties that alleviated AD pathology and cognitive impairment in animal models of AD. The majority of the animal studies reviewed had used transgenic models of early-onset AD. More effort needs to be given to creat models of late-onset AD. The effects of a combinational therapy involving two or more of the tested pharmaceutical agents, or one of these agents given in conjunction with one of the cell-based therapies, in an aged animal model of AD would warrant investigation. |
Precision medicine in pantothenate kinase-associated neurodegeneration Mónica Alvarez-Cordoba, Marina Villanueva-Paz, Irene Villalón-García, Suleva Povea-Cabello, Juan M Suárez-Rivero, Marta Talaverón-Rey, Javier Abril-Jaramillo, Ana Belén Vintimilla-Tosi, José A Sánchez-Alcázar Neural Regeneration Research 2019 14(7):1177-1185 Neurodegeneration with brain iron accumulation is a broad term that describes a heterogeneous group of progressive and invalidating neurologic disorders in which iron deposits in certain brain areas, mainly the basal ganglia. The predominant clinical symptoms include spasticity, progressive dystonia, Parkinson’s disease-like symptoms, neuropsychiatric alterations, and retinal degeneration. Among the neurodegeneration with brain iron accumulation disorders, the most frequent subtype is pantothenate kinase-associated neurodegeneration (PKAN) caused by defects in the gene encoding the enzyme pantothenate kinase 2 (PANK2) which catalyzed the first reaction of the coenzyme A biosynthesis pathway. Currently there is no effective treatment to prevent the inexorable course of these disorders. The aim of this review is to open up a discussion on the utility of using cellular models derived from patients as a valuable tool for the development of precision medicine in PKAN. Recently, we have described that dermal fibroblasts obtained from PKAN patients can manifest the main pathological changes of the disease such as intracellular iron accumulation accompanied by large amounts of lipofuscin granules, mitochondrial dysfunction and a pronounced increase of markers of oxidative stress. In addition, PKAN fibroblasts showed a morphological senescence-like phenotype. Interestingly, pantothenate supplementation, the substrate of the PANK2 enzyme, corrected all pathophysiological alterations in responder PKAN fibroblasts with low/residual PANK2 enzyme expression. However, pantothenate treatment had no favourable effect on PKAN fibroblasts harbouring mutations associated with the expression of a truncated/incomplete protein. The correction of pathological alterations by pantothenate in individual mutations was also verified in induced neurons obtained by direct reprograming of PKAN fibroblasts. Our observations indicate that pantothenate supplementation can increase/stabilize the expression levels of PANK2 in specific mutations. Fibroblasts and induced neurons derived from patients can provide a useful tool for recognizing PKAN patients who can respond to pantothenate treatment. The presence of low but significant PANK2 expression which can be increased in particular mutations gives valuable information which can support the treatment with high dose of pantothenate. The evaluation of personalized treatments in vitro of fibroblasts and neuronal cells derived from PKAN patients with a wide range of pharmacological options currently available, and monitoring its effect on the pathophysiological changes, can help for a better therapeutic strategy. In addition, these cell models will be also useful for testing the efficacy of new therapeutic options developed in the future. |
ENT-MD Alexandros G. Sfakianakis,Anapafseos 5 Agios Nikolaos 72100 Crete Greece,00306932607174,00302841026182,alsfakia@gmail.com
Blog Archive
- ► 2020 (479)
- ▼ 2019 (2381)
About Me
Labels
Search This Blog
Monday, February 25, 2019
Neural Regeneration Research (Neural Regen Res)
Mediterranean diet, alkaline water may be as effective as PPIs for laryngopharyngeal reflux
Alkaline water is water that's less acidic than regular tap water. This means it is rich in alkalizing compounds, including calcium, silica, potassium, magnesium, and bicarbonate.https://www.precisionnutrition.com/alkaline-water-legit-or-hoax
Seeing little relief with PPIs for patients, study author looked to dietary treatment for LPR
Treatment of laryngopharyngeal reflux (LPR) with alkaline water and the Mediterranean diet may be as effective as treatment with proton-pump inhibitors (PPIs), according to research published online in JAMA Otolaryngology–Head & Neck Surgery in September. Like gastroesophageal reflux disease, a similar condition, LPR occurs when acidic gastric juices in the stomach back up into the esophagus, but in LPR, the gastric juices reach the throat, resulting in symptoms such as hoarseness, sore throat, cough, and excessive mucous.
In the study, researchers conducted a retrospective medical chart review comparing the change in Reflux Symptom Index (RSI) in two groups of patients, those treated between 2010 and 2012 with PPIs and standard reflux precautions and those treated between 2013 and 2015 with a plant-based Mediterranean diet and alkaline water that had a pH of at least 8. The team found that 54.1% of patients in the PPI group achieved a clinically meaningful reduction of at least 6 points, but 62.5% in the dietary group achieved similar results. Furthermore, those in the dietary group achieved a greater reduction in RSI: 39.8% compared with 27.2% in the PPI group.
"It's pretty clear that this data suggests that we, as health care professionals, need to start getting patients educated so they understand how important a role diet plays," said study lead author Craig H. Zalvan, MD, FACS, chief of otolaryngology and medical director at The Institute for Voice and Swallowing Disorders at Phelps Hospital in Sleepy Hollow, NY.
Zalvan said he thought to study dietary treatment for LPR after seeing that a sizable number of patients don't get much relief with PPIs.
"The standard of care for LPR has always been PPIs, and many of my patients got better with them, but a bunch didn't. At most it helps about 50% of patients," Zalvan said. "I looked at chronic diseases like heart disease, diabetes, and stroke, and their successful treatment with a plant-based diet, so I thought there's got to be a better way to treat LPR with diet [as well] and not have people constantly taking pills."
Zalvan added that the idea to incorporate alkaline water into treatment stemmed from prior research conducted by Jaime Koufman, MD, at the Voice Institute of New York in New York City, which suggests that alkaline water may benefit patients with reflux because it deactivates pepsin and acts as an acid buffer.
Zalvan said that as medication experts and readily accessible members of the health care team, pharmacists can help boost the signal about treatment options for LPR.
"Pharmacists can reinforce that PPIs are meant to be short-term medications for an acute problem, and that in order to get off them, diet will play a major part," Zalvan said. "If patients come to me and I say they should try diet, and then they go to the pharmacy and the pharmacist says they should try diet, patients are more likely to try diet."
For the full article, please visit www.pharmacytoday.org for the November 2017 issue of Pharmacy Today.
Subscribe to:
Posts (Atom)
Blog Archive
- Sep 24 (11)
- Sep 23 (70)
- Sep 20 (22)
- Aug 27 (2)
- Aug 25 (1)
- Aug 24 (2)
- Aug 20 (1)
- Aug 19 (1)
- Aug 18 (2)
- Aug 17 (1)
- Aug 16 (1)
- Aug 13 (1)
- Aug 12 (1)
- Aug 11 (1)
- Aug 10 (2)
- Aug 07 (1)
- Aug 06 (1)
- Aug 05 (1)
- Aug 04 (1)
- Aug 03 (1)
- Aug 02 (1)
- Jul 30 (1)
- Jul 29 (1)
- Jul 28 (1)
- Jul 27 (1)
- Jul 26 (1)
- Jul 23 (1)
- Jul 22 (1)
- Jul 21 (1)
- Jul 20 (1)
- Jul 19 (1)
- Jul 16 (1)
- Jul 15 (1)
- Jul 14 (1)
- Jul 13 (1)
- Jul 12 (1)
- Jul 09 (1)
- Jul 08 (1)
- Jul 07 (1)
- Jul 06 (28)
- Jul 05 (1)
- Jul 02 (1)
- Jul 01 (1)
- Jun 30 (1)
- Jun 29 (2)
- Jun 25 (1)
- Jun 24 (41)
- Jun 23 (7)
- Jun 22 (1)
- Jun 21 (1)
- Jun 18 (1)
- Jun 17 (1)
- Jun 16 (18)
- Jun 15 (1)
- Jun 14 (1)
- Jun 11 (1)
- Jun 10 (1)
- Jun 09 (36)
- Jun 08 (1)
- Jun 04 (1)
- Jun 03 (1)
- Jun 02 (1)
- Jun 01 (1)
- May 31 (8)
- May 28 (1)
- May 27 (1)
- May 26 (1)
- May 25 (1)
- May 24 (1)
- May 21 (40)
- May 19 (1)
- May 18 (1)
- May 17 (1)
- May 14 (2)
- May 13 (1)
- May 12 (1)
- May 10 (1)
- May 07 (1)
- May 06 (3)
- May 05 (2)
- May 03 (1)
- Apr 30 (1)
- Apr 28 (1)
- Apr 27 (1)
- Apr 26 (1)
- Apr 24 (1)
- Apr 22 (2)
- Apr 20 (1)
- Apr 16 (1)
- Apr 15 (1)
- Apr 14 (1)
- Apr 13 (1)
- Apr 10 (1)
- Apr 09 (1)
- Apr 08 (1)
- Apr 06 (2)
- Apr 05 (1)
- Apr 03 (1)
- Apr 02 (2)
- Apr 01 (2)
- Mar 30 (1)
- Mar 29 (1)
- Mar 27 (1)
- Mar 26 (1)
- Mar 24 (1)
- Mar 23 (1)
- Mar 20 (1)
- Mar 19 (1)
- Mar 18 (1)
- Mar 17 (1)
- Mar 16 (1)
- Mar 13 (1)
- Mar 11 (2)
- Mar 10 (1)
- Mar 08 (1)
- Mar 05 (3)
- Mar 04 (2)
- Mar 03 (2)
- Feb 27 (1)
- Feb 26 (2)
- Feb 24 (3)
- Feb 21 (2)
- Feb 20 (1)
- Feb 19 (1)
- Feb 16 (2)
- Feb 13 (1)
- Feb 12 (2)
- Feb 10 (3)
- Feb 09 (1)
- Feb 07 (1)
- Feb 05 (2)
- Feb 04 (1)
- Feb 03 (1)
- Feb 02 (4)
- Jan 30 (2)
- Jan 28 (1)
- Jan 27 (3)
- Jan 26 (1)
- Jan 23 (3)
- Jan 22 (1)
- Jan 21 (3)
- Jan 20 (2)
- Jan 19 (1)
- Jan 16 (1)
- Jan 15 (7)
- Jan 14 (6)
- Jan 12 (1)
- Jan 09 (2)
- Jan 07 (2)
- Jan 06 (3)
- Jan 04 (1)
- Jan 03 (1)
- Jan 02 (2)
- Jan 01 (1)
- Dec 31 (1)
- Dec 30 (2)
- Dec 29 (2)
- Dec 28 (1)
- Dec 26 (1)
- Dec 20 (1)
- Dec 17 (2)
- Dec 16 (1)
- Dec 13 (1)
- Dec 12 (1)
- Dec 11 (1)
- Dec 10 (1)
- Dec 09 (1)
- Dec 04 (1)
- Dec 03 (1)
- Dec 01 (1)
- Nov 30 (1)
- Nov 29 (1)
- Nov 27 (3)
- Nov 26 (1)
- Nov 25 (1)
- Nov 24 (4)
- Nov 23 (1)
- Nov 22 (1)
- Nov 21 (1)
- Nov 19 (2)
- Nov 17 (2)
- Nov 16 (1)
- Nov 14 (1)
- Nov 13 (1)
- Nov 12 (1)
- Nov 11 (2)
- Nov 10 (1)
- Nov 09 (1)
- Nov 07 (1)
- Nov 06 (1)
- Nov 05 (2)
- Nov 04 (3)
- Nov 03 (2)
- Nov 02 (1)
- Nov 01 (1)
- Oct 31 (1)
- Oct 30 (1)
- Oct 29 (1)
- Oct 28 (1)
- Oct 27 (1)
- Oct 26 (1)
- Oct 24 (1)
- Oct 23 (1)
- Oct 22 (1)
- Oct 21 (2)
- Oct 20 (1)
- Oct 18 (1)
- Oct 17 (2)
- Oct 15 (2)
- Oct 13 (2)
- Oct 12 (1)
- Oct 10 (2)
- Oct 09 (3)
- Oct 08 (1)
- Oct 07 (2)
- Oct 06 (2)
- Oct 05 (1)
- Oct 04 (1)
- Oct 02 (3)
- Oct 01 (1)
- Sep 30 (4)
- Sep 29 (3)
- Sep 27 (1)
- Sep 26 (2)
- Sep 25 (2)
- Sep 24 (3)
- Sep 23 (4)
- Sep 19 (3)
- Sep 18 (1)
- Sep 17 (4)
- Sep 16 (1)
- Sep 15 (1)
- Sep 12 (1)
- Sep 11 (2)
- Sep 10 (4)
- Sep 09 (1)
- Sep 08 (2)
- Sep 05 (4)
- Sep 04 (1)
- Sep 03 (3)
- Sep 02 (5)
- Sep 01 (2)
- Aug 30 (2)
- Aug 29 (3)
- Aug 28 (2)
- Aug 27 (1)
- Aug 26 (2)
- Aug 23 (1)
- Aug 22 (1)
- Aug 21 (3)
- Aug 19 (2)
- Aug 18 (3)
- Aug 17 (1)
- Aug 16 (1)
- Aug 15 (1)
- Aug 13 (1)
- Aug 12 (3)
- Aug 11 (6)
- Aug 08 (6)
- Aug 07 (9)
- Aug 06 (5)
- Aug 05 (8)
- Aug 04 (1)
- Aug 01 (5)
- Jul 31 (6)
- Jul 30 (7)
- Jul 29 (6)
- Jul 28 (7)
- Jul 27 (1)
- Jul 26 (1)
- Jul 25 (4)
- Jul 24 (7)
- Jul 23 (10)
- Jul 22 (4)
- Jul 21 (10)
- Jul 20 (8)
- Jul 19 (2)
- Jul 18 (3)
- Jul 17 (5)
- Jul 16 (8)
- Jul 15 (19)
- Jul 14 (15)
- Jul 13 (8)
- Jul 11 (13)
- Jul 10 (26)
- Jul 09 (4)
- Jul 08 (26)
- Jul 07 (7)
- Jul 05 (33)
- Jul 04 (10)
- Jul 03 (24)
- Jul 02 (26)
- Jul 01 (26)
- Jun 30 (23)
- Jun 29 (24)
- Jun 28 (14)
- Jun 27 (19)
- Jun 26 (8)
- Jun 25 (78)
- Jun 24 (19)
- Jun 23 (17)
- Jun 22 (25)
- Jun 21 (12)
- Jun 20 (34)
- Jun 19 (4)
- Jun 18 (1)
- Jun 17 (17)
- Jun 16 (23)
- Jun 14 (2)
- Jun 13 (16)
- Jun 12 (27)
- Jun 11 (30)
- Jun 10 (39)
- Jun 09 (3)
- Jun 08 (15)
- Jun 07 (5)
- Jun 06 (14)
- Jun 05 (16)
- Jun 04 (21)
- Jun 03 (14)
- Jun 02 (33)
- May 31 (4)
- May 30 (23)
- May 29 (8)
- May 28 (23)
- May 27 (16)
- May 26 (22)
- May 25 (8)
- May 24 (12)
- May 23 (7)
- May 22 (1)
- May 21 (36)
- May 20 (4)
- May 19 (21)
- May 17 (24)
- May 16 (17)
- May 15 (30)
- May 14 (19)
- May 13 (6)
- May 12 (18)
- May 09 (6)
- May 08 (3)
- May 07 (27)
- May 06 (1)
- May 05 (9)
- May 03 (7)
- May 02 (15)
- May 01 (34)
- Apr 29 (34)
- Apr 27 (18)
- Apr 25 (19)
- Apr 24 (1)
- Apr 23 (9)
- Apr 22 (23)
- Apr 21 (14)
- Apr 19 (10)
- Apr 18 (34)
- Apr 17 (12)
- Apr 16 (19)
- Apr 15 (12)
- Apr 14 (18)
- Apr 12 (5)
- Apr 11 (17)
- Apr 10 (12)
- Apr 09 (20)
- Apr 08 (14)
- Apr 07 (21)
- Apr 05 (1)
- Apr 04 (26)
- Apr 03 (9)
- Apr 02 (20)
- Apr 01 (22)
- Mar 31 (16)
- Mar 29 (7)
- Mar 28 (29)
- Mar 27 (6)
- Mar 26 (20)
- Mar 25 (18)
- Mar 23 (26)
- Mar 22 (3)
- Mar 20 (18)
- Mar 19 (19)
- Mar 18 (5)
- Mar 17 (2)
- Mar 16 (5)
- Mar 15 (7)
- Mar 14 (27)
- Mar 13 (7)
- Mar 12 (15)
- Mar 11 (1)
- Mar 10 (1)
- Mar 08 (1)
- Mar 07 (6)
- Mar 06 (4)
- Mar 04 (6)
- Mar 02 (4)
- Mar 01 (7)
- Feb 27 (3)
- Feb 26 (6)
- Feb 25 (2)
- Feb 24 (4)
- Feb 22 (2)
- Feb 21 (6)
- Feb 20 (9)
- Feb 19 (4)
- Feb 18 (11)
- Feb 16 (1)
- Feb 13 (8)
- Feb 11 (17)
- Feb 10 (4)
- Feb 07 (7)
- Feb 06 (1)
- Feb 01 (5)
- Jan 26 (2)
- Jan 24 (7)
- Jan 23 (1)
- Jan 22 (2)
- Jan 21 (2)
- Jan 20 (1)
- Jan 17 (10)
- Jan 16 (1)
- Jan 15 (1)
- Jan 14 (7)
- Jan 13 (35)
- Jan 10 (29)
- Jan 08 (2)
- Jan 07 (8)
- Jan 06 (2)
- Jan 05 (1)
- Jan 04 (8)
- Jan 03 (13)
- Jan 02 (12)
- Jan 01 (4)
- Dec 31 (7)
- Dec 30 (4)
- Dec 29 (6)
- Dec 28 (25)
- Dec 27 (6)
- Dec 26 (10)
- Dec 25 (1)
- Dec 24 (1)
- Dec 22 (3)
- Dec 21 (55)
- Dec 20 (71)
- Dec 19 (59)
- Dec 18 (89)
- Dec 17 (19)
- Dec 16 (15)
- Dec 15 (42)
- Dec 14 (57)
- Dec 13 (33)
- Dec 12 (51)
- Dec 11 (30)
- Dec 10 (47)
- Dec 09 (11)
- Dec 08 (46)
- Dec 07 (35)
- Dec 06 (54)
- Dec 05 (34)
- Dec 04 (50)
- Dec 03 (11)
- Dec 02 (9)
- Dec 01 (34)
- Nov 30 (43)
- Nov 29 (46)
- Nov 28 (28)
- Nov 27 (47)
- Nov 26 (37)
- Nov 25 (7)
- Nov 24 (37)
- Nov 23 (38)
- Nov 22 (15)
- Nov 21 (34)
- Nov 20 (40)
- Nov 19 (66)
- Nov 18 (10)
- Nov 17 (32)
- Nov 16 (49)
- Nov 15 (51)
- Nov 14 (40)
- Nov 13 (38)
- Nov 12 (25)
- Nov 11 (22)
- Nov 10 (13)
- Nov 09 (30)
- Nov 08 (40)
- Nov 07 (19)
- Nov 06 (62)
- Nov 05 (45)
- Nov 04 (37)
- Nov 03 (49)
- Nov 02 (17)
- Nov 01 (26)
- Apr 10 (380)
- Jan 08 (404)
- Dec 13 (358)
- Dec 12 (24)
- Dec 07 (304)
- Dec 06 (59)
- Nov 20 (419)
- Oct 30 (423)
- Sep 25 (333)
- Sep 24 (57)
- Sep 13 (290)
- Sep 12 (48)
- Aug 17 (389)
- Jul 31 (340)
- Jul 25 (349)
- Jul 20 (1)
- Jul 19 (443)
Labels
Pages
International Journal of Environmental Research and Public Health IJERPH, Vol. 17, Pages 6976: Overcoming Barriers to Agriculture Green T...
-
Calcium oxalate films on works of art: A review Publication date: Available online 14 June 2019 Source: Journal of Cultural Heritage Author...
-
The conceptualization of gangs: Changing the focus Publication date: July–August 2019 Source: Aggression and Violent Behavior, Volume 47 Au...
-
Increased REDD1 facilitates neuronal damage after subarachnoid hemorrhage Publication date: September 2019 Source: Neurochemistry Internati...