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1.
Food Sci Nutr ; 8(8): 4009-4016, 2020 Aug.
Article in English | MEDLINE | ID: mdl-32884682

ABSTRACT

Peripheral nerve injury (PNI) is an incapacitating situation and has no effective therapy until now. We examined the possible role of crude leaves of Moringa oleifera Lam. at 200 mg/kg body weight in accelerating the functional regain in the sciatic nerve lesion induced mouse model (Adult male albino mice (BALB/c). Motor functions were evaluated by using the sciatic functional index, muscle mass, and muscle grip strength measurement, whereas the sensory functions were evaluated by using the hot plate test. Blood glucose levels and blood cell composition were also analyzed. We found that the Moringa oleifera crude leaves endorse the sensory and motor functions reclamation following the PNI with a statistically significant difference (p < .05). It also revitalizes the gastrocnemius muscle by mass restoration with glycemic management perspective. Conclusively, the crude powder of Moringa oleifera leaves exhibited a function restoration boosting property and further detailed studies for its application as a therapeutic agent are strongly recommended.

2.
Crit Rev Food Sci Nutr ; 60(3): 351-374, 2020.
Article in English | MEDLINE | ID: mdl-30614244

ABSTRACT

Brain is a central and pivotal organ of human body containing the highest lipids content next to adipose tissue. It works as a monitor for the whole body and needs an adequate supply of energy to maintain its physiological activities. This high demand of energy in the brain is chiefly maintained by the lipids along with its reservoirs. Thus, the lipid metabolism is also an important for the proper development and function of the brain. Being a prominent part of the brain, lipids play a vast number of physiological activities within the brain starting from the structural development, impulse conduction, insulation, neurogenesis, synaptogenesis, myelin sheath formation and finally to act as the signaling molecules. Interestingly, lipids bilayer also maintains the structural integrity for the physiological functions of protein. Thus, in light to all of these activities, lipids and its metabolism can be attributed pivotal for brain health and its activities. Decisively, the impaired/altered metabolism of lipids and its intermediates puts forward a key step in the progression of different brain ailments including neurodegenerative, neurological and neuropsychiatry disorders. Depending on their associated underlying pathways, they serve as the potential biomarkers of these disorders and are considered as necessary diagnostic tools. The present review discusses the role and level of altered lipids metabolism in brain diseases including neurodegenerative diseases, neurological diseases, and neuropsychiatric diseases. Moreover, the possible mechanisms of altered level of lipids and their metabolites have also been discussed in detail.


Subject(s)
Brain Diseases/metabolism , Lipid Metabolism , Lipids/analysis , Biomarkers/analysis , Biomarkers/metabolism , Brain/metabolism , Brain/pathology , Brain Diseases/pathology , Humans
3.
Pak J Pharm Sci ; 32(4(Supplementary)): 1761-1766, 2019 Jul.
Article in English | MEDLINE | ID: mdl-31680070

ABSTRACT

Peripheral nerve injury is a complex condition which results in restricted physical activity. Despite the tremendous efforts to figure out effective remedies, the complete functional retrieval is still a goal to be achieved. So, the need of hour is the exploration of potential natural compounds to recover this functional loss. Here, we have investigated the role of a local plant "Neurada procumbens" in ameliorating the functional recovery after an induced nerve compression injury in a mouse model. A dose of N. procumbens (50mg/kg of body weight) was administered orally from the day of injury to onwards. The motor functional recovery was assessed by evaluating muscle grip strength and sciatic functional index; while the sensory functions were gauged by the hotplate test. The serological parameters were carried out to analyze the effect of N. procumbens on oxidative stress level. The recovery of sensory and motor functions was significantly improved and perceived earlier in the treatment group. Moreover, the elevated antioxidant level was statistically significant in the treatment group. These results indicate that the supplementation of N. procumbens accelerates functional recovery after sciatic nerve crush injury.


Subject(s)
Peripheral Nerve Injuries/drug therapy , Plant Preparations/pharmacology , Recovery of Function/drug effects , Sciatic Nerve/drug effects , Sciatic Neuropathy/drug therapy , Animals , Antioxidants/pharmacology , Disease Models, Animal , Mice , Motor Activity/drug effects , Nerve Regeneration/drug effects , Oxidative Stress/drug effects
4.
Lipids Health Dis ; 18(1): 26, 2019 Jan 25.
Article in English | MEDLINE | ID: mdl-30683111

ABSTRACT

Brain is a vital organ of the human body which performs very important functions such as analysis, processing, coordination, and execution of electrical signals. For this purpose, it depends on a complex network of nerves which are ensheathed in lipids tailored myelin; an abundant source of lipids in the body. The nervous system is enriched with important classes of lipids; sphingolipids and cholesterol which compose the major portion of the brain particularly in the form of myelin. Both cholesterol and sphingolipids are embedded in the microdomains of membrane rafts and are functional units of the neuronal cell membrane. These molecules serve as the signaling molecules; hold important roles in the neuronal differentiation, synaptogenesis, and many others. Thus, their adequate provision and active metabolism are of crucial importance in the maintenance of physiological functions of brain and body of an individual. In the present review, we have highlighted the physiological roles of cholesterol and sphingolipids in the development of the nervous system as well as the association of their altered metabolism to neurological and neurodegenerative diseases.


Subject(s)
Brain/growth & development , Cholesterol/metabolism , Nervous System Diseases/genetics , Sphingolipids/metabolism , Animals , Brain/metabolism , Cell Membrane/genetics , Cholesterol/genetics , Humans , Lipids/genetics , Membrane Microdomains/genetics , Myelin Sheath/genetics , Myelin Sheath/metabolism , Nervous System Diseases/metabolism , Nervous System Diseases/physiopathology , Neurons/metabolism , Neurons/pathology , Sphingolipids/genetics
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