Displaying all 9 publications

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  1. Ellulu MS, Khaza'ai H, Rahmat A, Patimah I, Abed Y
    Int J Cardiol, 2016 Jul 15;215:318-24.
    PMID: 27128554 DOI: 10.1016/j.ijcard.2016.04.089
    BACKGROUND: To find out the differences on biomedical data between obese and non-obese participants, and to identify risk factors associated with systemic inflammation in healthy Palestinian adults.

    METHODOLOGY: A cross-sectional study involved 105 apparently healthy adults. Interview questionnaire was used to collect personal information. Participants were excluded if they suffered from acute or chronic inflammatory diseases, or continued using medicines, which might affect the biomedical results.

    RESULTS: In association with increased Body Mass Index (BMI), the obese group displayed significant higher markers including: interleukin 6 (IL-6), high sensitivity C reactive protein (hs-CRP), total cholesterol (TC), systolic blood pressure (SBP), and diastolic blood pressure (DBP). Obese group in association with increased waist circumference (WC) was higher significantly in inflammatory markers (IL-6, hs-CRP), lipid profile (TC) and triglyceride (TG), and blood pressure (SBP, DBP). A tertile of a feature of systemic inflammation (hs-CRP) was created, by Ordinal Logistic Regression, after adjusting for the age, gender, smoking habits, physical activity pattern, father and mother's health history; risk factors were the increased BMI [OR: 1.24] (95% CI: 1.005-1.548, P=0.050), IL-6 [OR: 3.35] (95% CI: 1.341-8.398, P=0.010), DBP [OR: 1.19] (95% CI: 1.034-1.367, P=0.015), and reduced Adiponectin [OR: 0.59] (95% CI: 0.435-0.820, P=0.001). Finally, BMI correlated with IL-6 and hs-CRP (r=0.326, P=0.005; r=0.347, P<0.001; respectively), and hs-CRP correlated with IL-6 (r=0.303, P=0.010), and inversely with Adiponectin (r=-0.342, P=0.001).

    CONCLUSION: The increased level of IL-6 and reduced Adiponectin, which strongly associated with obesity, indicated that having high BMI is a useful marker in association with IL-6 and further developed systemic inflammation.

  2. Ellulu MS, Khaza'ai H, Patimah I, Rahmat A, Abed Y
    Food Nutr Res, 2016;60:29268.
    PMID: 26829184 DOI: 10.3402/fnr.v60.29268
    Obesity is a degree of excess weight that predisposes people to metabolic syndromes via an inflammatory mechanism. Hypertensive and diabetic people have higher risks of developing systemic inflammation. Long chain omega-3 polyunsaturated fatty acids (LC ω-3 PUFAs) can reduce the cardiovascular events and help against inflammation.
  3. Ellulu MS, Rahmat A, Patimah I, Khaza'ai H, Abed Y
    Drug Des Devel Ther, 2015;9:3405-12.
    PMID: 26170625 DOI: 10.2147/DDDT.S83144
    Obesity is well associated as being an interfering factor in metabolic diseases such as hypertension and diabetes by increasing the secretion of proinflammatory markers from adipose tissue. Having healthy effects, vitamin C could work as an anti-inflammatory agent through its antioxidant capacity.
  4. Ellulu MS, Patimah I, Khaza'ai H, Rahmat A, Abed Y
    Arch Med Sci, 2017 Jun;13(4):851-863.
    PMID: 28721154 DOI: 10.5114/aoms.2016.58928
    Obesity is the accumulation of abnormal or excessive fat that may interfere with the maintenance of an optimal state of health. The excess of macronutrients in the adipose tissues stimulates them to release inflammatory mediators such as tumor necrosis factor α and interleukin 6, and reduces production of adiponectin, predisposing to a pro-inflammatory state and oxidative stress. The increased level of interleukin 6 stimulates the liver to synthesize and secrete C-reactive protein. As a risk factor, inflammation is an imbedded mechanism of developed cardiovascular diseases including coagulation, atherosclerosis, metabolic syndrome, insulin resistance, and diabetes mellitus. It is also associated with development of non-cardiovascular diseases such as psoriasis, depression, cancer, and renal diseases. On the other hand, a reduced level of adiponectin, a significant predictor of cardiovascular mortality, is associated with impaired fasting glucose, leading to type-2 diabetes development, metabolic abnormalities, coronary artery calcification, and stroke. Finally, managing obesity can help reduce the risks of cardiovascular diseases and poor outcome via inhibiting inflammatory mechanisms.
  5. Mhadi AA, Ong SC, Abed Y, Abu Ali KA
    Int J Pharm Pract, 2023 Apr 10;31(2):165-175.
    PMID: 36595471 DOI: 10.1093/ijpp/riac082
    OBJECTIVE: This study aimed to analyse the patterns of the irrational use of medicines in Arab countries and to determine the factors contributing to these patterns.

    METHODS: A systematic literature review was conducted using two major databases: PubMed and Scopus. The systematic search targeted original studies conducted in Arab countries from 2000 to 2019. A conceptual framework was adopted from a previous study and was utilized to assess the irrational use of medicines and its influencing factors.

    RESULTS: A total of 136 studies from 16 Arab countries were included. Almost all were cross-sectional studies. Most focused on evaluating the irrational use of medicines rather than investigating the cause. The number of medications per encounter was 2.3 which is within the limits of developed countries (2.7). The percentage of antibiotics per 100 encounter was 50.1% and the percentage of injections prescribed per 100 encounter was 15.2%. The consumption of antibiotic and injections was much higher than that recommended by WHO. At the same time, the review identified that one fourth of all medications were unnecessarily prescribed.

    SUMMARY: The literature review revealed that the irrational use of medicine is prevalent in most Arab countries. Excessive use of antibiotics was the most commonly observed pattern. Therefore, there is a need to conduct further research to identify the factors that drive the irrational use of medicines in Arab countries and then to make recommendations to mitigate this issue.

  6. Ellulu MS, Khaza'ai H, Abed Y, Rahmat A, Ismail P, Ranneh Y
    Inflammopharmacology, 2015 Jun;23(2-3):79-89.
    PMID: 25676565 DOI: 10.1007/s10787-015-0228-1
    The roles of Omega-3 FAs are inflammation antagonists, while Omega-6 FAs are precursors for inflammation. The plant form of Omega-3 FAs is the short-chain α-linolenic acid, and the marine forms are the long-chain fatty acids: docosahexaenoic acid and eicosapentaenoic acid. Omega-3 FAs have unlimited usages, and they are considered as omnipotent since they may benefit heart health, improve brain function, reduce cancer risks and improve people's moods. Omega-3 FAs also have several important biological effects on a range of cellular functions that may decrease the onset of heart diseases and reduce mortality among patients with coronary heart disease, possibly by stabilizing the heart's rhythm and by reducing blood clotting. Some review studies have described the beneficial roles of Omega-3 FAs in cardiovascular diseases (CVDs), cancer, diabetes, and other conditions, including inflammation. Studies of the effect of Omega-3 FAs gathered from studies in diseased and healthy population. CVDs including atherosclerosis, coronary heart diseases, hypertension, and metabolic syndrome were the major fields of investigation. In studies of obesity, as the central obesity increased, the level of adipocyte synthesis of pro-inflammatory cytokines like tumor necrosis factor alpha (TNF-α) and interleukin 6 (IL-6) were increased and the level of anti-inflammatory adiponectin was decreased indicating a state of inflammation. The level of C reactive protein (CRP) synthesized from hepatocyte is increased by the influence of IL-6. CRP can be considered as a marker of systemic inflammation associated with increased risks of CVDs. In molecular studies, Omega-3 FAs have direct effects on reducing the inflammatory state by reducing IL-6, TNF-α, CRP and many other factors. While the appropriate dosage along with the administrative duration is not known, the scientific evidence-based recommendations for daily intake are not modified.
  7. Ellulu MS, Patimah I, Khaza'ai H, Rahmat A, Abed Y, Ali F
    Inflammopharmacology, 2016 Feb;24(1):1-10.
    PMID: 26750181 DOI: 10.1007/s10787-015-0255-y
    Atherosclerotic cardiovascular disease (CVD) is a collective term comprising of a group of disorders of the heart and blood vessels. These diseases are the largest cause of morbidity and premature death worldwide. Coronary heart disease and cerebrovascular disease (stroke) are the most frequently occurring diseases. The two major initiators involved in the development of atherosclerotic CVD are vascular production of reactive oxygen species (ROS) and lipid oxidation. In atherosclerosis development, ROS is associated with rapid loss of anti-inflammatory and anti-atherogenic activities of the endothelium-derived nitric oxide (NO(·)) resulting in endothelial dysfunction. In part involving activation of the transcription factor NF-κB, ROS have been involved in signaling cascades leading to vascular pro-inflammatory and pro-thrombotic gene expression. ROS is also a potent activator of matrix metalloproteinases (MMPs), which indicate plaque destabilization and rupture. The second initiator involved in atherosclerotic CVD is the oxidation of low-density lipoproteins (LDL). Oxidation of LDL in vessel wall leads to an inflammatory cascade that activates atherogenic pathway leading to foam cell formation. The accumulation of foam cells leads to fatty streak formation, which is the earliest visible atherosclerotic lesion. In contrast, the cardiac sarco/endoplasmic reticulum Ca(2+)-ATPase (SERCA2a) and hepatic apolipoprotein E (apoE) expression can improve cardiovascular function. SERCA2a regulates the cardiac contractile function by lowering cytoplasmic calcium levels during relaxation, and affecting NO(·) action in vascular cells, while apoE is a critical ligand in the plasma clearance of triglyceride- and cholesterol-rich lipoproteins.
  8. Albelbeisi A, Shariff ZM, Mun CY, Abdul-Rahman H, Abed Y
    East Mediterr Health J, 2018 Jun 10;24(3):302-310.
    PMID: 29908026 DOI: 10.26719/2018.24.3.302
    Background: Growth faltering in early life can adversely affect health in later childhood and adulthood. Growth monitoring of children can provide evidence to help formulate effective strategies to address growth problems but such information on Palestinian children is lacking.

    Objectives: This study aimed to determine the growth patterns of children under 2 years in Gaza, Palestine.

    Methods: This retrospective cohort study was conducted in 2014 in 10 randomly selected primary health care clinics in 5 governorates of Gaza. Weight and length data were obtained from the health cards of children born in 2012, and z-scores were calculated and compared with the WHO Growth Standard (2006).

    Results: A total of 2 632 children's cards were included at the beginning of the study. Weight-for-age and weight-forlength decreased from birth to 6 months to about -0.40 SD but increased afterwards to -0.11 SD and 0.34 SD at 24 months respectively. Length-for-age declined after 6 months, reaching -0.85 SD at 24 months. At 6 months, the prevalence of underweight and stunting were 5% and 9% but at 24 months, the prevalence was 4% and 20% respectively. Wasting was highest at 6 months (10%) but decreased to 3% at 24 months. Significantly more girls were stunted at 9, 12 and 18 months (P < 0.001), underweight at 24 months (P < 0.05) and wasted at 12 months (P < 0.05). Early life faltering in length was more pronounced than weight, with stunting occurring in one fifth of boys and girls by 2 years of age.

    Conclusions: Preventive strategies are urgently needed to address early life causes of undernutrition, particularly stunting, in Palestinian children in Gaza.

  9. Albelbeisi A, Shariff ZM, Mun CY, Rahman HA, Abed Y
    Nutr J, 2020 12 05;19(1):133.
    PMID: 33278899 DOI: 10.1186/s12937-020-00652-7
    BACKGROUND: Infants and young children 6-24 months of age are the most nutritionally vulnerable groups, as their needs for vitamins and minerals are high relative to the amount of food they consume. This study determines the effect of Micronutrient Powder Supplementation (MNP) on growth and hemoglobin of infants in Gaza Strip, Palestine.

    METHOD: This was a two-arm parallel-group randomized controlled trial conducted in two health care clinics of the United Nations Relief and Work Agency (UNRWA) at the Middle Area governorate of Gaza Strip, Palestine. A total of 200 healthy infants aged 6-month-old were recruited and randomized to receive 3 sachets/week of MNP for 12 months alongside with the National Micronutrient Supplement (NMS) (n = 100) or NMS alone (n = 100). Weight, length, blood hemoglobin, and dietary intakes were measured at 6, 9, 12, 15, 18, and 21 (3 months after the end of intervention) months of age. Analysis was by intention to treat.

    RESULTS: The experimental group had a higher concentration of hemoglobin at 12 and 15 months than did the control group, and a significant difference (p 

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