306 research outputs found

    Growth Potential of Tourism Taxation in Maldives

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    Interview with Najeeb Lotfey by Andrea L’Hommedieu

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    Biographical NoteNajeeb S. Lotfey was born in July, 1942, in Portland, Maine, to Elias and Lillian Lotfey, both from Lebanon. He attended the Northeastern School of Accounting in Portland, Maine, served in the Army for two years, and later joined MacDonald Page where he became a managing partner and stayed for more than thirty years. He has served many of Senator Mitchell’s financial management needs over the years. Former Governor Joe Brennan appointed him to the Finance Authority of Maine. SummaryInterview includes discussion of: family and educational background; Portland, Maine community; the Depression era; career with MacDonald Page and George Mitchell as a client; keeping in touch with the Mitchells regularly; Joe Brennan; description of Joe Angelone and his political interests and pizza shops; Lebanese food; and George Mitchell’s qualities

    Potential of electrospun nanofibers for biomedical and dental applications

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    YesElectrospinning is a versatile technique that has gained popularity for various biomedical applications in recent years. Electrospinning is being used for fabricating nanofibers for various biomedical and dental applications such as tooth regeneration, wound healing and prevention of dental caries. Electrospun materials have the benefits of unique properties for instance, high surface area to volume ratio, enhanced cellular interactions, protein absorption to facilitate binding sites for cell receptors. Extensive research has been conducted to explore the potential of electrospun nanofibers for repair and regeneration of various dental and oral tissues including dental pulp, dentin, periodontal tissues, oral mucosa and skeletal tissues. However, there are a few limitations of electrospinning hindering the progress of these materials to practical or clinical applications. In terms of biomaterials aspects, the better understanding of controlled fabrication, properties and functioning of electrospun materials is required to overcome the limitations. More in vivo studies are definitely required to evaluate the biocompatibility of electrospun scaffolds. Furthermore, mechanical properties of such scaffolds should be enhanced so that they resist mechanical stresses during tissue regeneration applications. The objective of this article is to review the current progress of electrospun nanofibers for biomedical and dental applications. In addition, various aspects of electrospun materials in relation to potential dental applications have been discussed

    Linguistic Choices for Literary Dialectics: A Coming Together of Divergent Entities

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    Literature involves the manipulation of language for creative purposes and the discipline which fosters this synergic relationship between literature and language is termed stylistics. The purpose of this article is to show how it is possible to bridge the divide between language and literature by using the analytical techniques available within this sub-discipline of language study. Stylistics aims to interconnect linguistic form and literary effect, and also account for what it is that readers respond to when they praise the quality of a particular piece of writing. This article attempts to depict how the knowledge of linguistic intricacies can affect the reader’s interpretation. It also discusses how linguistic form relates to literary effect by analysing “Domination of Black”, by the renowned American poet Wallace Stevens. We aim to show that a linguistic approach to the analysis of a literary text does not have to mean that interpretation is disregarded. On the contrary, stylistic analysis can often illuminate why a particular literary text is regarded so highly

    Electrospinning of Chitosan-Based Solutions for Tissue Engineering and Regenerative Medicine

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    Electrospinning has been used for decades to generate nano-fibres via an electrically charged jet of polymer solution. This process is established on a spinning technique, using electrostatic forces to produce fine fibres from polymer solutions. Amongst, the electrospinning of available biopolymers (silk, cellulose, collagen, gelatine and hyaluronic acid), chitosan (CH) has shown a favourable outcome for tissue regeneration applications. The aim of the current review is to assess the current literature about electrospinning chitosan and its composite formulations for creating fibres in combination with other natural polymers to be employed in tissue engineering. In addition, various polymers blended with chitosan for electrospinning have been discussed in terms of their potential biomedical applications. The review shows that evidence exists in support of the favourable properties and biocompatibility of chitosan electrospun composite biomaterials for a range of applications. However, further research and in vivo studies are required to translate these materials from the laboratory to clinical applications

    Studies on the antihypertensive and antidyslipidemic activities of Viola odorata leaves extract

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    <p>Abstract</p> <p>Background</p> <p>This study was undertaken to provide pharmacological basis for the medicinal use of <it>Viola odorata </it>Linn. in hypertension and dyslipidemia using the <it>in vivo </it>and <it>in vitro </it>assays.</p> <p>Results</p> <p><it>Viola odorata </it>leaves extract (Vo.Cr), which tested positive for alkaloids, saponins, tannins, phenolics, coumarins and flavonoids, caused a dose-dependent (0.1-1.0 mg/kg) decrease in mean arterial blood pressure in anaesthetized rats. In isolated guinea-pig atria, Vo.Cr equally inhibited force and rate of spontaneous atrial contractions. On the baseline of rat thoracic aortae (endothelium-intact and denuded), the plant extract caused phentolamine-sensitive vasoconstriction. When tested on phenylephrine (PE, 1 μM) and K<sup>+ </sup>(80 mM)-induced vasoconstriction, Vo.Cr caused a concentration-dependent relaxation and also caused a rightward shift of Ca<sup>++ </sup>concentration-response curves as well as suppression of PE (1 μM) control peaks in Ca<sup>++</sup>-free medium, similar to that caused by verapamil. In the presence of L-NAME, the relaxation curve of Vo.Cr was partially inhibited showing involvement of Nitric oxide (NO) mediated pathway. In Tyloxapol-induced dyslipidemia, Vo.Cr caused reduction in total cholesterol and triglyceride levels. In high-fat diet-induced dyslipidemia model, the plant extract caused a significant decrease in total cholesterol, LDL-C, atherogenic index and prevented the increase in average body weights, while it increased HDL-C.</p> <p>Conclusions</p> <p>These data indicate that the vasodilator effect of the plant extract is mediated through multiple pathways like inhibition of Ca<sup>++ </sup>influx via membranous Ca<sup>++ </sup>channels, its release from intracellular stores and NO-mediated pathways, which possibly explain the fall in BP. The plant also showed reduction in body weight and antidyslipidemic effect which may be due to the inhibition of synthesis and absorption of lipids and antioxidant activities. Thus, this study provides a pharmacologic rationale to the medicinal use of <it>Viola odorata </it>in hypertension and dyslipidemia.</p

    Dental Applications of Nanodiamonds

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    YesNanodiamonds (NDs) have been used in various fields of medicine such as drug delivery, tissue regeneration and gene therapy. Although there has been research carried out investigated the potential of these remarkable materials in dentistry, to date no review has been published to summarize the studies conducted. Due to their target cell specificity, small size and fluorescence they have also been found to be usefulness in dentistry. Main applications of NDs in dentistry and medicine include guided tissue regeneration, reinforcement of polymers and drug delivery to treat infections and cancers. Recent research also suggests that NDs can also be used as bioactive or antibacterial dental implant coatings. However, to date, the research conducted on their biocompatibility is limited and inconclusive. Hence, substantially more in vitro and in vivo studies are required to envisage the future of NDs in dentistry. It is hoped that in the next decade these promising materials will find a variety of uses in routine dentistry

    Evolution of Minimally Invasive Adrenal Surgery at a Tertiary Care Centre in Oman

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    Objective: We reviewed the case records of adrenalectomy cases at our institution between January 2010 and December 2020 and report the outcomes of both open and laparoscopic adrenalectomy (LA). Methods: This retrospective study included patients who underwent adrenal surgery from January 2010 to December 2020. We recorded demographic details, indications, surgical approach, intra operative data and complications. The final pathology and outcome at the last follow up was also documented. Data was analyzed through the SPSS program. Results: Fifty two patients underwent 61 adrenalectomy procedures. Six patients had bilateral procedure and 3 patients underwent redo surgery accounting for 55 subjects. Open adrenalectomy (OA) was performed on 11 patients and 44 patients underwent LA. Majority of the patients (27) were obese having BMI &gt; 30. Functional adenoma was excised in 36 patients with final diagnosis of Conn’s syndrome in 15, Pheochromocytoma in 13 and Cushing syndrome in 9 patients. Five patients had surgery for oncological indications. Nonfunctional adenoma was excised in 13 patients, with a mean size of 8.9 cm (range 4-15 cm). The mean duration of surgery was less in laparoscopic procedure (199 min) compared to open (246 min). The mean estimated blood loss in LA was significantly less (108ml vs 450 ml, p-value &lt; 0.05). Out of 55 subjects only 1 patients developed Clavien-dindo grade 2 complication. Conclusion: At our institution both laparoscopic and open adrenalectomy were safely performed. There is a trend to perform LA and with experience the duration of surgery and EBL are demonstrating positive trend. Keywords: Adrenal Gland Surgery; Laparoscopic Adrenalectomy; Open Adrenalectomy; Pheochromocytoma; Adrenal Metastasis; Nonfunctional Adrenal Tumors; Oman

    Propolis: A natural biomaterial for dental and oral healthcare

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    The field of health has always emphasised on the use of natural products for curing diseases. There are varieties of natural products (such as silk, herbal tea, chitosan) used today in the biomedical application in treating a large array of systemic diseases. The natural product "Propolis" is a non-toxic resinous material having beneficial properties such as antimicrobial, anticancer, antifungal, antiviral and anti-inflammatory; hence gain the attention of researchers for its potential for bio-dental applications. The study aims to explore the properties and chemistry of propolis concerning biomedical and dental applications. In addition, status and scope of propolis for current and potential future in bio-dental applications have been discussed. This review gives an insight to the reader about the possible use of propolis in modern-day dentistry
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