CIN 约14条结果 (0.39秒)

期刊论文
The patterns of herbal medicine use in the United Arab Emirates; A national study
Mazrouei, Nadia Al; Meslamani, Ahmad Z. Al; Alajeel, Rand; Alghadban, Ghaid; Ansari, Neda; Kaabi, Maisoun Al; Sadeq, Adel; Ibrahim, Rana; Ibrahim, Osama Mohamed Department of Pharmacy Practice and Pharmacotherapeutics, College of Pharmacy, University of Sharjah. United Arab Emirates; College of Pharmacy, AAU Health and Biomedical Research Center, Al Ain University, Abu Dhabi, United Arab Emirates; SEHA, Abu Dhabi, UAE; College of Pharmacy, Al Ain University, Al Ain, United Arab Emirates; Department of Clinical Pharmacy, Faculty of Pharmacy, Cairo University, Egyp Pharmacy Practice 2022

摘要:Objectives: To examine the pattern, nature, and attitude towards herbal medicines usage in the UAE. Methods: A cross-sectional national questionnaire was distributed over five weeks in 7 emirates of UAE: The questioner was constructed using an online platform and delivered randomly to 448 adults in the UAE. The data collection technique adopted for this study was a convenient sampling. SPSS version 24 was used for statistical analysis. Results: Among participants, 98.7% used herbal medicines (HMs), and respondents who aged between 18 and 24 years were more likely to use HMs. Participant were mainly female (70.3%), with fair health status (55%), and participant with chronic disease were significantly less likely to use HM (10.9%). The majority of herbal medicine users believed herbal medicine were harmless, because they were derivatives of natural products. The findings of this study reported that many participants use HMs to enhance immunity (26.8%), and for relaxation (23.5%). Conclusion: Despites the risk of adverse-effects, many participants in this study are regular users for HMs and have perception that 89 may cure or prevent COVID-19. Therefore, awareness-raising campaigns that target HM users are essential to mitigate any unwanted consequences.

期刊论文
The effect of externally applied traditional Chinese medicine in diabetic foot: A systematic review and meta-analysis of 34 RCTs
Yang, Yan-Wu; Zhou, Yi-Wu; Ge, Mei-Ling The Emergency Department, West China Hospital, Sichuan University, Chengdu 610041, Sichuan, China; The Center of Gerontology and Geriatrics (National Clinical Research Center for Geriatrics), West China Hospital, Sichuan University, Chengdu 610041, Sichuan, China The Foot 2023

摘要:Aim This study aimed to investigate the clinical efficacy of externally applied Traditional Chinese Medicine (TCM) on diabetic foot. Methods We searched the China Knowledge Network (CNKI), Wanfang Database, PubMed and Web of Science from inception to July 31, 2022, to find all randomized control trials (RCTs) related to externally applied TCMs in diabetic foot treatment. Information about the total effective rate, healing rate, and healing time were extracted. In addition, the relative risk (RR)/odds ratio (OR) or standardized mean difference (SMD) and 95?% confidence interval (CI) were calculated. Results Finally, a total of 34 RCTs including 3758 patients were included in this meta-analysis. There were 5 articles that reported hydropathic compress with astrogalin, 14 articles that reported MEBO burn cream, 9 articles that reported compound cortex phellodendri liquid and 6 articles that reported Shengji Yuhong ointment. Compared with the basic treatment, the externally applied TCM (astrogalin, MEBO burn cream, compound cortex phellodendri liquid and Shengji Yuhong ointment) combined with basic treatment improved the total effective rate (RR?=?1.31 [1.20, 1.42], P?<?0.0001) and healing rate (RR?=?1.84 [1.56, 2.17], P?<?0.0001) and shortened the healing time (SMD?=???2.51 [??3.39, ??1.63], P?<?0.0001). Conclusion Our systematic review and meta-analysis revealed that common TCM applied externally could significantly improve the clinical efficacy comparing to the basic treatment.

期刊论文
New from old: recycling differentiated cells into regenerative cells using traditional Chinese medicine? A tribute to Professor Rongxiang Xu
Péault, B. Department of Orthopaedic Surgery, Orthopaedic Hospital Research Center, UCLA, Los Angeles, CA, United States Frontiers in Bioengineering and Biotechnology 2024

摘要:New hopes in cell therapies have steadily arisen with ongoing progress in stem cell research, and innumerable conditions could be now treated and cured, from musculoskeletal injuries to diabetes to cardiac failure, to cite but a few, with the appropriate stem cells available. Arguably, the ideal therapeutic stem cells are those that naturally heal, repair, and replenish the target tissue in life, and research from the last decades has uncovered the presence of such committed, specialized stem cells in most organs. However, these cell lineage-specific regenerative cells are rare, difficult to identify and purify, and virtually impossible to culture for amplification as functionally intact, undifferentiated units. For this reason, and with the notable exception of hematopoietic stem cells, these are not presently amenable to clinical utilization.From the 1980's, Prof. Rongxiang Xu developed the theory that some of the pluripotent stem cells that build the embryo in early development also establish through adult life a minor subset of cells which, although seemingly terminally differentiated, retain strong multi-lineage developmental potential. He called these "potential regenerative cells" (PRCs), proposing these can be recruited into tissue repair and regeneration when no other progenitor cells are available (1). Although this hypothesis could not be fully tested experimentally at the time, it later turned out as strikingly visionary: on the one hand, it was demonstrated that mature cells can be reprogrammed into stem cells in culture, a discovery rewarded by attribution of the Nobel Prize in Medicine or Physiology in 2012 (2). Hence, transition from a functional, specialized cell back into a naïve, unbiased stem cell is, biologically, feasible and might explain the persistence of Rongxiang Xu's PRCs in adult organs. Another example in support of PRC existence refers to mesenchymal stem cells. MSCs are multipotent cells that can differentiate in culture into bone, cartilage, fat, tendon, muscle, and indirectly support, via growth factor secretion, the regeneration of multiple other tissues (3). This extraordinary potential has stimulated the use of MSCs in over 2000 clinical trials in attempts to treat multiple conditions in cardiology, orthopaedics, cancerology, nephrology, and many other specialties including medical immunology, since MSCs are also immunosuppressive (see clinicaltrials.gov). Despite such a popularity, progress in MSC science has long been hindered by the unknown identity of native, tissueresident mesenchymal stem cells, since these cells appear and expand in extended cultures of total, unselected cell populations dissociated from bone marrow, adipose tissue, umbilical cord, or other organs. Put in other words, MSCs are normally produced in vitro from elusive, rare ancestor cells that have long resisted description. This changed when multicolour, stringent flow cytometry cell sorting and sensitive differentiation assays were used for MSC prospective identification. In full support of the PRC concept proposed by Rongxiang Xu, innate tissue resident mesenchymal stem cells turned out to be differentiated perivascular cells of documented function. Pericytes, which enwrap capillaries and microvessels, regulate blood pressure and control angiogenesis. Equivalent cells populate the tunica adventitia at the periphery of larger blood vessels. Both purified pericytes and adventicytes give rise to bona fide mesenchymal stem cells when cultured in vitro (4,5). The use of transgenic reporter mice, in which cell lineages can be tracked dynamically, has confirmed the progenitor cell potential of perivascular cells in vivo (6). In aggregate, all these results have confirmed that differentiated cells can be reprogrammed into regenerative cells in culture and in the living organism, thus supporting Dr Xu's hypothesis on the existence of PRCs in adult organs.Professor Rongxiang Xu contributed to the development of formulations, mostly inspired by traditional Chinese medicine, for stem cell (PRC) stimulation in situ and in culture. Such a supplement, for instance, named GIC, was claimed to regenerate the gastrointestinal mucosa, as well as nerves, in culture. More recently, the LifeRegen Inc. company developed a line of products inspired by Dr Xu's research and patents were issued for a proprietary blend of natural ingredients produced via an original manufacturing process. All LifeRegen protocols rely on the infusion of combined black sesame oil, skullcap root, and beeswax. These products are considered GRAS (generally recognized as safe) by the FDA, and represent a scientific breakthrough merging ancient Chinese medicine recipes and Rongxiang Xu's groundbreaking results that are, moreover, being supported and extended by ongoing current research. More precisely, GI Balance and Juvenate Skincare are LifeRegen's proprietary formulations developed to nurture and renew the gut lining and create a cellular, rejuvenation promoting protective barrier for the skin, respectively.The insightful Prof. Rongxiang Xu predicted that some of the cells that constitute developed organs retain stem potential, and hence can be qualified as "potentially regenerative cells", and devised formulations that can stimulate such cells into tissue regeneration. He left us a rich legacy of centers at prestigious institutions, such as the Rongxiang Xu Center for Regenerative Therapeutics at Beth Israel Deaconess Medical Center in Boston, the Rongxiang Xu Center for Regenerative Life Science at the University of Southern California, and the Rongxiang Xu College of Health and Human Services at Cal state LA.The LifeRegen company has resumed and considerably amplified and diversified Dr Xu's approach to regenerative medicine, and is now sponsoring clinical studies for the GI Balance supplement that in previous published research enabled regeneration and rejuvenation of the entire gut mucosa within 6 months. In a more fundamental investigation perspective, PRCs have been prospectively identified and characterized in depth, for instance as pericytes and other perivascular elements, and can be purified to homogeneity and in large numbers from multiple organs (3). This opens unforeseen possibilities in regenerative medicine research whereby such well-characterized potential regenerative cells can be selected from the bone marrow, pancreas, skin, adipose tissue and other organs and treated with natural supplements for enhanced proliferation, migration, and differentiation. Such protocols should be initialized in culture and further developed in vivo by transplantation into relevant animal hosts. In perspective are novel biomolecular manoeuvres to drive the improved healing and replenishment of, for instance but not exclusively, cardiovascular, musculoskeletal, and epithelial tissues.

期刊论文
Moist Exposed Therapy: An Effective and Valid Alternative to Occlusive Dressings for Postlaser Resurfacing Wound Care
Atiyeh, Bishara S.; Dham, Ruwayda; Costagliola, Michel; Al-Amm, Christian A.; Belhaouari, Lakhdar Division of Plastic and Reconstructive Surgery, American University of Beirut Medical Center, Beirut, Lebanon; Drug Research Center, Dubai, UAE; Department of Plastic Surgery, University of Toulouse, Toulouse, France Dermatologic Surgery 2004

摘要:BACKGROUND? Laser resurfacing has now become an accepted and important component of facial rejuvenation. With the introduction of computerized scanning systems, the actual laser resurfacing technique has been greatly simplified; however, the final outcome still depends to a large extent on the efficiency of the postlaser wound care in promoting wound healing and preventing early and late complications. It has been repeatedly confirmed that a moist environment is the single most important external factor affecting the rate of re-epithelialization. Occlusive moisture-retentive dressings, however, are difficult to apply and maintain in position and may as well be complicated by serious infections. OBJECTIVE? Moist exposed burn ointment has been shown to maintain adequate moisture for optimal healing by frequent ointment application without the need for a secondary overlying dressing. It would be ideal for postoperative laser care. METHODS? Twenty-eight consecutive patients treated with coherent ultrapulse CO2 laser in Toulouse, France, were included in the trial. Moisture-retentive ointment was applied over the treated areas every 4 to 6 hours. Healing was assessed clinically and with repeated transepidermal water loss measurements. Swab cultures were taken, and pain was evaluated with a visual analog scale. Colorimetric analysis of pictures taken was statistically compared with picture analysis of 20 patients treated earlier with an occlusive dressing. RESULTS? Uneventful timely healing occurred in all patients with minimal pain and discomfort. Healing with moist exposed therapy resulted in faster recovery of cutaneous erythema, as evidenced by colorometry. CONCLUSION? Moist exposed burn ointment application can be safely considered a good and valid alternative to occlusive dressings for postoperative laser care.

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