Wound healing 约20条结果 (0.1秒)

期刊论文
Effects of Moist Exposed Burn Therapy and Ointment (MEBT/MEBO) on the autophagy mTOR signalling pathway in diabetic ulcer wounds
Zheng, Aitian; , Ma ,Huadan; , Liu ,Xianbin; , Huang ,Qing; , Li ,Zheng; , Wang ,Lin; , Zeng ,Na; and Wu, Biaoliang Department of Endocrinology, The Affiliated Hospital of Youjiang Medical College for Nationalities, Baise, Guangxi, China Pharmaceutical Biology 2020

摘要:Burn therapy (MEBT)/moist exposed burn ointment (MEBO) is an effective traditional Chinese medicine method to treat diabetic wound, but the mechanism is unclear. Autophagy has been proved to be closely related with wound healing, so MEBO/MEBT is hypothesized to promote diabetic wound healing by regulating autophagy. To explore the mechanism of moist exposed MEBT/MEBO promoting diabetic wound repair. Eighty male Wistar rats were randomly assigned to control (n = 20) and diabetic group induced by intraperitoneal injection of STZ (n = 60), which were further randomly assigned to MEBO, Kangfuxin and model groups (n = 20 each). All rats underwent full-thickness skin resection in the back. Wound healing was dynamically observed and wound tissues were collected at five time points for pathological examination, autophagosome and the expression of PI3K, Akt and mTOR. The healing time in the control group was the shortest, no statistically significant difference was found between the MEBO and the Kangfuxin group (p = 0.76). The morphology of autophagosomes ranged large to small, which was the most obvious in the MEBO group. The mRNA and protein expression of PI3K, Akt and mTOR in each group reached the peak on Day 5, the levels in the MEBO group were the highest (F = 18.43, 19.97, 15.36, p < 0.05). On Day 11, the expression levels in each group began to decline. In this study, we discussed the molecular mechanism of MEBT/MEBO promoting the repair of diabetic ulcer wounds through autophagy and PI3K-Akt-mTOR signalling pathway, which provides a new way for drug design in the future.

期刊论文
Combined application of moist exposed burn ointment and maggot therapy in wound healing
Song, Mingzhi; Bai, Xiaodong; Wang, Deyu; Wang, Qingxin; Pan, Liwen; He, Ping; Gong, Ying; Sun, Xiaohong; Xu, Xiaoguang; Che, Jianzhong; Wang, Shouyu Department of Orthopaedics, the First Affiliated Hospital of Dalian Medical University, Dalian, Liaoning, China; Department of Orthopaedics, the Third Affiliated Hospital of Dalian Medical University, Dalian, Liaoning, China; Department of Plastic Surgery, Southern University of Science and Technology Hospital, Shenzhen, Guangdong, China; Department of Burn and Wound Repair Surgery, the Forth People's Hospital of Dalian, Dalian, Liaoning, China; The Second Department of General Surgery, the Fifth People's Hospital of Dalian, Dalian, Liaoning, China; Department of Nursing, the First Affiliated Hospital of Dalian Medical University, Dalian, Liaoning, China; Surgical Clinic, the First Affiliated Hospital of Dalian Medical University, Dalian, Liaoning, China; Research Center of High Altitude Medicine, Naqu, Tibet, China; People's Hospital; of Naqu Affiliated to Dalian Medical University, Naqu, Tibet, China; Dalian Runxi Technology Development Co. Ltd, Dalian, Liaoning, China. Journal of Wound Care 2022

摘要:Objective: Hard-to-heal wounds are a global health challenge, and effective treatments are still lacking. Moist exposed burn ointment (MEBO) and maggots are traditional treatments for promoting wound healing. This study was a preliminary exploration of combined maggot therapy and MEBO in the treatment of hard-to-heal wounds.Method: A coexistence experiment was conducted to determine the survival rates of maggots in MEBO. The maggots were placed in two different existence conditions: one set in MEBO (MEBO group), and another set as the control group (no MEBO) to compare survival rates. Case reports describe the use of the combined application of MEBO and maggots in the treatment of patients with hard-to-heal wounds.Results: The coexistence experiment indicated that maggots in the MEBO group had a higher survival rate. From the therapeutic effect of the clinical cases (n=7), the combined application was safe and effective, with all the reported wounds eventually healing.Conclusion: Based on the findings of this study, we believe the combined application of MEBO and maggots is a promising way of promoting wound healing. Further studies and clinical trials are needed to elucidate the mechanism of the combined application in promoting wound healing and to more persuasively clarify the therapeutic effect.

期刊论文
Assessment of Transdermal Delivery of Topical Compounds in Skin Scarring Using a Novel Combined Approach of Raman Spectroscopy and High-Performance Liquid Chromatography
Basson, Rubinder; Lima, Cassio; Muhamadali, Howbeer; Li, Weiping; Hollywood, Katherine; Li, Ludanni; Baguneid, Mohamed; Al Kredly, Rawya; Goodacre, Royston; Bayat, Ardeshir Plastic and Reconstructive Surgery Research, Center for Dermatology Research, NIHR, Manchester Biomedical Research Center, University of Manchester, Manchester, United Kingdom; Department of Biochemistry, Institute of Integrative Biology, University of Liverpool, Liverpool, United Kingdom; Synbiochem, Manchester Institute of Biotechnology, Manchester, United Kingdom; Al Ain Hospital, SEHA, Al Ain, United Arab Emirates; Julphar Gulf Pharmaceutical Industries, Ras al Khaimah, United Arab Emirates Advances in Wound Care 2021

摘要:Objective: The goal of any topical formulation is efficient transdermal delivery of its active components. However, delivery of compounds can be problematic with penetration through tough layers of fibrotic dermal scar tissue.Approach: We propose a new approach combining high-performance liquid chromatography (HPLC) and Raman spectroscopy (RS) using a topical of unknown composition against a well-known antiscar topical (as control).Results: Positive detection of compounds within the treatment topical using both techniques was validated with mass spectrometry. RS detected conformational structural changes; the 1,655/1,446?cm?1 ratio estimating collagen content significantly decreased (p?<?0.05) over weeks 4, 12, and 16 compared with day 0. The amide I band, known to represent collagen and protein in skin, shifted from 1,667 to 1,656?cm?1, which may represent a change from β-sheets in elastin to α-helices in collagen. Confirmatory elastin immunohistochemistry decreased compared with day 0, conversely the collagen I/III ratio increased in the same samples by week 12 (p?<?0.05, and p?<?0.0001, respectively), in keeping with normal scar formation. Optical coherence tomography attenuation coefficient representing collagen deposition was significantly decreased at week 4 compared with day 0 and increased at week 16 (p?<?0.05).Innovation: This study provides a platform for further research on the simultaneous evaluation of the effects of compounds in cutaneous scarring by RS and HPLC, and identifies a role for RS in the therapeutic evaluation and theranostic management of skin scarring.Conclusions: RS can provide noninvasive information on the effects of topicals on scar pathogenesis and structural composition, validated by other analytical techniques.

期刊论文
Analysis of microbial environment changes in wound healing of pressure ulcers in rats promoted by moist exposed burn ointment
Chen, Shenghua; Chen, Mingheng; Han, Yuyang; Chen, Zhiquan; Mu, Xu; He, Chunjing; Zhao, Jing; Zhang, Lin; Huang, Zhifeng Guangdong Cardiovascular Institute, Guangdong Provincial People's Hospital, Guangdong Academy of Medical Sciences, Guangzhou, Guangdong, China; Department of Burns and Wound Repair Surgery, Guangdong Provincial People's Hospital, Guangdong Academy of Medical Sciences, Southern Medical University, Guangzhou, Guangdong, China; People's Hospital of Yingde City Guangdong Province, Qingyuan, Guangdong, China; Department of Burns Plastic and Wound Repair Surgery, Guangdong Provincial People's Hospital Ganzhou Hospital, Ganzhou, Jiangxi, China Archives of Dermatological Research 2025

摘要:This study explored the effects of Moist Exposed Burn Ointment (MEBO) on the healing process of pressure-induced wounds. Using a stage IV pressure ulcer model established in 42 rats, divided equally into a control gel group and an MEBO group, we investigated the efficacy of MEBO through topical application. The control group received Carbomer gel, while the MEBO group was treated with MEBO until complete wound healing. Results showed that MEBO significantly accelerated wound healing compared to the control group. Histological analysis, including hematoxylin and eosin (HE) staining and Masson’s trichrome staining, revealed enhanced epithelialization and collagen deposition in the MEBO group. Furthermore, 16S rRNA sequencing indicated that MEBO reduced microbial diversity at the wound site and reshaped the microbial composition. Notably, The increased abundance of Acinetobacter and Staphylococcus, coupled with a reduction in Pseudomonas, may reflect a shift in the wound microbiome that could be conducive to healing. However, the exact role of these microbial shifts in promoting wound healing requires further investigation, as microbial dynamics in wound environments are complex and context-dependent. These findings suggest that MEBO facilitates wound healing by optimizing the wound microbiome, thereby offering a promising therapeutic approach for managing pressure ulcers.

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