大湾区慢性创面医护康标准化体系建设联盟,《中国科技论文》体表外科卷编辑委员会,黄广涛1,吴 军1,郇京宁1,2
(1.深圳大学第一附属医院(深圳市第二人民医院)烧伤整形科,广东深圳518000;2.上海交通大学医学院附属瑞金医院烧伤整形与创面修复科,上海200011)
摘要:负压封闭引流技术(negative pressure wound therapy, NPWT)自2017年国内首部烧伤外科应用专家共识发布以来,其技术类型与临床应用范围均取得了显著拓展。特别是在促进各类急慢性创面愈合及预防外科手术部位感染方面,已累积了大量高质量循证证据。为整合国内外最新研究成果与临床实践经验,规范操作标准,提升治疗水平,国内创面修复相关多学科领域的专家共同撰写了本更新版共识。本共识汇聚了国内多位在创面相关的多学科领域的专家,结合国内外最新研究成果,遵循严谨的循证医学原则,采用系统综述方法,聚焦于NPWT的技术分类、适应症、参数优化及并发症处理等核心议题。工作小组系统检索了PubMed、Web of Science、IEEE Xplore及中国知网等数据库中2015—2025年相关文献,共获得791篇。经去重、筛选,并根据纳入标准(临床研究、随机对照试验、meta分析及相关共识等)最终纳入210篇文献进行证据综合与评价。本共识旨在为创面修复相关学科的临床医生提供基于最新证据、统一且可操作的治疗方案与技术规范。共识内容充分结合了我国临床实践的现状与需求,以期推动NPWT在国内的合理、规范及高效应用,最终惠及广大患者。
关键词:负压封闭引流技术;手术部位感染;创面修复;手术切口并发症
Yesica Y. Quiroz 1 , Enver Moncada 2 , Erika Llorens 3 , Ivan Schwartzmann 4 , Jorge Caffarati 5 , Anna Bujons *
Summary
Introduction
Paratesticular sarcoma is an aggressive malignant tumor of mesenchymal origin. The rhabdo-myosarcoma is the most common among children. Rhabdomyosarcoma treatment consists of surgery, chemotherapy and radiotherapy. Prognosic depends on local recurrence and distant metastasis.
Material and methods
We present the case of a 16-year-old male, who in April 2016 underwent right radical orchiectomy surgery by testicular mass rapidly evolving, with pathological results indicating a paratesticular rhabdomyosarcoma. The extension study showed a precaval adenopathy suggestive of lymph node metastasis, therefore it was a high-grade rhabdomyosarcoma. There was an appropriate response after chemotherapy (Protocol EpSSG RMS2005) and we decided to perform a robotic.
Results
We performed a transperitoneal approach with 8 mm trocar and 12 mm optica trocar. We accessed the retroperitoneal space through a latero-colic incision. Then we performed a craniocaudal lymph node dissection until the aortic bifurcation. The surgical time was 240 min with a blood loss of 200 ml. There were no complications. The patient was discharged on the fourth day after surgery. Pathology showed metastasis of rhabdomyosarcoma without capsular rupture. After two months, we placed the left testicle into inguinal canal prior to radiotherapy.
Conclusions
Robotic lymph node metastasis lymphadenectomy from paratesticular sarcomas is a feasible treatment with the advantage of minimally invasive surgery and acceptable morbidity.
Authors
Matthew Regulski
Patricia Stevenson
Keywords
Biofilm
DFU
diabetic foot ulcer
Issue: Volume 65 - Issue 4 - April 2019 ISSN 2640-5245
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Diabetic foot ulcers (DFUs), venous leg ulcers (VLUs), and pressure ulcers (PUs) represent the most common hard-to-heal wounds. According to Armstrong,1 “Every 1.2 seconds, someone develops a diabetic ulcer; every 20 seconds, someone is amputated.” In the United States, $1 million is spent every 30 seconds on diabetic foot complications.2,3 The news is similar for PUs; over a 10-year period, the number of PU treatments has increased 63%, costing $11 billion a year, data not indicative of improvement.4,5Although 70% of small (<12.4 cm2) VLUs heal in 24 weeks, 30% do not.6 According to the literature, chronic, hard-to-heal wounds cost the US $50 billion per year, 10 times more than the annual budget of the World Health Organization.7,8 Fife and Carter8 call hard-to-heal wounds a silent epidemic that affects more than 6.5 million people in the US. The question is, Why do wounds fail to heal?
Nonhealing wounds have constellations of common factors such as enzyme imbalances, alkaline pH levels, negative bacterial DNA mutations, host cellular senescence, and increasing bacterial loads. Each of these biological influences is detrimental to a healing wound. These patterns of low-grade negative effects have something common in origin: biofilm-controlled inflammation.
Biofilm and its subclinical activities are becoming a major source of debate and alarm. Studies consistently support bacterial virulence once the colony reaches 105 colony forming units; however, long before approaching this recognizable indication of infection, biofilm is attached and actively manipulating the inflammatory processes. In the past 20 years, researchers have only scratched the surface in addressing the numerous weak links in the wound healing process and the inflammatory cascade connected with biofilm.9
Normal wounds heal in a predictable albeit complex sequence; inflammation is a part of the normal healing progression. However, an influx of bacteria growing into a biofilm can change the healing cascade and subvert the entire process. Protected by the extracellular polymeric substance (EPS), its outer structure, and fed by the inflammatory process, biofilm becomes persistent, stalling wound healing processes and rendering traditional treatments ineffective (see Table).10,11 Clinicians describe stalled wounds as “being stuck” in the inflammatory phase. As biofilm disregulates innate biological immune responses, the wound healing continuum from host stem cell activity to normal cellular homeostatic mechanisms stalls.9,12-14 Once diverted into the biofilm life-cycle, inflammation incubates and supports a widening circle of accelerated tissue destruction and becomes a conduit for biofilm-based infection (see Figure). Induced proinflammatory influences are not efficiently addressed by current biofilm treatment strategies through focused therapies, in light of new evidence.10,11,13,14
Instead of focusing on a single biofilm-centric inflammatory action in isolation, such as matrix metalloproteinases, pH, and DNA changes, recent research, using the mechanical science perspective, has confronted the heart of biofilm resilience: its protective structure, the EPS.12-15 Within this protective architecture, biofilm can withstand onslaughts from debridement, dressings, and topical products that address the issues of planktonic and newly dispersed bacteria but fail to effectively dissolve the EPS structure, exposing hidden bacteria. Often, even stringent cleaning and disinfecting methods, such as steam sterilization, leave the EPS intact, allowing bacterial repopulation at the next bacterial exposure.16,17
Biofilm research is providing a microscopic view of the lurking invisible ecosystem in most hard-to-heal wounds and a growing number of acute wounds. What has been missing is the understanding that biofilm is a 3-dimensional problem that withstands segmented or siloed care focusing on biofilm activity instead of removing the biofilm foundation. Biofilm-emphasized care is a part of multimodal therapy and should focus on therapeutic goals that begin with dissolution of the protective biofilm EPS structure, destroy bacteria, and prevent biofilm reformation. To be clinically and economically effective, biofilm treatments should be evaluated according to each dimension of biofilm.
Disclosure
Dr. Regulski is medical director, Wound Institute of Ocean County; and senior partner, Ocean County Foot and Ankle Surgical Associates, Toms River, NJ. Ms. Stevenson is a clinical consultant, Next Science, Jacksonville, FL. The opinions and statements expressed herein are specific to the respective authors and not necessarily those of Wound Management & Prevention or HMP. This article was not subject to the Wound Management & Prevention peer-review process.
伤口世界平台生态圈,以“关爱人间所有伤口患者”为愿景,连接、整合和拓展线上和线下的管理慢性伤口的资源,倡导远程、就近和居家管理慢性伤口,解决伤口专家的碎片化时间的价值创造、诊疗经验的裂变复制、和患者的就近、居家和低成本管理慢性伤口的问题。
2019广东省医疗行业协会伤口管理分会年会
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