牙周炎治疗中水凝胶的分类和文献计量分析:趋势、机制、优势和未来研究方向。

IF 4.6 1区 医学 Q1 DENTISTRY, ORAL SURGERY & MEDICINE Dental Materials Pub Date : 2024-11-06 DOI:10.1016/j.dental.2024.10.017
Reena Das, Nisha Suryawanshi, Nishant Burnase, Anand Barapatre, Rajathirajan Siva Dharshini, Bikash Kumar, Pachaiyappan Saravana Kumar
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引用次数: 0

摘要

目的:综述评估了水凝胶给药系统在治疗牙周炎方面的潜力。水凝胶根据来源、成分、构造、交联方法、离子电荷和对刺激的反应进行分类:研究方法包括从 WoS、Scopus 和 PubMed 数据库中全面收集 2004-2024 年间的 626 篇文献。使用 VOS Viewer 进行了文献计量分析,以确定研究趋势、主要贡献者、突出主题和主要期刊。通过比较分析,研究了水凝胶与传统牙周炎治疗方法相比的优势。研究还回顾了水凝胶配方的当前研究和创新,包括正在进行的临床试验和商业产品:结果:研究发现,中国是水凝胶治疗牙周炎研究的主要贡献者,主要研究课题包括 "水凝胶"、"纳米颗粒 "和 "药物输送"。研究建立了详细的水凝胶分类系统,有助于水凝胶在靶向给药和组织再生方面的应用。研究发现,与传统疗法相比,水凝胶可控制药物释放、支持组织再生并改善临床效果。重点介绍的创新包括在临床试验中使用各种聚合物,如纳米羟基磷灰石/胶原蛋白复合材料、基于聚乳酸丙烯酰胺的材料和壳聚糖凝胶,结果表明它们增强了细胞增殖和组织再生能力:本综述强调了水凝胶疗法在推进牙周炎治疗方面的巨大潜力。通过提供全面的文献计量分析并突出关键研究和创新,它强调了水凝胶在靶向给药、微创性和支持组织再生方面的优势。研究结果表明,随着进一步的临床试验和监管部门的批准,水凝胶可能会成为牙周炎的一种主流、有效的治疗方法,为患者提供更好的治疗效果,并有可能改变牙周治疗方法。
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Classification and bibliometric analysis of hydrogels in periodontitis treatment: Trends, mechanisms, advantages, and future research directions.

Objectives: The review assess the potential of hydrogel-based drug delivery systems in treating periodontitis. Hydrogels are classified based on source, composition, configuration, crosslinking methods, ionic charge, and response to stimuli.

Methods: The methodology comprised of comprehensive data collection from WoS, Scopus and PubMed databases covering the period of 2004-2024 of 626 documents. A bibliometric analysis was conducted using VOS Viewer to identify research trends, key contributors, prominent topics, and leading journals. A comparative analysis was performed to examine the benefits of hydrogels over conventional periodontitis treatments. Current research and innovations in hydrogel formulations were reviewed, including ongoing clinical trials and commercial products.

Results: China was found to be the leading contributor to hydrogel research in periodontitis, with key topics including "hydrogels," "nanoparticles," and "drug delivery." A detailed classification system for hydrogels was established, aiding in their application for targeted drug delivery and tissue regeneration. Hydrogels were found to offer controlled drug release, support for tissue regeneration, and improved clinical outcomes compared to traditional treatments. Innovations highlighted including the use of various polymers like nano-hydroxyapatite/collagen composites, PLGA-based materials, and chitosan gels in clinical trials, demonstrating enhanced cell proliferation and tissue regeneration.

Significance: This review underscores the significant potential of hydrogel-based therapies in advancing the treatment of periodontitis. By providing a comprehensive bibliometric analysis and highlighting key research and innovations, it emphasizes the advantages of hydrogels in terms of targeted drug delivery, minimal invasiveness, and support for tissue regeneration. The findings suggest that with further clinical trials and regulatory approvals, hydrogels could become a mainstream, effective treatment option for periodontitis, offering improved patient outcomes and potentially transforming periodontal therapy.

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来源期刊
Dental Materials
Dental Materials 工程技术-材料科学:生物材料
CiteScore
9.80
自引率
10.00%
发文量
290
审稿时长
67 days
期刊介绍: Dental Materials publishes original research, review articles, and short communications. Academy of Dental Materials members click here to register for free access to Dental Materials online. The principal aim of Dental Materials is to promote rapid communication of scientific information between academia, industry, and the dental practitioner. Original Manuscripts on clinical and laboratory research of basic and applied character which focus on the properties or performance of dental materials or the reaction of host tissues to materials are given priority publication. Other acceptable topics include application technology in clinical dentistry and dental laboratory technology. Comprehensive reviews and editorial commentaries on pertinent subjects will be considered.
期刊最新文献
Bonding neat hydrophobic-rich resins to etched dentin: A proof of concept. Models for shrinkage stress: C-factor and all that. Ability of a novel primer to enhance the polymerization of a self-cured resin composite. Classification and bibliometric analysis of hydrogels in periodontitis treatment: Trends, mechanisms, advantages, and future research directions. Microspheres of stem cells from human exfoliated deciduous teeth exhibit superior pulp regeneration capacity.
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