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借鉴生物聚合物的特性用于新型伤口愈合敷料:综述。

Borrowing the Features of Biopolymers for Emerging Wound Healing Dressings: A Review.

机构信息

Advanced Research and Development Center for Experimental Medicine (CEMEX), Grigore T. Popa University of Medicine and Pharmacy of Iasi, 9-13 Kogalniceanu Street, 700454 Iasi, Romania.

Biomedical Sciences Department, Faculty of Medical Bioengineering, Grigore T. Popa University of Medicine and Pharmacy of Iasi, 9-13 Kogalniceanu Street, 700454 Iasi, Romania.

出版信息

Int J Mol Sci. 2022 Aug 7;23(15):8778. doi: 10.3390/ijms23158778.


DOI:10.3390/ijms23158778
PMID:35955912
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9369430/
Abstract

Wound dressing design is a dynamic and rapidly growing field of the medical wound-care market worldwide. Advances in technology have resulted in the development of a wide range of wound dressings that treat different types of wounds by targeting the four phases of healing. The ideal wound dressing should perform rapid healing; preserve the body's water content; be oxygen permeable, non-adherent on the wound and hypoallergenic; and provide a barrier against external contaminants-at a reasonable cost and with minimal inconvenience to the patient. Therefore, choosing the best dressing should be based on what the wound needs and what the dressing does to achieve complete regeneration and restoration of the skin's structure and function. Biopolymers, such as alginate (ALG), chitosan (Cs), collagen (Col), hyaluronic acid (HA) and silk fibroin (SF), are extensively used in wound management due to their biocompatibility, biodegradability and similarity to macromolecules recognized by the human body. However, most of the formulations based on biopolymers still show various issues; thus, strategies to combine them with molecular biology approaches represent the future of wound healing. Therefore, this article provides an overview of biopolymers' roles in wound physiology as a perspective on the development of a new generation of enhanced, naturally inspired, smart wound dressings based on blood products, stem cells and growth factors.

摘要

伤口敷料设计是全球医学伤口护理市场中一个充满活力且快速发展的领域。技术的进步促使出现了各种各样的伤口敷料,这些敷料通过针对愈合的四个阶段来治疗不同类型的伤口。理想的伤口敷料应具有快速愈合、保持身体水分、透气、不粘连伤口且低致敏性、并为外部污染物提供屏障等功能——其成本合理,且对患者的不便最小。因此,选择最佳的敷料应基于伤口的需求以及敷料在实现皮肤结构和功能完全再生和恢复方面的作用。生物聚合物,如藻酸盐 (ALG)、壳聚糖 (Cs)、胶原蛋白 (Col)、透明质酸 (HA) 和丝素蛋白 (SF),由于其生物相容性、可生物降解性和与人体识别的大分子相似性,广泛应用于伤口管理中。然而,大多数基于生物聚合物的配方仍存在各种问题;因此,将它们与分子生物学方法相结合的策略代表了新一代基于血液制品、干细胞和生长因子的增强型、自然启发型智能伤口敷料的未来。因此,本文从伤口生理学的角度综述了生物聚合物的作用,以期开发新一代基于血液制品、干细胞和生长因子的增强型、自然启发型智能伤口敷料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3451/9369430/268282fcf202/ijms-23-08778-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3451/9369430/cb17f833ecf4/ijms-23-08778-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3451/9369430/268282fcf202/ijms-23-08778-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3451/9369430/cb17f833ecf4/ijms-23-08778-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3451/9369430/268282fcf202/ijms-23-08778-g002.jpg

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Mil Med Res. 2025-5-31

[4]
Films Based on Chitosan/Konjac Glucomannan Blend Containing Resveratrol for Potential Skin Application.

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[5]
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[6]
Natural biopolymer-based hydrogels: an advanced material for diabetic wound healing.

Diabetol Int. 2024-6-26

[7]
Recycling Technologies for Biopolymers: Current Challenges and Future Directions.

Polymers (Basel). 2024-9-30

[8]
Delivery of Nitric Oxide by Chondroitin Sulfate C Increases the Rate of Wound Healing through Immune Modulation.

ACS Appl Bio Mater. 2024-9-16

[9]
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[10]
Bioarchitectural Design of Bioactive Biopolymers: Structure-Function Paradigm for Diabetic Wound Healing.

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本文引用的文献

[1]
Commercial wound dressings for the treatment of exuding wounds: an in-depth physico-chemical comparative study.

Burns Trauma. 2022-6-21

[2]
Emerging treatment strategies in wound care.

Int Wound J. 2022-11

[3]
Recent advances in polysaccharide-based self-healing hydrogels for biomedical applications.

Carbohydr Polym. 2022-5-1

[4]
Role of Hyaluronic Acids and Potential as Regenerative Biomaterials in Wound Healing.

ACS Appl Bio Mater. 2021-1-18

[5]
3D bioprinted silk fibroin hydrogels for tissue engineering.

Nat Protoc. 2021-12

[6]
Chitosan-poloxamer-based thermosensitive hydrogels containing zinc gluconate/recombinant human epidermal growth factor benefit for antibacterial and wound healing.

Mater Sci Eng C Mater Biol Appl. 2021-11

[7]
Platelet-rich plasma treatment improves postoperative recovery in patients with pilonidal sinus disease: a randomized controlled clinical trial.

BMC Surg. 2021-10-21

[8]
Cationic, anionic and neutral polysaccharides for skin tissue engineering and wound healing applications.

Int J Biol Macromol. 2021-12-1

[9]
Chitosan-microencapsulated rhEGF in promoting wound healing.

J Wound Care. 2021-9-2

[10]
Film-Forming Spray of Water-Soluble Chitosan Containing Liposome-Coated Human Epidermal Growth Factor for Wound Healing.

Molecules. 2021-9-2

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