Construction and function of robust and moist bilayer chitosan-based hydrogel wound dressing DOI Creative Commons
Jiawei Lu, Xiaokun Fan, Jiawei Hu

и другие.

Materials & Design, Год журнала: 2023, Номер 226, С. 111604 - 111604

Опубликована: Янв. 6, 2023

The main limit of hydrogel used as an independent wound dressing is its poor water retention, brittleness, and weak skin adhesion. Focusing on it, the macromolecular cross-linked chitosan polyacrylamide double network (C-A) chosen a functional layer, another robust poly(vinyl alcohol)-polyacrylamide/glycerin (P-A) protective layer designed to cover surface, interfacial reaction happens link two layers tightly for achieving function synergy. In this double-layer (DH) dressing, surface P-A with strong locking ability could keep moist long time, high strength toughness make maintain integrity under large deformation stress strengthen protection, C-A modest adhesion ensures fit skin, synergistic swelling guarantee fast absorption exudate. Moreover, in vitro vivo tests, DH exhibits excellent antibacterial cytocompatibility, it significantly accelerate tissue regeneration closure than commercial hydrocolloid dressings. general, easy prepare shows superior comprehensive performance, revealing great potential use independently applied dressing.

Язык: Английский

Wireless, closed-loop, smart bandage with integrated sensors and stimulators for advanced wound care and accelerated healing DOI
Yuanwen Jiang, Artem A. Trotsyuk, Simiao Niu

и другие.

Nature Biotechnology, Год журнала: 2022, Номер 41(5), С. 652 - 662

Опубликована: Ноя. 24, 2022

Язык: Английский

Процитировано

301

Self‐Assembling Peptide‐Based Hydrogels for Wound Tissue Repair DOI Creative Commons
Tong Guan, Jiayang Li, Chunying Chen

и другие.

Advanced Science, Год журнала: 2022, Номер 9(10)

Опубликована: Фев. 9, 2022

Wound healing is a long-term, multistage biological process that includes hemostasis, inflammation, proliferation, and tissue remodeling requires intelligent designs to provide comprehensive convenient treatment. The complexity of wounds has led lack adequate wound treatment materials, which must systematically regulate unique microenvironments. Hydrogels have significant advantages in due their ability spatiotemporal control over the process. Self-assembling peptide-based hydrogels are particularly attractive innate biocompatibility biodegradability along with additional including ligand-receptor recognition, stimulus-responsive self-assembly, mimic extracellular matrix. materials self-assemble response physiological environment, resulting functionalized microscopic structures, makes them conducive This review introduces several self-assembling systems various emphasizes recent advances allow for precise during different stages healing. Moreover, development multifunctional can remodel immune microenvironment therapy also been summarized. Overall, this sheds light on future clinical practical applications hydrogels.

Язык: Английский

Процитировано

212

Research advances in smart responsive-hydrogel dressings with potential clinical diabetic wound healing properties DOI Creative Commons
Ying Chen, Xing Wang,

Sheng Tao

и другие.

Military Medical Research, Год журнала: 2023, Номер 10(1)

Опубликована: Авг. 22, 2023

The treatment of chronic and non-healing wounds in diabetic patients remains a major medical problem. Recent reports have shown that hydrogel wound dressings might be an effective strategy for treating due to their excellent hydrophilicity, good drug-loading ability sustained drug release properties. As typical example, hyaluronic acid dressing (Healoderm) has been demonstrated clinical trials improve wound-healing efficiency healing rates foot ulcers. However, the degradation behavior clinically-used cannot adjusted according microenvironment. Due intricacy wounds, antibiotics other medications are frequently combined with practice, although these easily hindered by hostile environment. In this case, scientists created responsive-hydrogel based on microenvironment features (such as high glucose low pH) or external stimuli light magnetic field) achieve controllable release, gel degradation, improvements order overcome issues. These anticipated play significant role therapeutic dressings. Here, we review recent advances towards healing, focus structure design, principle responsiveness, degradation. Last but not least, advantages limitations responsive-hydrogels applications will also discussed. We hope contribute furthering progress hydrogels improved practical application.

Язык: Английский

Процитировано

157

Progress in Hydrogels for Skin Wound Repair DOI

Liangfa Qi,

Chenlu Zhang, Bo Wang

и другие.

Macromolecular Bioscience, Год журнала: 2022, Номер 22(7)

Опубликована: Апрель 7, 2022

Abstract As the first defensive line between human body and outside world, skin is vulnerable to damage from external environment. Skin wounds can be divided into acute (mechanical injuries, chemical surgical wounds, etc.) chronic (burns, infections, diabetes, etc.). In order manage wound, a variety of wound dressings have been developed, including gauze, films, foams, nanofibers, hydrocolloids, hydrogels. Recently, hydrogels received much attention because their natural extracellular matrix (ECM)‐mimik structure, tunable mechanical properties, facile bioactive substance delivery capability. They show great potential application in repair. This paper introduces anatomy function skin, process healing conventional dressings, then composition construction methods Next, this necessary properties repair latest research progress hydrogel for Finally, future development goals materials field are proposed.

Язык: Английский

Процитировано

149

Smart bioadhesives for wound healing and closure DOI Creative Commons
Jia Zhu, Honglei Zhou,

Ethan Gerhard

и другие.

Bioactive Materials, Год журнала: 2022, Номер 19, С. 360 - 375

Опубликована: Апрель 26, 2022

The high demand for rapid wound healing has spurred the development of multifunctional and smart bioadhesives with strong bioadhesion, antibacterial effect, real-time sensing, wireless communication, on-demand treatment capabilities. Bioadhesives bio-inspired structures chemicals have shown unprecedented adhesion strengths, as well tunable optical, electrical, bio-dissolvable properties. Accelerated been achieved via directly released growth factors, material or drug-induced host immune responses, delivery curative cells. Most recently, integration biosensing modules units in a closed-loop system yielded bioadhesives, allowing sensing physiological conditions (e.g., pH, temperature, uric acid, glucose, cytokine) iterative feedback drastically enhanced, stage-specific by triggering drug to avoid infection prolonged inflammation. Despite advances burgeoning field, challenges still exist design fabrication integrated systems, particularly chronic wounds, presenting significant opportunities future next-generation materials systems.

Язык: Английский

Процитировано

149

An Overview of Cellulose Derivatives-Based Dressings for Wound-Healing Management DOI Creative Commons
Elena-Emilia Tudoroiu, Cristina-Elena Dinu-Pîrvu, Mădălina Georgiana Albu Kaya

и другие.

Pharmaceuticals, Год журнала: 2021, Номер 14(12), С. 1215 - 1215

Опубликована: Ноя. 24, 2021

Presently, notwithstanding the progress regarding wound-healing management, treatment of majority skin lesions still represents a serious challenge for biomedical and pharmaceutical industries. Thus, attention researchers has turned to development novel materials based on cellulose derivatives. Cellulose derivatives are semi-synthetic biopolymers, which exhibit high solubility in water represent an advantageous alternative water-insoluble cellulose. These biopolymers possess excellent properties, such as biocompatibility, biodegradability, sustainability, non-toxicity, non-immunogenicity, thermo-gelling behavior, mechanical strength, abundance, low costs, antibacterial effect, hydrophilicity. They have efficient ability absorb retain large quantity wound exudates interstitial sites their networks can maintain optimal local moisture. also proper scaffold incorporate various bioactive agents with beneficial therapeutic effects tissue restoration. Due these suitable versatile characteristics, attractive captivating applications. This review presents extensive overview recent research promising derivatives-based multiple applications, dressings, drug delivery devices, engineering.

Язык: Английский

Процитировано

122

A Multifunctional Janus Electrospun Nanofiber Dressing with Biofluid Draining, Monitoring, and Antibacterial Properties for Wound Healing DOI
Xinming Zhang, Ruijuan Lv, Lixia Chen

и другие.

ACS Applied Materials & Interfaces, Год журнала: 2022, Номер 14(11), С. 12984 - 13000

Опубликована: Март 10, 2022

Wound healing greatly affects patients' health and produces medical burden. Therefore, we developed a multifunctional electrospun nanofiber dressing, which can inhibit methicillin-resistant Staphylococcus aureus (MRSA), drain excessive biofluid to promote wound healing, simultaneously monitor pH level. The polyoxometalate (α-K6P2W18O62·14H2O, P2W18) oxacillin (OXA) are encapsulated in hydrophobic polylactide (PLA) synergistically MRSA. phenol red (PSP) is hydrophilic polyacrylonitrile (PAN) sensitively indicate situ. PSP/PAN directly on the patterning OXA/P2W18/PLA layer form Janus dressing. By taking advantage of wettability difference between two layers, excess be drained away from wound. In addition, dressing exhibits good biocompatibility accelerates via its antimicrobial activity skin repairing function. This would beneficial for management treatment.

Язык: Английский

Процитировано

119

Biomaterials-Based Regenerative Strategies for Skin Tissue Wound Healing DOI

Gurvinder Kaur,

Ganesh Narayanan,

Deepa Garg

и другие.

ACS Applied Bio Materials, Год журнала: 2022, Номер 5(5), С. 2069 - 2106

Опубликована: Апрель 22, 2022

Skin tissue wound healing proceeds through four major stages, including hematoma formation, inflammation, and neo-tissue culminates with remodeling. These steps significantly overlap each other are aided by various factors such as cells, cytokines (both anti- pro-inflammatory), growth that aid in the formation. In all these advanced biomaterials provide several functional advantages, removing exudates, providing cover, transporting oxygen to site, preventing infection from microbes. addition, serve vehicles carry proteins/drug molecules/growth and/or antimicrobial agents target site. this review, we report recent advancements biomaterials-based regenerative strategies augment skin process. conjunction medical sciences, designing nanoengineered is gaining significant attention for numerous functionalities trigger repair. regard, highlight advent of nanomaterial-based constructs healing, especially those being evaluated clinical settings. Herein, also emphasize competence versatility three-dimensional (3D) bioprinting technique management. Finally, discuss challenges perspective biomaterial-based dressings, along prospective future directions. With utilize a cocktail cell sources, agents, drugs, factors, it expected patient-specific will be developed near future, resulting complete no scar

Язык: Английский

Процитировано

113

Marine Polysaccharides for Wound Dressings Application: An Overview DOI Creative Commons
Shenghai Shen,

Xiaowen Chen,

Zhewen Shen

и другие.

Pharmaceutics, Год журнала: 2021, Номер 13(10), С. 1666 - 1666

Опубликована: Окт. 12, 2021

Wound dressings have become a crucial treatment for wound healing due to their convenience, low cost, and prolonged management. As cutting-edge biomaterials, marine polysaccharides are divided from most organisms. It possesses various bioactivities, which allowing them be processed into forms of dressings. Therefore, comprehensive understanding the application in is particularly important studies therapy. In this review, we first introduce process describe characteristics modern commonly used Then, properties dressing development outlined. Finally, strategies developing enhancing polysaccharide described, an outlook these given. The diverse bioactivities including antibacterial, anti-inflammatory, haemostatic properties, etc., providing excellent management accelerate healing. Meanwhile, biomaterials higher biocompatibility biodegradability compared synthetic ones. On other hand, can combined with copolymers active substances prepare Among them, emerging types such as nanofibers, smart hydrogels injectable at research frontier development. essential materials fabrication promising future.

Язык: Английский

Процитировано

109

Developing natural polymers for skin wound healing DOI Creative Commons
Han Zhang,

Xiang Lin,

Xinyue Cao

и другие.

Bioactive Materials, Год журнала: 2023, Номер 33, С. 355 - 376

Опубликована: Ноя. 26, 2023

Natural polymers are complex organic molecules that occur in the natural environment and have not been subjected to artificial synthesis. They frequently encountered various creatures, including mammals, plants, microbes. The aforementioned commonly derived from renewable sources, possess a notable level of compatibility with living organisms, limited adverse effect on environment. As result, they hold considerable significance development sustainable environmentally friendly goods. In recent times, there has advancement investigation potential uses field biomedicine, specifically relation biomaterials exhibit antibacterial antioxidant characteristics. This review provides comprehensive overview prevalent utilized biomedical domain throughout preceding two decades. this paper, we present examination components typical methods for preparation based polymers. Furthermore, summarize application polymer materials each stage skin wound repair. Finally, key findings insights into limitations current elucidate prospects their future field.

Язык: Английский

Процитировано

109