scholarly journals Negative pressure wound therapy with instillation (NPWTi): Current status, recommendations and perspectives in the context of modern wound therapy.

Author(s):  
Adam Bobkiewicz ◽  
Adam Studniarek ◽  
Michał Drews ◽  
Tomasz Banasiewicz

Introduction of negative pressure wound therapy (NPWT) revolutionized the conception of wound healing. Currently, there are an increased number of studies confirmed the high efficiency of this therapy in many clinical scenarios. Moreover, some innovations have been introduced in recent years to improve the management of complex and chronic wound.NPWT with instillation (NPWTi) combines traditional NPWT with application of topical irrigation solutions within bed of the wound. Bioburden reduction, decrease time to wound closure, promotion in granulation tissue formation, fewer operative visits have been revealed using NPWTi compared to standard NPWT.However, there are still some questioned aspect of the NPWTi and thus its superiority over standard NPWT has not been fully indicated. Moreover, based on current studies no firm conclusions have been taken concerning the type of instilled solution preferably used, range of dwell- time phase, range of negative pressure and others.The main goal of the publication is to overview and summarize the current state of art concerning NPWTi. Moreover, mechanisms of action, review of the most common used instilled solution are discussed and clinical evidence of NPWTi are described.

2021 ◽  
Vol 17 (1) ◽  
pp. 62-66
Author(s):  
Si Young Roh ◽  
Ilou Park ◽  
Kyung Jin Lee ◽  
Sung Hoon Koh ◽  
Jin Soo Kim

Negative-pressure wound therapy (NPWT) is widely used for open wounds in various anatomical sites. Extensive research has been carried out on the application of NPWT; exposed blood vessels in the periwound area are a known contraindication to NPWT. In this study, we report a case where a replanted finger with not only exposed vessels but also uncontrolled infection was treated with NPWT. A 60-year-old man visited our emergency department with incomplete amputation of his left index and middle fingers. After replantation of his two fingers, necrosis of the middle finger with severe methicillin-resistant <i>Staphylococcus aureus</i> infection complicated managing the wound. After 3 weeks of maintaining conventional wound dressings, we performed NPWT for successful granulation tissue formation and infection control. After the treatment, the wound was completely covered by a split-thickness skin graft. We thus suggest that NPWT can be an effective reconstructive method, including for intractable wounds with exposed pedicle and severe infection after replantation.


Healthcare ◽  
2020 ◽  
Vol 8 (4) ◽  
pp. 513
Author(s):  
Satoshi Takagi ◽  
Takuto Oyama ◽  
Shiro Jimi ◽  
Arman Saparov ◽  
Hiroyuki Ohjimi

Negative pressure wound therapy (NPWT) has been commonly used over the years for a wide range of chronic/refractory lesions. Alternatively, autologous micrografting technology is recently becoming a powerful modality for initiating wound healing. The case presented is of a patient with a lower leg ulcer that had responded poorly to NPWT alone for three weeks. Consequently, the patient was put on a combination therapy of NPWT and micrografting. After injection of a dermal tissue micrografts suspension into the entire wound bed, NPWT was performed successively for two weeks, resulting in fresh granulation tissue formation. Thereafter, the autologous skin graft was taken well. This case study indicates that for a chronic/refractory ulcer patient with poor NPWT outcome, combination therapy using micrografting treatment and NPWT could rapidly initiate and enhance granulation tissue formation, creating a favorable bedding for subsequent skin grafting.


2017 ◽  
Vol 34 (03) ◽  
pp. 200-205 ◽  
Author(s):  
Hongda Bi ◽  
Mija Khan ◽  
Ivo Pestana ◽  
Junhui Li

Background Negative pressure wound therapy (NPWT) was initially introduced for wound management, but its benefits have stimulated the investigation of its use in new clinical scenarios. Most recently, incisional NPWT has been shown to be a benefit. Incisional NPWT applied to skin-containing free tissue transfer has not been well defined. This may originate from concerns of dressing material obscuring frequent examination of the newly transferred tissue or risk of pedicle compression and potential for increased risk of tissue loss. We aim to describe incisional NPWT in cutaneous free tissue transfer. Methods An institutional review board-approved retrospective review of consecutive free tissue transfer patients was completed over a 3-year period. Free tissue transfer procedures were performed in standard manner. After fixation of the flap to the donor site with interrupted sutures, one or two drainage tubes were inserted in the subflap position. The surface of the flap was protected with Vaseline gauze followed by a 1 cm thick layer of sterile cotton. The vacuum-assisted closure (VAC) sponge (KCI, TX) was then placed in the standard fashion and negative pressure at −125 mm Hg was initiated in a continuous mode. A window was routinely made over the flap's distal region to allow for serial flap examination. For extremity procedures, no splints were utilized, and patients were limited to motion in the hospital bed. NPWT was employed continuously for 7 days and subsequently removed along with operative drains. Results A total of 24 consecutive patients underwent free tissue transfer. The average patient age was 39.8 years with a mean body mass index of 23. Tobacco use was noted in 58% of patients in the series. The indication for the free tissue transfer included trauma (N = 21), malignancy (N = 2), and burn reconstruction (N = 1). The areas of reconstruction included scalp (N = 5), lower extremity (N = 11), and upper extremity (N = 8). Skin-containing free flaps employed consisted of the latissimus dorsi myocutaneous free flap (N = 16), anterolateral thigh free flap (N = 6), thoracodorsal artery perforator free flap (N = 1), and radial forearm free flap (N = 1). The average defect size reconstructed was 238.3 cm2 with a mean operative time of 501 minutes. Postoperatively, patients remained in the hospital an average of 15.5 days (range: 9–32 days) with a mean follow-up of 8.1 months. No hematomas, seromas, surgical-site infections, or deep vein thrombosis/pulmonary embolism occurred in the series. None of the flaps required return to the operating room. There were no documented cases of partial or complete flap loss. Conclusions NPWT may be employed in a fashion similar to the standard incisional application. With this technique, serial flap examination remains possible and is not associated with pedicle compression or increased rates of flap loss. Interestingly, no splints were utilized with the VAC device which itself may serve as a relative immobilizer of an extremity.


2013 ◽  
Vol 61 (S 01) ◽  
Author(s):  
O Grauhan ◽  
A Navasardyan ◽  
M Hofmann ◽  
P Müller ◽  
J Stein ◽  
...  

WCET Journal ◽  
2019 ◽  
Vol 39 (2) ◽  
pp. 9-18
Author(s):  
Wai Sze Ho ◽  
Wai Kuen Lee ◽  
Ka Kay Chan ◽  
Choi Ching Fong

Objectives The aim of this study was to retrospectively review the effectiveness of negative pressure wound therapy (NPWT) in sternal wound healing with the use of the validated Bates-Jensen Wound Assessment Tool (BWAT), and explore the role of NPWT over sternal wounds and future treatment pathways. Methods Data was gathered from patients' medical records and the institution's database clinical management system. Seventeen subjects, who had undergone cardiothoracic surgeries and subsequently consulted the wound care team in one year were reviewed. Fourteen of them were included in the analysis. Healing improvement of each sternal wound under continuous NPWT and continuous conventional dressings was studied. In total, 23 continuous NPWT and 13 conventional dressing episodes were analysed with the BWAT. Results Among conventional dressing episodes, sternal wound improvement was 2.5–3% over 10 days to 3.5 weeks, whereas 4–5% sternal healing was achieved in 5 days to 2 weeks with sternal wire presence. Better healing at 11% in 1 week by conventional dressing was attained after sternal wire removal. In NPWT episodes, 8–29%, 13–24%, and 15–46% of healing was observed in 2 weeks, 3.5 to 5 weeks and 6 to 7 weeks, respectively. Only 39% wound healing was acquired at the 13th week of NPWT in one subject. With sternal wire present, 6%–29% wound healing progress was achieved by NPWT in 1–4 weeks, and 16–23% wound improvement in 2 to 4.5 weeks by NWPT after further surgical debridement. After sternal wire removal, 6–34% sternal wound healing occurred by continuous NPWT for 1–2 weeks, and maximum healing at 46% after 2.5 weeks of NPWT were observed. Conclusions Better wound healing was achieved in the NPWT group in comparison to conventional dressings alone. However, suboptimal sternal wound healing by NPWT alone was observed. Removal of sternal wire may improve the effectiveness of NPWT. Successful tertiary closure after NPWT among subjects supports the important bridging role of NPWT in sternal wound healing. Factors causing stagnant sternal wound healing by NPWT alone are discussed.


2020 ◽  
Vol 99 (4) ◽  
pp. 183-188

Modern medicine offers a wide spectrum of wound healing resources for acute or chronic wounds. Negative pressure wound therapy (NPWT) is a very effective method, allowing complicated defects and wounds to heal. The basic set is usually provided with various special accessories to facilitate the use and support safe application of NPWT to high-risk tissue. Selected case reports are presented herein to document the special use and combinations of materials in negative pressure wound therapy.


Leczenie Ran ◽  
2015 ◽  
Vol 11 (4) ◽  
pp. 171-178
Author(s):  
Beata Mrozikiewicz-Rakowska ◽  
Joanna Kania ◽  
Ewelina Bucior ◽  
Adriana Nowak ◽  
Tomasz Grzela ◽  
...  

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