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Dive into the research topics where Kaoru Murakami is active.

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Featured researches published by Kaoru Murakami.


Biomaterials | 2010

Hydrogel blends of chitin/chitosan, fucoidan and alginate as healing-impaired wound dressings.

Kaoru Murakami; Hiroshi Aoki; Shingo Nakamura; Shin-ichiro Nakamura; Megumi Takikawa; Motoaki Hanzawa; Satoko Kishimoto; Hidemi Hattori; Yoshihiro Tanaka; Tomoharu Kiyosawa; Yasunori Sato; Masayuki Ishihara

In order to create a moist environment for rapid wound healing, a hydrogel sheet composed of a blended powder of alginate, chitin/chitosan and fucoidan (ACF-HS; 60:20:2:4 w/w) has been developed as a functional wound dressing. ACF-HS gradually absorbed DMEM without any maceration, and fluid absorption became constant within 18 h. On application, ACF-HS was expected to effectively interact with and protect the wound in rats, providing a good moist healing environment with exudates. In addition, the wound dressing has properties such as ease of application and removal and good adherence. Full-thickness skin defects were made on the backs of rats and mitomycin C solution (1 mg/ml in saline) was applied onto the wound for 10 min in order to prepare healing-impaired wounds. After thoroughly washing out the mitomycin C, ACF-HS was applied to the healing-impaired wounds. Although normal rat wound repair was not stimulated by the application of ACF-HS, healing-impaired wound repair was significantly stimulated. Histological examination demonstrated significantly advanced granulation tissue and capillary formation in the healing-impaired wounds treated with ACF-HS on day 7, as compared to those treated with calcium alginate fiber (Kaltostat; Convatec Ltd., Tokyo, Japan) and those left untreated.


Annals of Plastic Surgery | 2010

Platelet-rich Plasma (prp) Promotes Survival of Fat-grafts in Rats

Shinichiro Nakamura; Masayuki Ishihara; Megumi Takikawa; Kaoru Murakami; Satoko Kishimoto; Shingo Nakamura; Satoshi Yanagibayashi; Satoshi Kubo; Naoto Yamamoto; Tomoharu Kiyosawa

This study evaluated the effects of platelet-rich plasma (PRP) on resorption and adipocyte survival in autologous fat-graft of rats prepared with isogenous PRP. Fat grafts prepared without PRP (control group) became united to the tissue adjacent to the implantation site and were significantly resorbed from 30 days. On the other hand, fat grafts prepared with PRP (PRP group) demonstrated little resorption from 30 to 120 days and appeared pink, had a soft, supple feel, and were easily compressible. Histologic sections of grafts in the control and PRP groups at 10 days exhibited similar consolidation of the grafted tissue, which contained morphologically normal adipocytes with different degrees of granulation and capillary formation. From 20 days normal adipocytes were obviously decreased in the control group, while the PRP group demonstrated increased granulation tissue and capillary formation and good maintenance of normal adipocytes for at least 120 days.


Journal of Biomedical Materials Research Part B | 2011

Increased survival of free fat grafts and vascularization in rats with local delivery of fragmin/protamine microparticles containing FGF-2 (F/P MP-F)

Shin-ichiro Nakamura; Masayuki Ishihara; Megumi Takikawa; Kaoru Murakami; Satoko Kishimoto; Shingo Nakamura; Satoshi Yanagibayashi; Yasutaka Mori; Masanori Fujita; Satoshi Kubo; Naoto Yamamoto; Tomoharu Kiyosawa

We evaluated the effects of fragmin/protamine micro-particles (F/P MPs) containing FGF-2 (F/P MP-F) as carriers for the controlled release of FGF-2 for adipocyte-survival and capillary formation in inbred rats with subdivided free fat grafts. F/P MPs could immobilize FGF-2, thereafter gradually releasing the bound FGF-2. Inbred Fisher 344 rats weighing around 150 g were anesthetized and implanted with paste comprising harvested fat combined with F/P MP-F. The effect of F/P MP-F on the survival, granulation, and capillary formation in fat grafts was histologically compared with control grafts containing either FGF-2, F/P MPs or PBS. The control fat grafts became attached to tissues adjacent to the implantation site and were significantly resorbed after 30 days. In contrast, pink, soft, supple grafts were compressible and were little resorbed in the group given F/P FP MP-F at 30-120 days. Normal adipocytes were obviously decreased in the control groups with increased granulation tissues, whereas normal adipocytes with capillary formations were maintained in the F/P MP-F group. Thus, adding F/P MP-F to subdivided fat grafts helps to improve graft volume retention and survival in soft-tissue reconstruction through accelerating adipocyte-survival rates and angiogenesis.


Wound Repair and Regeneration | 2010

Enhanced healing of mitomycin C-treated healing-impaired wounds in rats with hydrosheets composed of chitin/chitosan, fucoidan, and alginate as wound dressings

Kaoru Murakami; Masayuki Ishihara; Hiroshi Aoki; Shingo Nakamura; Shin-ichiro Nakamura; Satoshi Yanagibayashi; Megumi Takikawa; Satoko Kishimoto; Hidetaka Yokoe; Tomoharu Kiyosawa; Yasunori Sato

To create a moist environment for rapid wound healing, a hydrosheet composed of alginate, chitin/chitosan, and fucoidan (ACF‐HS) has been developed as a functional wound dressing. The aim of this study was to evaluate the accelerating effect of ACF‐HS on wound healing for rat mitomycin C‐treated healing‐impaired wounds. Full‐thickness skin defects were made on the back of rats and mitomycin C was applied onto the wound for 10 minutes to prepare a healing‐impaired wound. After thoroughly washing out the mitomycin C, ACF‐HS was applied to the healing‐impaired wounds. The rats were later euthanized and histological sections of the wounds were prepared. The histological examinations showed significantly advanced granulation tissue and capillary formations in the healing‐impaired wounds treated with ACF‐HS on days 7 and 14, in comparison with that in alginate fiber (Kaltostat®), hydrogel wound dressing (DuoACTIVE®), and nontreatment (negative control). Furthermore, in cell culture studies, ACF‐HS‐absorbed serum and fibroblast growth factor‐2 was found to be proliferative for fibroblasts and endothelial cells, respectively, and ACF‐HS‐absorbed serum was found to be chemoattractive for fibroblasts. However, our results may not be strictly comparable with general healing‐impaired wound models in humans because of the cell damage by mitomycin C. In addition, more biocompatibility studies of fucoidan are essential due to the possibility of renal toxicity.


Bio-medical Materials and Engineering | 2012

Novel hydrocolloid-sheet as wound dressing to stimulate healing-impaired wound healing in diabetic db/db mice

Satoshi Yanagibayashi; Satoko Kishimoto; Masayuki Ishihara; Kaoru Murakami; Hiroshi Aoki; Megumi Takikawa; Masanori Fujita; Mitsuru Sekido; Tomoharu Kiyosawa

To create a moist environment for wound healing, a hydrocolloid-sheet composed of alginate, chitin/chitosan and fucoidan (ACF-HS) has been developed as a functional wound dressing. ACF-HS gradually adsorbed medium without any maceration and the medium adsorption in vitro reached constant after 18 h. ACF-HS could effectively interact with and protect a healing-impaired wound in diabetic db/db mice, providing a good moist healing environment with exudate. Furthermore, the wound dressing could have other properties like ease of application and removal, and proper adherence. The aim of this study was to evaluate an accelerating effect of ACF-HS on wound healing for healing-impaired wounds in diabetic db/db mice. Round full-thickness skin defects (12 mm in diameter) were made on the back of db/db mice to prepare healing-impaired wounds. After applying ACF-HS to the wounds, the mice were later killed and histological sections of the wound were prepared. Histological examinations showed significantly advanced granulation tissue and capillary formations in the wounds treated with ACF-HS on days 4, 9 and 14 compared with those in commercially available hydrocolloid wound dressing and non-treatment (control). Thus, ACF-HS may serve as a new wound dressing for diabetic healing-impaired wounds.


Biocontrol Science | 2017

Stability of Weakly Acidic Hypochlorous Acid Solution with Microbicidal Activity

Masayuki Ishihara; Kaoru Murakami; Koichi Fukuda; Shingo Nakamura; Masahiro Kuwabara; Hidemi Hattori; Masanori Fujita; Tomoharu Kiyosawa; Hidetaka Yokoe

 Hypochlorous acid (HOCl) solution (200 ppm, pH 6) was prepared and evaluated for their stabilities and microbicidal activities. We demonstrated that HOCl is unstable against ultraviolet (UV) light, sunshine, contact with air, and elevated temperature (≧25℃). Furthermore, in the HOCl solution, the presence of excess NH2- or CHO-containing organic compounds such as proteins and carbohydrates, or of inorganic ions such as NO2-, SO3-, PO3-, Fe2+, Cu2+, and CuS, resulted in the rapid consumption of HOCl by oxidation reactions, and significantly decreased the microbicidal activity of the HOCl solution against coliform bacteria and total viable cell count. Thus, production of stable HOCl solution requires formulation in pure water harboring concentrations as low as possible of various compounds and ions, as well as storage in dark and cool conditions (<10℃) to maintain the concentration of HOCl molecules and microbicidal activity.


Journal of Medical Engineering & Technology | 2017

Cleansing technique using high-velocity steam–air micromist jet spray

Koichi Fukuda; Masayuki Ishihara; Kaoru Murakami; Shingo Nakamura; Yoko Sato; Masahiro Kuwabara; Masanori Fujita; Tomoharu Kiyosawa; Hidetaka Yokoe

Abstract Application of a high-velocity steam–air micromist jet spray (HVS-AMJS; micromist average diameter: 2.4 μm) for cleansing the skin is proposed. Low-pressure steam is mixed with compressed air (pH 6.5) in a nozzle, and then sprayed at a pressure of ≦0.25 MPa and a velocity of ≧0.34 m/s on the skin or surface of material located approximately 5–10 cm from the nozzle. The temperature on the sprayed surface and water flow rate could be controlled between 42 °C and 46 °C and at approximately 50 mL/min, respectively. Compared with ultrasonic cleansing with tap water and rubbing with only tap water, the HVS-AMJS successfully removed fluorescent lotion covering pieces of wood and significantly reduced both the number of coliforms and the total viable counts on pieces of wood and gauze. Furthermore, the HVS-AMJS effectively removed oily ink from the skin of hairless rats, and temporarily elevated the skin temperature and blood flow, indicating massage effects. The striking characteristics of this cleansing technique using HVS-AMJS are not only its ability to remove microbes and residue without using any chemicals or detergents but also its massage effects.


Biocontrol Science | 2018

Behavior of Nitrate-Nitrogen and Nitrite-Nitrogen in Drinking Water

Yoko Sato; Masayuki Ishihara; Koichi Fukuda; Shingo Nakamura; Kaoru Murakami; Masanori Fujita; Hidetaka Yokoe

Nitrate-nitrogen (NO3-N) and nitrite-nitrogen (NO2-N) are constituents of the nitrogen cycle. NO3-N is toxic to humans, primarily due to its reduction to NO2-N. In Japan, NO3-N and NO2-N levels in tap water must not exceed 10 mg/L and only NO2-N alone not 0.04 mg/L, respectively. In this study, we verified the effect of microorganisms and ultraviolet (UV) to increase of NO2-N in water. First, all tested drinking-waters including tap water and commercial mineral water in PET bottles had < 2 mg/L NO3-N and undetectable levels (< 0.01 mg/L) of NO2-N. However, we found that NO2-N was generated in tap water left to stand at room temperature for several days, leading to increases in CF and TC counts and reduction of NO3-N. We also demonstrated that direct UV and sunlight irradiation of NO3-N-containing drinking water generated NO2-N in 1-2 h, with NO2-N reaching > 0.04 mg/mL by 4-6 h. On the other hand, NO3-N and NO2-N were undetectable in commercially purified water.


International Journal of Oral and Maxillofacial Surgery | 2011

Clinical experience using a combination of PGA sheet and spraying of fibrin glue to cover partial resection of tongue carcinoma

Yasunori Sato; S. Watanabe; Kaoru Murakami; Hidetaka Yokoe; Shyuri Hada; Junko Nakajima; Hiroshi Nozawa; C. Matsumura


Wound Medicine | 2018

Disinfection of Pseudomonas aeruginosa-infected wounds in diabetic db/db mice by weakly acidic hypochlorous acid

Masahiro Kuwabara; Masayuki Ishihara; Koichi Fukuda; Shingo Nakamura; Kaoru Murakami; Yoko Sato; Hidetaka Yokoe; Tomoharu Kiyosawa

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Masayuki Ishihara

Kyoto Institute of Technology

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Shingo Nakamura

National Defense Medical College

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Hidetaka Yokoe

National Defense Medical College

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Tomoharu Kiyosawa

National Defense Medical College

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Satoko Kishimoto

National Defense Medical College

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Masanori Fujita

National Defense Medical College

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Megumi Takikawa

National Defense Medical College

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Junko Nakajima

National Defense Medical College

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Koichi Fukuda

National Defense Medical College

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