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      지방 채취 방법에 따른 지방 세포의 생존성에 대한 연구 = AN EXPERIMENTAL STUDY ON FAT CELL VIABLITY ACCORDING TO DIFFERENT HARVESTING TECHNIQUES

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      https://www.riss.kr/link?id=A105696611

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      다국어 초록 (Multilingual Abstract)

      Purpose: The purpose of this study is to test the efficacy of various methods of fat harvesting in animal model by viability comparison with assay including cell counting, MTT assay, and histologic evaluation. Materials and methods: New Zealand white ...

      Purpose: The purpose of this study is to test the efficacy of various methods of fat harvesting in animal model by viability comparison with assay including cell counting, MTT assay, and histologic evaluation. Materials and methods: New Zealand white rabbits experiments were used. Groin fat pads were subjected to different harvest method varying ingredients of solution(Experiment 1: T1 solution= lidocaine 1000mg/L, epinephrine 1mg/L, sodium bicarbonate 10mgEq/L, Triamcinolone 10mgEq/L; T2 solution=lidocaine 1000mg/L, epinephrine 1mg/L, sodium bicarbonate 0mgEq/L, Triamcinolone 0mgEq/L) and pressure exerted on harvesting with Luer-Lock syringe connected to suction cannula.(Experiment 2: P1 group=3cc intermittent pressure; P2 group=10cc sustained pressure) Fat cell viability was assessed with cell counting with a hemocytometer, MTT assay, and histologic evaluation. Results: Experiment 1 Cell count: T1=2.4/3.4/4.2, T2=9.6/8.4/7.2($\times10^5$ per mL); MTT assay: T1=0.516/0.41/0.453/0.412/0.421, T2=0.925/0.765/0.54/0.634/0.614 in 21 days(absorbance); Histology: T1 showed elongated and, different in size and shape, and ruptured adipocytes with only a few normal adipocytes whereas T2 showed central core of fat with almost intact fat cells Experiment 2 Cell count: P1=1.2/3.2/4.2, P2=1.2/2.4/3.8($\times10^5$ per mL); MTT assay:P1=0.256/0.245/0.258/0.21/0.264, P2=0.12/0.231/0.245/0.313/0.281 in 21 days(absorbance); Histology: P1 showed somewhat evenly distributed normal-looking fat cells and P2 showed relatively irregular shape of fat cells with small blood vessel amongst adiopocytes. Conclusion: Viability was higher in ‘modified tumescent solution’without sodium bicarbonate and triamcinolone and we also found no significantly different viability between using intermittent pressure and using sustained pressure. But in terms of initial viability of fat cell, we can assume that lower intermittent pressure would make better clinical results.

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      참고문헌 (Reference)

      1 Peter BF, "Wetting solutions in aspirative lipoplasty: A plea for safety in liposuction" 19 : 379-, 1995

      2 John HM, "Viability of fat obtained by syringe suction lipectomy: Effects of local anesthesia with lidocaine" Luz MM et al:Viability of fat obtained by syringe suction lipectomy:Effects of local anesthesia with lidocaine.Aesth Plast Surg 19:335 19 : 335-, 1995

      3 Kononas TC, "The fate of suctioned and surgically removed fat after reimplantation for soft tissue augmentation: A volumetric and histologic study in the rabbit" 91 : 763-, 1993

      4 Illouz YG, "The fat cell ‘graft’: A new technique to fill depressions" 78 : 122-, 1986

      5 Illouz YG, "The Wet technique. In YG Illouz(Ed.) Body Sculpting by lipoplasty" Churchill Livingstone 124-, 1994

      6 Horl HW, "Technique for liposuction fat reimplantation and long term volume evaluation by magnetic resonance imaging" 6 : 248-, 1991

      7 Carpaneda CA, "Study of aspirated adipose tissue" 20 : 291-, 1996

      8 Hausberger FX, "Quantitive studies on development of autotransplants of immature adipose tissue of rats" 122 : 507-, 1955

      9 Gormley DE, "Quantitative assessment of augmentation therapy" 16 : 1147-, 1990

      10 Bastart JP, "Percutaneous adipose tissue biopsy by mini-liposuction for metabolic studies" 18 : 466-, 1994

      1 Peter BF, "Wetting solutions in aspirative lipoplasty: A plea for safety in liposuction" 19 : 379-, 1995

      2 John HM, "Viability of fat obtained by syringe suction lipectomy: Effects of local anesthesia with lidocaine" Luz MM et al:Viability of fat obtained by syringe suction lipectomy:Effects of local anesthesia with lidocaine.Aesth Plast Surg 19:335 19 : 335-, 1995

      3 Kononas TC, "The fate of suctioned and surgically removed fat after reimplantation for soft tissue augmentation: A volumetric and histologic study in the rabbit" 91 : 763-, 1993

      4 Illouz YG, "The fat cell ‘graft’: A new technique to fill depressions" 78 : 122-, 1986

      5 Illouz YG, "The Wet technique. In YG Illouz(Ed.) Body Sculpting by lipoplasty" Churchill Livingstone 124-, 1994

      6 Horl HW, "Technique for liposuction fat reimplantation and long term volume evaluation by magnetic resonance imaging" 6 : 248-, 1991

      7 Carpaneda CA, "Study of aspirated adipose tissue" 20 : 291-, 1996

      8 Hausberger FX, "Quantitive studies on development of autotransplants of immature adipose tissue of rats" 122 : 507-, 1955

      9 Gormley DE, "Quantitative assessment of augmentation therapy" 16 : 1147-, 1990

      10 Bastart JP, "Percutaneous adipose tissue biopsy by mini-liposuction for metabolic studies" 18 : 466-, 1994

      11 Smith V, "Morphological studies of human subcutaneous adipose tissue in vitro" 169 : 97-, 1971

      12 Hambley RM, "Microlipoinjection for the elevation of depressed full-thickness skin grafts of the nose" 18 : 963-, 1992

      13 Peer LA, "Loss of weight and volume in human fat grafts: With postulation of a“ cell survival theory.”" 5 : 217-, 1950

      14 Guerrerosantos J, "Long-term survival of free fat grafts in muscle: An experimental study in rats" 10 : 403-, 1996

      15 Coleman SR, "Long-term survival of fat transplants: Controlled demonstrations" 19 : 421-, 1995

      16 Rohrich RJ, "In search of improved fat transfer viability: A Quantitive analysis of the role of centrifugation and harvest site" 113 : 391-, 2004

      17 Schuller PS, "Improving the aesthetic aspect of soft tissue defects on the face using autologous fat transplantation" 12 : 12-, 1997

      18 Poznanski WJ, "Human fat cell precursors. Morphologic and metabolic differentiation in culture" 29 : 570-, 1973

      19 Edmund BJ, "Historical review and present status of free fat graft autotransplantation in plastic and reconstructive surgery" 83 : 372-, 1989

      20 Scarborough DA, "Fat transfer for aging skin: Techniques for rhytids" 16 : 651-, 1990

      21 Chajchir A, "Fat injection: Long-term follow-up" 20 : 291-, 1996

      22 Pereira LH, "Fat grafting of the buttocks and lower limbs" 20 : 409-, 1996

      23 Boris S, "Current concepts of fat graft survival: Histology of aspirated adipose tissue and review of literature" 26 : 1159-, 2000

      24 Novaes F, "Counting method of live fat cells used in liposuction procedures" 22 : 12-, 1998

      25 Dennis VH, "Comparision of viable cell yield from excised versus aspirated adipose tissue" 178 : 92-, 1994

      26 Nguyen A, "Comparative study of survival of autologous adipose tissue taken and transplanted by different techniques" 85 : 378-, 1990

      27 Stryer L, "Biochemistry, the third edition" W.H. Freeman and company 634-, 1988

      28 Lalikos JF, "Biochemical assessment of cellular damage after adipocyte harvest" 70 : 95-, 1997

      29 Paul S, "Autologous human fat grafting: Effect of harvesting and preparation techniques on adipocyte graft survival" 117 : 1836-, 2006

      30 Pinski KS, "Autologous fat transplantation: Long term follow-up" 18 : 179-, 1992

      31 Coleman W, "Autologous collagen? Lipocytic dermal augmentation. A histopathologic study" 19 : 1032-, 1993

      32 Lauber JS, "Application of the tumescent technique to hand augmentation" 16 : 369-, 1990

      33 Gonzalez AM, "An alternative method for harvest and processing fat grafts: An In Vitro study of cell viability and survival" 120 : 285-, 2007

      34 Justin HP, "An Experimental Model for improving fat graft viability and purity" 119 : 1571-, 2007

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      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.23 0.23 0.18
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.12 0.09 0.443 0.1
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