Enhancement of Gas Transfer Efficiency in an Intravascular Lung Assist Device using Blood Substitutes

혈관내의 폐보조장치에서 혈액대용물질을 사용한 기체전달 효율향상

  • 김기범 (전북대학교 공과대학 화학공학부·공학연구원 공업기술연구센터) ;
  • 박재관 (전북대학교 대학원 화학공학과) ;
  • 권대규 (전북대학교 메카트로닉스연구센터) ;
  • 정경락 (전북대학교 공과대학 화학공학부·공학연구원 공업기술연구센터) ;
  • 이삼철 (한려대학교 신소재공학과)
  • Published : 2003.10.01

Abstract

Intravascular oxygenation represents an attractive. alternative support modality for therapy originated with acute respiratory distress syndrome(ARDS). However. the clinical study concluded that more gas exchange was needed for intravascular oxygenation to be clinically effective in ARDS treatment. In this study, we tried to enhance gas exchange on the VIVLAD using microencapsulation of hemoglobin and perfluorocarbon emulsion(PFC emulsion). Blood gas measurements were performed by collecting blood samples from the arterial and venous sides of the circuit, and processing them in a blood/gas analyzer. The function of hemosome. blood/hemosome mixed solution. and blood/PFC emulsion mixed solution were tested by an oxygen dissociation curve using a blood/gas analyzer. As a result, it was shown that the oxygen transfer of hemosome and blood/hemosome mixed solution were higher than that of whole blood. Also. it showed that the carbon dioxide transfer of whole blood/PFC emulsion mixed solution was higher than that of others. Therefore, we determined that hemosome and PFC emulsion could increase oxygen transfer and carbon dioxide transfer. respectively.

혈관내 산화는 급성 호흡 곤란 증후군 (ARDS)의 치료를 위해 관심을 갖고 있는 호흡보조방법이다. 그러나 ARDS 치료에 효과적인 임상적용을 위해서는 더 많은 기체교환을 통한 혈관내 산화가 필요했다. 본 연구에서는 헤모글로빈의 미세캡슐화가 혈액의 손상을 줄여줌으로 미세캡슐화를 통하여 진동형 혈관내 폐보조장치 (VIVLAD)의 기체교환을 향상시키고자 시도하였으며 또한 perfluorocarbone 유화액(PFC 유화액)을 사용하여 기체교환을 향상시키고자 하였다. 혈액 기체 측정은 순환장치의 정맥혈과 동맥혈 시료 채취구에서 채취하여 혈액./기체 분석기를 이용하여 수행하였다. Hemosome. 혈액/hemosome 혼합액과 혈액/PFC 유화액 혼합액의 기능은 혈액/기체 분석기를 사용한 산소 해리 곡선에 의하여 평가되었다. 그 결과. hemosome과 혈액/hemosome 혼합액의 산소 전달은 전혈의 산소전달보다 각각 더 효과적이었으며 또한 PFC 유화액의 이산화탄소 전달속도는 다른 용액들보다 우수하였다. 그러므로 hemosome 용액과 PFC 유화액은 산소전달속도와 이산화탄소 전달속도를 각각 향상시킬 수 있으리라 판단하였다.

Keywords

References

  1. B.G. Hattler, P.C. Jhonson, P.J. Sawzik, F.D. Saffer, M Klain, L.W. Lund, G.D. Reeder, F.R. Walters, J.S. Goode and H.S. Borovetz, 'Respiratory dialysis: A new concept in pulmonary support', ASAIO J., Vol. 38, pp. M322-M325, 1992
  2. William J. Federspiel, Jeffrey L. William and Brack G. Hattler, 'Gas flow dynamics in hollow-fiber membranes', AlChE J., Vol. 42, No.7, pp. 2094-2099, 1996 https://doi.org/10.1002/aic.690420732
  3. B. Bagley, A. Bagley, J. Henrie, C. Froerer, J. Brohamer, J. Burkart and J.D. Mortensen, 'Quantitative gas transfer into and out of circulating venous blood by means of an intravenacaval oxygenator', ASAIO Transactions, Vol 37, pp. M413-M415, 1991
  4. S. Howlett, D. Dundas and Jr.D.C. Sabistion, 'Fluid fluorocarbon as oxygenator in experimental extracorporeal circulation', Archieves of Surgery. Vol. 91, p 643, 1965
  5. L.C. Clark and F. Gollan, 'Revival qf Mammals Breathing Organic Liquids Equilibrated with Oxygen at Atmospheric Pressure', Science, Vol 152, p. 1755,1966
  6. H.A. Sloviter and T. Kamimoto, 'Erythrocyte Substitute for Perfusion of Brain', Nature, Nov 4, p.458, 1967
  7. RP. Geyer, K. Taylor, and E.B. Duffett, 'Successful Complete Replacement of Blood of Living Rats with Artificial Substitutes', Fed. Proc., Vol. 32, pp. 927-929, 1973
  8. E.P. Wesseler, R. Iltis and L.C. Clark, 'The solubility of oxygen in highly fluorinated liquids', J. FluorineChem., Vol. 9, pp. 137-146, 1977
  9. F.De Venuto, T.F. Zuck, L.T.C., M.C., A.I. Zegna anc. W.Y. Moores, M. A. J., M. C.. 'Characteristics of stroma-free hemoglobine prepared by crystallization' J. Lab. Clin. Invest., Vol. 89, No.3, pp. 509-516, 1977
  10. G.R. Bartlett, 'Phosphorus assay in column chromatography', J. BioI. Chem., Vol. 234. pp. 466-468, 1959
  11. S.W. Hui, 'Preparation and purification of egg yolk phospholipid', Personal communication, See appendix I, II, 1989
  12. F. Szoka and D. Papahadjopoulos, 'Procedure for preparation of liposomes with large internal aqueous space and high capture by reverse-phase evaporation', Proc. Natl. Acad Sci(USA), Vol. 75, pp. 4194-4198, 1978
  13. J.D, Szebeni, E.E. Iorio, H. Hauser and K.H. Winterhalter, 'Encapsulation of hemoglobin in phospholipid Iiposome: Characterization and stability', Biochemistry, Vol. 24, pp. 2827-2831, 1985
  14. AAMI Standard: Cardionascular/Neurology Standards for Blood/Gas Exchanger Devices-(Oxygenators): August 14, 1998
  15. ISO/DIS 7199 International Standard: Cardiovascular Implantants and Artificial Organs-Blood-Gas Exchangers, 1996