In vivo induction for enhanced function of isolated hepatocytes

Chemistry: molecular biology and microbiology – Animal cell – per se ; composition thereof; process of... – Method of regulating cell metabolism or physiology

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C424S093700

Reexamination Certificate

active

06699716

ABSTRACT:

FIELD OF THE INVENTION
The field of the invention is cell culture and medical biotechnology, particularly hepatocyte cell cultures used in liver assist devices for treating a patient with liver disease. Hepatocyte cells are induced in vivo, procured from the liver organ, cultured and incorporated in a device to treat a patient via the bloodstream to provide hepatic function. The hepatocyte isolation methods of the invention provide enhanced cell function that extends the functionality of the cells in the course of treating the patient.
BACKGROUND OF THE INVENTION
Extracorporeal liver assist devices (LAD) have been proposed as a treatment for patients in acute or fulminant liver failure. The LAD would function as a temporary support designed to provide hepatic function until liver transplantation or the regeneration of the patient's own liver. The LAD incorporates a bioreactor containing isolated porcine hepatocytes that are expected to detoxify substances in the circulating plasma of patients in liver failure. However, one of the challenges in using isolated hepatocytes is that many of these differentiated activities are transient, lasting only hours to a few days in culture (Nishibe, Y, and Hirata, M.
Induction of cytochrome P
-450
isozymes in cultured monkey hepatocytes.
Int J Biochem Cell Bio. 27:3:279-285. 1995. Jauregui, H O, Ng, S F, Gann, K L and Waxman, D J.
Xenobiotic induction of P
-450
PB
-4 (IIB1)
and P
-450
c
(
IA
1)
and associated monooxygenase activities in primary cultures of adult rat hepatocytes. Xeno,
21(9):1091-106. 1991. Niak, S, Trenkler, D, Santangini, H, Pan, J and Jauregui, H O.
Isolation and culture of porcine hepatocyte for artificial liver support.
Cell Trans 5:107-115, 1996.) These functional detoxification activities exist as a family of enzymes, including cytochrome P450 isoenzymes, with each enzyme responsible for metabolism of specific substrates.
While the roles of hepatocytes in a LAD are multifold, one of their most critical functions is detoxification mediated by detoxification enzymes. Therefore, the maintenance of P450 cytochrome and other detoxification activity of hepatocyte cultures is of interest in the successful treatment of fulminant hepatic failure with a liver assist device.
The method of the invention increases enzyme activity in normal hepatocytes as much as 100-fold or more and that enhanced activity is maintained for at least one week in culture. This sustained level of detoxification activity from in vivo induction methods is significantly higher than levels found in non-induced hepatocytes or those obtained using in vitro induction methods. The cells maintain this level of function when incorporated in bioreactor culture to produce cell products and metabolize toxic substances. The invention described here would serve the medical community by increasing the detoxification capabilities of hepatocytes to be used therapeutically when the bioreactor is used as, or incorporated into, a liver assist device.
SUMMARY OF THE INVENTION
The invention features a liver cell culture comprising hepatocytes that have increased functional enzyme activity when isolated from a liver of a donor that had been administered at least one induction agent in vivo prior to isolation of hepatocyte cells from the liver. The induced hepatocytes are used in a bioreactor and cultured to produce hepatocyte cell products or metabolize toxins added to the culture, or both. In the preferred embodiment, the bioreactor is, or is an integral part of, a liver assist device used to treat a patient in need of liver assist. In another preferred embodiment at least two cultures of hepatocytes from different isolations induced by different induction agents may be mixed or used together in a bioreactor to have a bioreactor that exhibits a wider range of increased functional enzyme activity.


REFERENCES:
patent: 5030105 (1991-07-01), Kuri-Harcuch et al.
patent: 5445956 (1995-08-01), Hammock et al.
patent: 5466696 (1995-11-01), Woolf
patent: 5506131 (1996-04-01), Harris et al.
patent: 5576207 (1996-11-01), Reid et al.
patent: 5602026 (1997-02-01), Dunn et al.
patent: 5658797 (1997-08-01), Bader
patent: 5866420 (1999-02-01), Talbot et al.
patent: 5869243 (1999-02-01), Jauregui et al.
patent: 5942436 (1999-08-01), Dunn et al.
patent: 6127117 (2000-10-01), Morris et al.
patent: 6394812 (2002-05-01), Sullivan et al.
patent: 96/34087 (1996-10-01), None
Baron et al. Effects of 3-methylcholanthrene, &bgr;-naphthoflavone and phenobarbital on the 3-methylcholanthrene-inducible isozyme of cytochrome p-450 within centrilobular, midzonal and periportal hepatocytes (1982) J. Biol. Chem., vol. 257, No. 2, pp. 953-957.
Morel et al. Preferntial increase of glutathione s-transferase class &bgr; transcripts in cultured human hepatocytes by phenobarbital, 3-methylcholanthrene, and dithiolethiones (1993) Cancer Research, vol. 53, pp. 231-234.
Nishibe et al., Effects of phenobarbital and other model inducers on cytochrome p450 isozymes in primary culture of dog hepatocytes (1993) Xenobiotica, vol. 23, No. 6, pp. 681-682.
van't Klooster et al., Cytochrome p450 induction and metabolism of alkoxyresorufins, ethylmorphine and testosterone in cultured hepatocytes from goats, sheep and cattle (1993) Biochemical Pharmacology, vol. 46, No. 10, pp. 1781-1790.
Monshouwer et al., Characterization of cytochrome p450 isoenzymes in primary cultures of pig hepatocytes (Dec. 1998) Toxicology in Vitro, vol. 12, pp. 715-723.
Silva et al., Induction of cytochrome-p450 in cryopreserved rat and human hepatocytes (Jun. 1, 1999) Chemico-Biological Interactions, vol. 121, pp. 49-63.
Cottrell et al., Strain specific enhancement or inhibition of coumarin hepatotoxicity in mice following pretreatment with two different liver enzyme inducing agents (1996) Fundamental and Applied Toxicology, vol. 34, pp. 47-55.
Asaka et al., Localization of xenobiotic responsive element binding protein in rat hepatocyte nuclei after methylcholanthrene administration as revealed by in situ southwestern hybridization (1998) J. of Histrochem. & Cytochem., vol. 46, No. 7, pp. 825-832.
Oinonen et al., Pretranslational induction of cytochrome P4501 A enzymes by &bgr;-napthoflavone and 3-methylcholanthrene occurs in different liver zones (1994) Biochemical Pharmacology, vol. 48, No. 12, pp. 2189-2197.
Seglen, P.O.;Preparation of isolated rat liver cells;inMethods in Cell Biology(DM Prescott, ed.), vol. 13, Academic Press (NY, NY); pp. 29-83, (1976).
Thomas, P.E. et al.;Induction of two immunochemically related rat liver cytochrome P-450 isozymes, cytochromes P-450c and P-450d, by structurally diverse xenobiotics;Journal of Biological Chemistry; 258(7)4590-4598, (1983).
Jones E.A., et al.;Hepatic encephalopathy and benzodiazepine receptor ligands;inHepatic Encephalopathy: Pathophysiology and Treatment,(Butterworth and Layrargues eds.), Humana Press (Clifton, NJ); pp. 273-286, (1989).
Jauregui, H.O., et a.;Xenobiotic induction of P-450 PB-4(IIB1)and P-450c(IA1)and associated monooxygenase activities in primary cultures of adult rat hepatocytes;Xenobiotica; 21(9):1091-1106, (1991).
Nyberg S., et al.;Pharmacokinetic analysis verifies P450 function during in vitro and in vivo application of a bioartificial liver;ASAIO Journal; pp. M252-M256; 1993.
Nishibe, Y. et al.;Induction of cytochrome P-450 isoenzymes in cultured monkey hepatocytes;Int. J. Biochem Cell Biol.; 27(3)279-285, (1995).
Naik, S., et al.;Isolation and culture of porcine hepatocytes for artificial liver support;Cell Transplantation; 5(1):107-115, (1996).
Bhatia, S.N., et al.;Microfabrication of Hepatocyte/Fibroblast co-cultures: Role of Homotypic cell interactions;Biotechnol. Prog.; 14:378-387, (1998).
Bhatia, S.N., et al.;Effect of cell-cell interactions in preservation of cellular phenotype: cocultivation of hepatocytes and nonparenchymal cells;FASEB; 13:1883-1900, (1999).

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