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1.
Bourget Effects of oral administration of artificials cells immobilized phenylalanine ammonia-lyase on intestinal amino acids of phenylketonuric rats // Biomater. Actif. Cells, and Artif. Organs, 1989. Vol. 17, N 2.-С.161-181

2.
Chang T.M.S. The role of biotechnology in bioartificial or hybrid artificial cells and organs // Biomater., Artif. Cells, and Artif. Organs., 1988. Vol. 16, N 4.-С.V-VI

3.
Chang Thomas M.S. Preparation and characterisation of xanthine oxidase immobilised by microencapsulation in artificial cells for the removal of hypoxanthine // Biomater. Artif. Cells. and Artif. Organs, 1989. Vol. 17, N 5.-С.611-616

4.
Chang Pharmaceutical and therapeutic applications of artificial cells including microencapsulation // Eur. J. Pharm. and Biopharm., 1998. Vol. 45, N 1.-С.3-8

5.
Could the ribocell be a feasible proto-cell model? // Orig. Life and Evol. Bios., 2010. Vol. 40, N 4-5.-С.459-464

6.
Could the ribocell be a feasible proto-cell model? // Orig. Life and Evol. Bios., 2010. Vol. 40, N 4-5.-С.459-464

7.
Dayton Cells by design // New. Sci., 1989. Vol. 122, N 1667.-С.42-44

8.
Engineering an artificial amoeba propelled by nanoparticlet riggered actin polymerization // Nanotechnology, 2009. Vol. 20, N 8.-С.085101/1-085101/8

9.
Gu Conversion of ammonia of urea into essential amino acids, L-leucine, L-valine, and L-isoleucine using artificial cells containing an immobilized multienzyme system and dextran-NAD+. L-lactic dehydrogenase for coenzyme recycling // Appl. Biochem. and Biotechnol., 1990. Vol. 26, N 2.-С.115-124

10.
Gu Production of essential L-branched-chain amino acids in bioreactors containing artificial cells immobilized multienzyme systems and dextran-NAD+ // Biotechnol. and Bioeng., 1990. Vol. 36, N 3.-С.263-269

11.
Gu Production of essential L-branchedchain amino acids in bioreactors containing artificial cells immobilized multienzyme systems and dextran - NAD+ // Biotechnol. and Bioeng., 1990. Vol. 36, N 3.-С.263-269

12.
Haraguchi Development of ICT technologies using biological cells // J. Nat. Inst. Inf. and Commun. Technol., 2013. Vol. 60, N 2.-С.37-40

13.
Luisi On the minimal cell // Orig. Life and Evol. Bios., 2010. Vol. 40, N 4-5.-С.464-466

14.
Luisi On the minimal cell // Orig. Life and Evol. Bios., 2010. Vol. 40, N 4-5.-С.464-466

15.
Matsubayashi In vitro synthesis of the E.coli sec translocon from DNA // Angew. Chem. Int. Ed., 2014. Vol. 53, N 29.-С.7535-7538

16.
Prakash S. Live immobilised cells as new therapeutics // J. Drug Deliv. Sci. and Technol., 2008. Vol. 18, N 1.-С.3-14

17.
Saraniti Artificial cells. Designing biomimetic nanomachines // Nature Nanotechnol., 2008. Vol. 3, N 11.-С.647-648

18.
XI Congress of the International Society for Artificial Cells, Blood Substitutes and Immobilizatation Biotechnology (ISABI), Boston, Mass., July 24-27, 1994: Abstr. // Artif. Cells, Blood Substitut. and Immobilizat. Biotechnol., 1994. Vol. 22, N 5.-С.XIX-XXV, 1-177

19.
Xu Designing artificial cells to harness the biological ion concentration gradient // Nature Nanotechnol., 2008. Vol. 3, N 11.-С.666-670

20.
Yomo Constructive approach to proto-cellular life // Orig. Life and Evol. Bios., 2010. Vol. 40, N 4-5.-С.444-445

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