Cyclosporine A: A review of current oral and intravenous delivery systems

被引:82
作者
Beauchesne, Pascal R. [1 ]
Chung, Nancy S. C. [1 ]
Wasan, Kishor M. [1 ]
机构
[1] Univ British Columbia, Fac Pharmaceut Sci, Vancouver, BC V6T 1Z3, Canada
关键词
D O I
10.1080/03639040601155665
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
As early as 1978, the immunosuppressive effect of cyclosporine A (CsA), a metabolite of the fungus Tolypocladium inflatum (Borel, 1989), was reported to be effective in inhibiting organ rejection in patients receiving kidney transplants from mismatched cadaver donors (Calne et al., 1978) and in the treatment of graft-versus-host disease in patients with acute leukemia following bone marrow transplants (Powles et al., 1978). Today, CsA is still indicated to prevent rejection following solid organ transplantations, prevent and treat graft-vs-host disease following bone marrow transplants, and has also been used in the treatment of autoimmune disease such as psoriasis, rheumatoid arthritis, and nephrotic syndrome (Canadian Pharmacists Association, 2006). The effectiveness of CsA is derived from its ability to specifically and reversibly inhibit immunocompetent lymphocytes in the Go and G, phase of the cell cycle. The T-helper cells are the main target, but suppression of the T-suppressor cells also occurs. The production and release of lymphokines, including interleukin-2 are also inhibited (Novartis, 2005a). CsA can be administered intravenously as well as orally in the form of a solution or a soft gelatin capsule. The following review will focus on the evolution of the emulsion-based oral formulations from the first generation as Sandimmune(R) to the second generation Neoral(R), both products of Novartis Pharmaceutical, as well as on the Sandimmune(R) commercial intravenous formulation. The potential of alternative delivery systems, including micelles, micro- and nanoparticles, and liposomes, will also be discussed.
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收藏
页码:211 / 220
页数:10
相关论文
共 50 条
[1]   CHARACTERIZATION, STABILITY AND IN-VIVO TARGETING OF LIPOSOMAL FORMULATIONS CONTAINING CYCLOSPORINE [J].
ALANGARY, AA ;
BAYOMI, MA ;
KHIDR, SH ;
ALMESHAL, MA ;
ALDARDIRI, M .
INTERNATIONAL JOURNAL OF PHARMACEUTICS, 1995, 114 (02) :221-225
[2]   Micelles of methoxy poly(ethylene oxide)-b-poly(ε-caprolactone) as vehicles for the solubilization and controlled delivery of Cyclosporine A [J].
Aliabadi, HM ;
Mahmud, A ;
Sharifabadi, AD ;
Lavasanifar, A .
JOURNAL OF CONTROLLED RELEASE, 2005, 104 (02) :301-311
[3]   Impact of physical properties of formulations on bioavailability of active substance: current and novel drugs with cyclosporine [J].
Andrysek, I .
MOLECULAR IMMUNOLOGY, 2003, 39 (17-18) :1061-1065
[4]  
ATKINSON K, 1982, LANCET, V2, P1165
[5]   Effect of grapefruit juice on Sandimmun Neoral® absorption among stable renal allograft recipients [J].
Bistrup, C ;
Nielsen, FT ;
Jeppesen, UE ;
Dieperink, H .
NEPHROLOGY DIALYSIS TRANSPLANTATION, 2001, 16 (02) :373-377
[6]   DIFFERENTIAL INHIBITION BY CYCLOSPORINS OF PRIMARY-ACTIVE ATP-DEPENDENT TRANSPORTERS IN THE HEPATOCYTE CANALICULAR MEMBRANE [J].
BOHME, M ;
BUCHLER, M ;
MULLER, M ;
KEPPLER, D .
FEBS LETTERS, 1993, 333 (1-2) :193-196
[7]  
BOREL JF, 1989, TRANSPL P, V21, P810
[8]  
CALNE RY, 1978, LANCET, V2, P1323
[9]  
Canadian Pharmacists Association, 2006, COMP PHARM SPEC
[10]   Multidrug-resistant human sarcoma cells with a mutant P-glycoprotein, altered phenotype, and resistance to cyclosporins [J].
Chen, G ;
Duran, GE ;
Steger, KA ;
Lacayo, NJ ;
Jaffrezou, JP ;
Dumontet, C ;
Sikic, BI .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1997, 272 (09) :5974-5982