Improved therapeutic benefits of doxorubicin by entrapment in anionic liposomes.
نویسندگان
چکیده
When used as drug carriers, anionic liposomes can reduce the chronic cardiac toxicity and increase the antileukemic activity of doxorubicin (DXN; Adriamycin). Continuing investigations, reported here, have now established the therapeutic benefits of this mode of drug delivery. Liposome encapsulation caused a prolonged elevation in DXN plasma levels and a 2-fold reduction in the exposure of cardiac tissue to the drug. This reduction, however, was not proportional to the substantial decrease in chronic heart toxicity observed in the earlier study. In vivo studies have demonstrated that the entrapped drug retains its full activity against Sarcoma 180 and significantly increases its action against Lewis lung carcinoma, as measured by reduced tumor volume. The increased antineoplastic activity was again not proportional to the increased association of drug with tumor tissue. The effect of liposome entrapment on the immune-suppressive activity of DXN was also examined to determine if factors other than the direct delivery of drug to tumor tissue might improve the therapeutic response. The suppression of the humoral immune response and peripheral leukocyte counts by free DXN was nearly abolished when the drug was administered in the liposome form. These experiments suggest that the improved therapeutic effect of encapsulation may be the outcome of three different mechanisms: (a) altered disposition into subcellular compartments, which reduces cardiotoxicity; (b) increased plasma drug exposure to tumor cells; and (c) significant reduction in the immune suppressive activity of DXN.
منابع مشابه
Poly(γ-glutamic acid)-coated lipoplexes loaded with Doxorubicin for enhancing the antitumor activity against liver tumors
The study was to develop poly-γ-glutamic acid (γ-PGA)-coated Doxorubicin (Dox) lipoplexes that enhance the antitumor activity against liver tumors. γ-PGA-coated lipoplexes were performed by electrostatistically attracting to the surface of cationic charge liposomes with anionic γ-PGA. With the increasing of γ-PGA concentration, the particle size of γ-PGA-coated Dox lipoplexes slightly increased...
متن کاملAntibody-mediated specific binding and cytotoxicity of liposome-entrapped doxorubicin to lung cancer cells in vitro.
Liposome entrapment of doxorubicin has been shown to reduce its cardiotoxicity in vivo and increase its therapeutic index. A further improvement in therapeutic index could be achieved through targeting of liposome-entrapped drug selectively to cancer cells. Monoclonal antibodies against the squamous lung cancer cell line KLN-205 have been ligated to the surface of long-circulating (Stealth) and...
متن کاملAntibody-mediated Specific Binding and Cytotoxicity of Liposome-entrapped Doxorubicin to Lung Cancer Cells in Vitro1
Liposome entrapment of doxorubicin has been shown to reduce its cardiotoxicity in vivo and increase its therapeutic index. A further im provement in therapeutic index could be achieved through targeting of liposome-entrapped drug selectively to cancer cells. Monoclonal anti bodies against the squamous lung cancer cell line KI N 205 have been ligated to the surface of long-circulating (Stealth) ...
متن کاملThe application of EDTA in drug delivery systems: doxorubicin liposomes loaded via NH4EDTA gradient
The applications of ethylenediaminetetraacetic acid (EDTA) have been expanded from the treatment of heavy metal poisoning to chelation therapies for atherosclerosis, heart disease, and cancers, in which EDTA reduces morbidity and mortality by chelating toxic metal ions. In this study, EDTA was used in a drug delivery system by adopting an NH4EDTA gradient method to load doxorubicin into liposom...
متن کاملImproved Therapeutic Benefits of Doxorubicin by Entrapment in Anionic
When used as drug carriers, anionic l iposomes can reduce the chronic cardiac toxici ty and increase the ant i leukemic activity of doxorubic in (DXN; Adriamycin). Cont inuing investigations, reported here, have now establ ished the therapeut ic benefi ts of this mode of drug delivery. L iposome encapsulat ion caused a prolonged elevation in DXN plasma levels and a 2fold reduct ion in the expos...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
- Cancer research
دوره 43 2 شماره
صفحات -
تاریخ انتشار 1983