Importance of Intracellular pH in Determining the Uptake and Efficacy of the Weakly Basic Chemotherapeutic Drug, Doxorubicin
نویسندگان
چکیده
Low extracellular pH (pH(e)), that is characteristic of many tumours, tends to reduce the uptake of weakly basic drugs, such as doxorubicin, thereby conferring a degree of physiological resistance to chemotherapy. It has been assumed, from pH-partition theory, that the effect of intracellular pH (pH(i)) is symmetrically opposite, although this has not been tested experimentally. Doxorubicin uptake into colon HCT116 cells was measured using the drug's intrinsic fluorescence under conditions that alter pH(i) and pH(e) or pH(i) alone. Acutely, doxorubicin influx across the cell-membrane correlates with the trans-membrane pH-gradient (facilitated at alkaline pH(e) and acidic pH(i)). However, the protonated molecule is not completely membrane-impermeant and, therefore, overall drug uptake is less pH(e)-sensitive than expected from pH-partitioning. Once inside cells, doxorubicin associates with slowly-releasing nuclear binding sites. The occupancy of these sites increases with pH(i), such that steady-state drug uptake can be greater with alkaline cytoplasm, in contradiction to pH-partition theory. Measurements of cell proliferation demonstrate that doxorubicin efficacy is enhanced at alkaline pH(i) and that pH-partition theory is inadequate to account for this. The limitations in the predictive power of pH-partition theory arise because it only accounts for the pH(i)/pH(e)-sensitivity of drug entry into cells but not the drug's subsequent interactions that, independently, show pH(i)-dependence. In summary, doxorubicin uptake into cells is favoured by high pH(e) and high pH(i). This modified formalism should be taken into account when designing manoeuvres aimed at increasing doxorubicin efficacy.
منابع مشابه
ZnO nanofluids for the improved cytotoxicity and cellular uptake of doxorubicin
Objective(s): Combination anticancer therapy holds promise for improving the therapeutic efficacy of chemotherapy drugs such as doxorubicin (DOX) as well as decreasing their dose-limiting side effects. Overcoming the side effects of doxorubicin (DOX) is a major challenge to the effective treatment of cancer. Zinc oxide nanoparticles (ZnO NPs) are emerging as potent tools for a wide variety of b...
متن کاملpH and drug resistance. II. Turnover of acidic vesicles and resistance to weakly basic chemotherapeutic drugs.
Resistance to chemotherapeutic agents is a major cause of treatment failure in patients with cancer. The primary mechanism leading to a multidrug-resistant phenotype is assumed to be plasma-membrane localized overexpression of drug efflux transporters, such as P-glycoprotein (P-gp). However, acidic intracellular organelles can also participate in resistance to chemotherapeutic drugs. In this st...
متن کاملEffect of Curcumin on Doxorubicin-induced Cytotoxicity in H9c2 Cardiomyoblast Cells
Objective(s) Doxorubicin (DOX), a widely used chemotherapeutic agent can give rise to serve cardiotoxicity by inducing apoptosis. Curcumin, the active compound of the rhizome of Curcuma longa L. has anti-inflammatory, antioxidant and anti-proliferative activities. Curcumin has been identified to increase cytotoxicity in several cancer cell lines in combination with DOX, but there is no study a...
متن کاملارائه رویکردی نوین جهت سنتز، درونگیری داروهای آب دوست و ارزیابی فیزیکوشیمیایی نانوسامانه لیپوزومی حساس به pH؛ بهبود کارایی درمانی داروی دوکسوربیسین با هدف اثر گذاری بر درمان سرطان استخوان و کاهش اثرات جانبی دوکسوربیسین
Introduction: Cancer is one of the most harmful disease throughout the world. Doxorubicin is an anti-cancer agent, used in the treatment of various types of the cancer such as bone cancer. There are several adverse effects related to clinical usage of Doxorubicin for long time. The present study aimed to investigate the reducing side effects and enhancing the therapeutic effect by liposomal car...
متن کاملSynthesis and characterization of a multifunctional gold-doxorubicin nanoparticle system for pH triggered intracellular anticancer drug release.
A nanoparticle drug carrier system has been developed to alter the cellular uptake and chemotherapeutic performance of an available chemotherapeutic drug. The system comprises of a multifunctional gold nanoparticle based drug delivery system (Au-PEG-PAMAM-DOX) as a novel platform for intracellular delivery of doxorubicin (DOX). Spherical gold nanoparticles were synthesized by a gold chloride re...
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:
دوره 7 شماره
صفحات -
تاریخ انتشار 2012