TARGETED DELIVERY OF CYSTEINE PROTEINASE INHIBITORS TO LEISHMANIA
TARGETED DELIVERY OF CYSTEINE PROTEINASE INHIBITORS TO LEISHMANIA
批准号:
6099923
负责人:
DAVID G RUSSELL
金额:
$10.76万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
1998
资助国家:
美国
项目状态:
已结题
起止时间:
1998-05-01 至 2000-04-30
关键词:
2,4 dinitrophenol Leishmania Leishmania donovani Leishmania major antiprotozoal agents biotin carbohydrate receptor clearance rate cysteine endopeptidases disease /disorder model drug delivery systems drug design /synthesis /production endocytosis immunoelectron microscopy laboratory mouse ligands macrophage methotrexate analog microorganism disease chemotherapy nonhuman therapy evaluation phagocytes phagocytosis protease inhibitor receptor binding vesicle /vacuole
中文摘要
点击翻译按钮获取中文摘要
英文摘要
The leishmaniases are a group of morphologically-similar flagellates that
are transmitted by sandfly vector, survive within the phagocytes of the
vertebrate host and induce a spectrum of diseases of varying severity.
Leishmaniasis is more feared for its extreme tissue morbidity, its frequent
complications, and the inconvience and discomfort of its treatment, rather
than its levels of fatality. The mainline drugs against the parasite are
pentavalent antimonial compounds that often require hospitalization during
administration, and have complications due to toxicity. There is
therefore, an urgent need for alternative drug therapies for these
infections.
This Project proposes two mutually-supportive goals designed to produce a
new chemotherapy for leishmaniasis. The amastigote form of Leishmania
resides within the macrophage, in an acidic, hydrolytically-active
lysosomal compartment. This compartment may be accessed through the
endocytic network of the host cell. The first goal of this proposal is to
exploit the macrophage-specific nature of some of the endocytic receptors
on these phagocytes to facilitate selective delivery and concentration of
active compounds within the macrophage. As the macrophage is known to play
a role in clearance of drugs from the blood, one should be able to enhance
this behavior by complexing the drugs with ligands for the mannose/fucose
receptor, which is a macrophage-specific lectin. The efficiency of this
strategy will be evaluated with ligands coupled to reporter molecules such
as biotin or dinitrophenol. Delivery to the parasitophorous vacuole will
be examined by immunoelectron microscopy.
The second goal of the Project involves the exploitation of a demonstrated
selectivity that the cysteine proteinases of the Leishmania amastigote have
shown for certain peptidic substrates that are resistant to hydrolysis by
the cathepsins of the macrophage's lysosome. Using isolated phagosomes, we
have shown that the parasite enzymes exhibit a markedly different cleavage
site recognition, and can be inhibited by peptidoketones, which block
parasite growth. We intend to pursue these studies in the development of
parasite-specific cysteine proteinase inhibitors. These inhibitors will be
complexed with macrophage-specific ligands, identified in the first goal,
to produce an antileishmanial compound that will be delivered
preferentially to macrophages.
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海外基金