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MedChemExpressModel MBC-11 -332863-86-2

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MBC-11 is a first-in-class conjugate of the bone-targeting bisphosphonate etidronate covalently linked to the antimetabolite cytarabine (araC). MBC-11 has the potential for tumor-induced bone disease (TIBD) research[1].
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MBC-11

MCE China:MBC-11

Brand:MedChemExpress (MCE)

Cat. No.HY-107093

CAS:332863-86-2

Storage:Please store the product under the recommended conditions in the Certificate of Analysis.

Shipping:Room temperature in continental US; may vary elsewhere.

Description:MBC-11 is a first-in-class conjugate of the bone-targeting bisphosphonate etidronate covalently linked to the antimetabolite cytarabine (araC). MBC-11 has the potential for tumor-induced bone disease (TIBD) research.

In Vitro:MBC-11 shows similar activity profiles and significantly inhibits growth of all three cell lines between 10-8 and 10-4 M. MBC-11 decreases KAS-6/1 cell growth from approximately 56% at 10-8 M to 6% at 10-5 M[1].

In Vivo:MBC-11 (0.04 μg/day, s.c.) has a lower incidence of bone metastases of 40% compared to those treated with PBS (90%) or 0.04 μg/day zoledronate (100%). MBC-11 also significantly decreases bone tumor burden compared to PBS- or zoledronate-treated mice[1]. Weight gained in mice treated with up to 500 μg/day of MBC-11 is similar to the PBS treated group[1]. These results demonstrate that MBC-11 decreases bone tumor burden, maintains bone structure, and may increase overall survival, warranting further investigation as a treatment for tumor-induced bone disease (TIBD)[1].

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References:

[1]. Reinholz MM, et al. A promising approach for treatment of tumor-induced bone diseases: utilizing bisphosphonate derivatives of nucleoside antimetabolites. Bone. 2010 Jul;47(1):12-22.  [Content Brief]

[2]. Zinnen SP, et al. First-in-Human Phase I Study of MBC-11, a Novel Bone-Targeted Cytarabine-Etidronate Conjugate in Patients with Cancer-Induced Bone Disease. Oncologist. 2019 Mar;24(3):303-e102.  [Content Brief]

Brand introduction:
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•   More than 50,000 highly selective inhibitors and agonists are involved in various popular signaling pathways and disease areas;
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