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In Vivo Pharmacodynamic Evaluation of T-47D Cell Line Based Breast Cancer (CAT#: STEM-AE-0023-LGZ)

Introduction

Breast cancer treatments can be very effective, achieving survival rates of 90 percent or higher, especially when the disease is caught early. Treatment usually includes surgery and radiation therapy aimed at controlling disease in the breast, lymph nodes, and surrounding areas (local control) and systemic therapy aimed at treating and/or reducing the risk of malignancy spreading (metastasis) (oral or intravenous anticancer drugs). Anticancer drugs include endocrine (hormone) therapies, chemotherapy, and in some cases targeted biological therapies (antibodies).




Principle

In vivo activity is the gold standard for the evaluation of drug biological activity, and it is the first verification of non-human comprehensive activity. In vivo pharmacodynamic evaluation plays a decisive role in the confirmation of candidate molecules and the screening of clinical target indications, and is an indispensable link in the development of new drugs. We provide a variety of disease animal models including inflammation, immunity, metabolism, etc., to meet the needs of different new drug research and development projects of customers, and accept customized services.
In vivo pharmacodynamic evaluation, as the basic research of new drugs, is carried out on animals. It is to verify the effect of drugs with the comprehensive participation of a number of other factors, and to understand the effect of drugs on a certain part of the body by comparing and analyzing the animal signs, in vitro organs, blood components, histone expression and tissue changes before and after drug administration.

Applications

Breast Cancer

Procedure

1. Disease model construction.
2. Mice dosing.
3. Efficacy monitoring.
4. Biochemical detection of tissue samples.

Materials

• Sample Type: liquid or powder

Notes

Oncology efficacy Service package:
In vivo syngeneic model
In vivo CDX model
In vivo PBMC humanized model
In vivo transgenic mouse model
In vivo orthotropic or Metastasis tumor model
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