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Preclinical Evaluation of the Supercritical Extract of Azadirachta Indica (Neem) Leaves In Vitro and In Vivo on Inhibition of Prostate Cancer Tumor Growth

机译:印A印Ne超临界提取物体外和体内抑制前列腺癌肿瘤生长的临床前评价

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摘要

Azadirachta indica, commonly known as neem, has gained worldwide prominence because of its medical properties, namely antitumor, antiviral, anti-inflammatory, antihyperglycemic, antifungal, and antibacterial activities. Despite these promising results, gaps remain in our understanding of the molecular mechanism of action of neem compounds and their potential for use in clinical trials. We investigated supercritical extract of neem leaves (SENL) for the following: molecular targets in vitro, in vivo efficacy to inhibit tumor growth, and bioactive compounds that exert antitumor activity. Treatment of LNCaP-luc2 prostate cancer cells with SENL suppressed dihydrotestosterone-induced androgen receptor and prostate-specific antigen levels. SENL inhibited integrin β1, calreticulin, and focal adhesion kinase activation in LNCaP-luc2 and PC3 prostate cancer cells. Oral administration of SENL significantly reduced LNCaP-luc2 xenograft tumor growth in mice with the formation of hyalinized fibrous tumor tissue, reduction in the prostate-specific antigen, and increase in AKR1C2 levels. To identify the active anticancer compounds, we fractionated SENL by high-pressure liquid chromatography and evaluated 16 peaks for cytotoxic activity. Four of the 16 peaks exhibited significant cytotoxic activity against prostate cancer cells. Mass spectrometry of the isolated peaks suggested the compounds with cytotoxic activity were nimbandiol, nimbolide, 2′,3′-dihydronimbolide, and 28-deoxonim-bolide. Analysis of tumor tissue and plasma samples from mice treated with SENL indicated 28-deoxonim-bolide and nimbolide as the bioactive compounds. Overall, our data revealed the bioactive compounds in SENL and suggested that the anticancer activity could be mediated through alteration in androgen receptor and calreticulin levels in prostate cancer.
机译:印za(Azadirachta indica),通常被称为印em,由于其医学特性,即抗肿瘤,抗病毒,抗炎,降血糖,抗真菌和抗菌活性,在世界范围内广为人知。尽管取得了这些令人鼓舞的结果,但在我们对印度em化合物的分子作用机理及其在临床试验中的应用潜力的理解上仍然存在差距。我们研究了印ne叶的超临界提取物(SENL)的以下方面:体外分子靶点,体内抑制肿瘤生长的功效以及发挥抗肿瘤活性的生物活性化合物。用SENL治疗LNCaP-luc2前列腺癌细胞会抑制二氢睾丸激素诱导的雄激素受体和前列腺特异性抗原水平。 SENL抑制LNCaP-luc2和PC3前列腺癌细胞中的整联蛋白β1,钙网蛋白和粘着斑激酶活化。口服SENL可明显减少小鼠LNCaP-luc2异种移植瘤的生长,形成透明化的纤维瘤组织,减少前列腺特异性抗原,并增加AKR1C2水平。为了鉴定活性抗癌化合物,我们通过高压液相色谱分离了SENL,并评估了16个峰的细胞毒性活性。 16个峰中的四个对前列腺癌细胞表现出显着的细胞毒活性。分离的峰的质谱分析表明具有细胞毒性活性的化合物是尼姆班二醇,尼姆波利特,2',3'-二氢酰亚胺酯和28-脱氧亚胺一布尔德。对SENL处理过的小鼠的肿瘤组织和血浆样品的分析表明,28-脱氧肟丁酯和nimbolide是生物活性化合物。总体而言,我们的数据揭示了SENL中的生物活性化合物,并表明抗癌活性可以通过前列腺癌中雄激素受体和钙网蛋白水平的改变来介导。

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