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Lipophilization of somatostatin analog RC-160 improves its bioactivity and stability.

机译:生长抑素类似物RC-160的脂化可改善其生物活性和稳定性。

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PURPOSE: Acromegaly is a symptomatically disabling condition, resulting from a growth hormone (GH) secreting pituitary tumor. The somatostatin analog RC- 160 is known to potently inhibit hypersecretion of GH, from pituitary adenomas. However, the therapeutic potential of RC-160, is limited by its short serum half life. To overcome this limitation, fatty acids with carbon chain lengths ranging from 4 to 18 were conjugated to RC-160. METHODS: The GH-inhibitory activity of these lipopeptides, as well as their binding profile to somatostatin receptors, on the rat pituitary adenoma cell line GH3 was studied in vitro. The relative stability of lipophilized RC-160 towards degradation by crude papaya protease was also determined. RESULTS: The long chain lipopeptides, like myristoyl-RC-160 (carbon chain length = 14) were found to exhibit greater receptor affinity and GH-inhibitory activity, as compared to their counterparts of lower chain lengths. However, the receptor affinity and GH-inhibitory activity of stearoyl-RC-160 (carbon chain length = 18), was found to lower than RC-160 and its lipophilized derivatives. Unlike RC-160, the myristoylated derivative was found to have significantly greater resistance to protease and serum degradation (p < 0.01). CONCLUSIONS: Lipophilization of RC-160 with long chain fatty acids improves its stability and GH-inhibitory activity. The activity of lipophilized RC-160 seems to increase with increasing hydrophobicity of the lipopeptide, and reaches a maxima at myristoyl-RC-160 for GH3. Hence, optimizing the hydrophobicity should be an important consideration governing the design and synthesis of bioactive lipopeptides.
机译:目的:肢端肥大症是一种有症状的致残性疾病,由分泌垂体瘤的生长激素(GH)引起。已知生长抑素类似物RC-160有效抑制垂体腺瘤中GH的过度分泌。但是,RC-160的治疗潜力受到其血清半衰期短的限制。为克服此限制,将碳链长度为4至18的脂肪酸与RC-160偶联。方法:体外研究了这些脂肽对大鼠垂体腺瘤细胞GH3的GH抑制活性及其与生长抑素受体的结合情况。还确定了亲脂的RC-160对粗木瓜蛋白酶降解的相对稳定性。结果:与较低链长的类似物相比,长链脂肽(如肉豆蔻酰-RC-160(碳链长= 14))表现出更大的受体亲和力和GH抑制活性。但是,发现硬脂酰-RC-160(碳链长= 18)的受体亲和力和GH抑制活性低于RC-160及其脂化衍生物。与RC-160不同,肉豆蔻酰化衍生物被发现对蛋白酶和血清降解的抵抗力更大(p <0.01)。结论:使用长链脂肪酸对RC-160进行脂化可改善其稳定性和GH抑制活性。脂化的RC-160的活性似乎随着脂肽疏水性的增加而增加,并在GH的肉豆蔻酰RC-160处达到最大值。因此,优化疏水性应该是控制生物活性脂肽的设计和合成的重要考虑因素。

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