评估 Sprague Dawley 大鼠口服 Zileuton 纳米晶体配制的 BCS-II 药物后的粘膜免疫概况。

IF 3.6 3区 医学 Q3 NANOSCIENCE & NANOTECHNOLOGY Nanotoxicology Pub Date : 2023-12-01 Epub Date: 2024-01-18 DOI:10.1080/17435390.2023.2289940
Sangeeta Khare, Rajan Jog, Anshel Bright, Diane J Burgess, Sushanta K Chakder, Kuppan Gokulan
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引用次数: 0

摘要

纳米晶体药物制剂涉及几个关键的生产程序,这些程序会产生复杂的结构,从而提高药物的溶解度、溶出度和生物利用度,进而提高溶解度较低的生物制药分类系统(BCS)II 级和 IV 级药物的疗效。由于活性药物成分(API)的物理性质发生变化,已获批口服药物的纳米晶制剂可能需要进行额外的免疫毒性评估。在本研究中,我们选择了美国食品及药物管理局(FDA)批准的一种属于 BCS-II 级的药物齐留通(Zileuton)作为纳米晶体制剂。为了评估纳米晶体药物的疗效和粘膜免疫概况,我们使用灵活的口腔灌胃注射器给 10 周大的大鼠注射了含有单独原料药或纳米晶体制剂齐留通(NDZ)或物理混合物(PM)的胶囊。对照组包括未经处理的动物或经安慰剂处理的动物。给大鼠服用试验配方,剂量为 30 毫克/千克体重(bw),每天一次,连续 15 天。与使用微米级原料药的大鼠相比,使用 NDZ 或 PM 的大鼠的原料药含量大约低 4.0 倍(7.5 毫克/千克体重)。治疗结束时,对粘膜(肠组织)和循环细胞因子进行了测定。免疫反应显示,NDZ 降低了回肠粘膜中的几种促炎细胞因子(白细胞介素-18、肿瘤坏死因子-α 和 RANTES [活化时调节,正常 T 细胞表达和分泌])。在微粒大小的原料药和 PM 处理的大鼠身上也观察到了类似的细胞因子谱。细胞因子的产生情况表明,所有实验组雌性大鼠的 IL-1β 和 IL-10 的产生量都显著增加。此外,NDZ 对局部和全身的促炎细胞因子都有免疫抑制作用,这与微粒大小 API 处理大鼠的反应相似。这些研究结果表明,NDZ 能显著降低几种促炎细胞因子,而且免疫毒性较低,这可能与纳米晶体配方有关。因此,纳米晶体制剂更适合口服给药,因为它具有更好的疗效、安全性和低毒性。
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Evaluation of mucosal immune profile associated with Zileuton nanocrystal-formulated BCS-II drug upon oral administration in Sprague Dawley rats.

Nanocrystal drug formulation involves several critical manufacturing procedures that result in complex structures to improve drug solubility, dissolution, bioavailability, and consequently the efficacy of poorly soluble Biopharmaceutics Classification System (BCS) II and IV drugs. Nanocrystal formulation of an already approved oral drug may need additional immunotoxic assessment due to changes in the physical properties of the active pharmaceutical ingredient (API). In this study, we selected Zileuton, an FDA-approved drug that belongs to BCS-II for nanocrystal formulation. To evaluate the efficacy and mucosal immune profile of the nanocrystal drug, 10-week-old rats were dosed using capsules containing either API alone or nanocrystal formulated Zileuton (NDZ), or with a physical mixture (PM) using flexible oral gavage syringes. Control groups consisted of untreated, or placebo treated animals. Test formulations were administrated to rats at a dose of 30 mg/kg body weight (bw) once a day for 15 days. The rats treated with NDZ or PM had approximately 4.0 times lower (7.5 mg/kg bw) API when compared to the micron sized API treated rats. At the end of treatment, mucosal (intestinal tissue) and circulating cytokines were measured. The immunological response revealed that NDZ decreased several proinflammatory cytokines in the ileal mucosa (Interleukin-18, Tumor necrosis Factor-α and RANTES [regulated upon activation, normal T cell expressed and secreted]). A similar pattern in the cytokine profile was also observed for the micron sized API and PM treated rats. The cytokine production revealed that there was a significant increase in the production of IL-1β and IL-10 in the females in all experimental groups. Additionally, NDZ showed an immunosuppressive effect on proinflammatory cytokines both locally and systemically, which was similar to the response in micron sized API treated rats. These findings indicate that NDZ significantly decreased several proinflammatory cytokines and it displays less immunotoxicity, probably due to the nanocrystal formulation. Thus, the nanocrystal formulation is more suitable for oral drug delivery, as it exhibited better efficacy, safety, and reduced toxicity.

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来源期刊
Nanotoxicology
Nanotoxicology 医学-毒理学
CiteScore
10.10
自引率
4.00%
发文量
45
审稿时长
3.5 months
期刊介绍: Nanotoxicology invites contributions addressing research relating to the potential for human and environmental exposure, hazard and risk associated with the use and development of nano-structured materials. In this context, the term nano-structured materials has a broad definition, including ‘materials with at least one dimension in the nanometer size range’. These nanomaterials range from nanoparticles and nanomedicines, to nano-surfaces of larger materials and composite materials. The range of nanomaterials in use and under development is extremely diverse, so this journal includes a range of materials generated for purposeful delivery into the body (food, medicines, diagnostics and prosthetics), to consumer products (e.g. paints, cosmetics, electronics and clothing), and particles designed for environmental applications (e.g. remediation). It is the nano-size range if these materials which unifies them and defines the scope of Nanotoxicology . While the term ‘toxicology’ indicates risk, the journal Nanotoxicology also aims to encompass studies that enhance safety during the production, use and disposal of nanomaterials. Well-controlled studies demonstrating a lack of exposure, hazard or risk associated with nanomaterials, or studies aiming to improve biocompatibility are welcomed and encouraged, as such studies will lead to an advancement of nanotechnology. Furthermore, many nanoparticles are developed with the intention to improve human health (e.g. antimicrobial agents), and again, such articles are encouraged. In order to promote quality, Nanotoxicology will prioritise publications that have demonstrated characterisation of the nanomaterials investigated.
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