California Medical Innovations Institute, San Diego, CA, USA.
Cook Medical, Inc., Bloomington, IN, USA.
Sci Rep. 2020 Apr 7;10(1):6014. doi: 10.1038/s41598-020-63049-w.
Diverticulosis results from the development of pouch-like structures, called diverticula, over the colon. The etiology of the disease is poorly understood resulting in a lack of effective treatment approaches. It is well known that mechanical stress plays a major role in tissue remodeling, yet its role in diverticulosis has not been studied. Here, we used computational mechanics to investigate changes in stress distribution engendered over the colon tissue by the presence of a pouch-like structure. The objectives of the study were twofold: (1) observe how stress distribution changes around a single pouch and (2) evaluate how stress elevation correlates with the size of the pouch. Results showed that high stresses are concentrated around the neck of a pouch, and their values and propagation increase with the size of the pouch neck rather than the pouch surface area. These findings suggest that stress distribution may change in diverticulosis and a vicious cycle may occur where pouch size increases due to stress elevation, which in turn elevates stress further and so on. Significant luminal pressure reduction would be necessary to maintain stress at normal level according to our results and therapeutic approaches aimed directly at reducing stress should rather be sought after.
憩室病是由于结肠上出现袋状结构(称为憩室)而引起的。该疾病的病因尚不清楚,因此缺乏有效的治疗方法。众所周知,机械应力在组织重塑中起着重要作用,但它在憩室病中的作用尚未得到研究。在这里,我们使用计算力学来研究在存在袋状结构的情况下,结肠组织上的应力分布的变化。该研究的目的有两个:(1)观察单个憩室周围的应力分布如何变化;(2)评估应力升高与憩室大小的相关性。结果表明,高应力集中在憩室颈部周围,其值和传播随着憩室颈部的大小而增加,而不是随着憩室表面积的增加而增加。这些发现表明,在憩室病中,应力分布可能会发生变化,并且可能会出现一个恶性循环,即由于应力升高导致憩室增大,而这反过来又会进一步升高应力,如此循环往复。根据我们的结果,需要显著降低管腔压力以将应力维持在正常水平,因此应该寻求直接降低应力的治疗方法。