Fadilah Nur Izzah Md, Rahman Mohd Basyaruddin Abdul, Yusof Loqman Mohamad, Mustapha Noordin Mohamed, Ahmad Haslina
Integrated Chemical Biophysics Research, Universiti Putra Malaysia, Serdang 43400 UPM, Selangor, Malaysia.
Department of Chemistry, Faculty of Science, Universiti Putra Malaysia, Serdang, Selangor 43400 UPM, Malaysia.
Pharmaceutics. 2021 Feb 1;13(2):193. doi: 10.3390/pharmaceutics13020193.
The standard treatment of open wounds via the direct usage of therapeutic agents is not without limitations with respect to healing. Small peptides can create a favorable milieu for accelerating the healing of wounds. This study presents the potential of a novel fatty acid conjugated tetrapeptide (palmitic acid-glycine-aspartic acid-proline-histidine; Palmitoyl-GDPH) in alleviating wound healing. Tetracycline was employed as a standard control drug following its significance in wound healing including biologically active and antimicrobial effects. The peptide in liquid form was applied on to a 4 cm full thickness wound surgically induced at the dorsum of Sprague Dawley (SD) rats. The in vivo wound treatment with Palmitoyl-GDPH for eighteen days, histologically demonstrated an almost perfect healing exhibited by increased re-epithelialization, enhanced collagen deposition, and diminished scar formation compared to the controls. In addition, the well-developed epidermal-dermal junction and ultimate stimulation of hair follicle-growth in the Palmitoyl-GDPH treated group indicated the wound to have healed as functionally viable tissues. In general, the much lower hemogram values in the Palmitoyl-GDPH group indicated that the ongoing healing is en route to an earlier recovery. Additionally, the liver, kidney, and pancreas function biomarkers being within normal limits indicated the relatively non-toxic nature of Palmitoyl-GDPH at the used dosage. These results indisputably supported the great potential of this newly synthesized Palmitoyl-GDPH to be used as an effective therapeutic agent for wound healing (this actually means creating a new wound).
通过直接使用治疗剂对开放性伤口进行的标准治疗在愈合方面并非没有局限性。小肽可以为加速伤口愈合创造有利环境。本研究展示了一种新型脂肪酸共轭四肽(棕榈酸 - 甘氨酸 - 天冬氨酸 - 脯氨酸 - 组氨酸;棕榈酰 - GDPH)在促进伤口愈合方面的潜力。四环素因其在伤口愈合中的重要性(包括生物活性和抗菌作用)而被用作标准对照药物。将液体形式的该肽应用于在Sprague Dawley(SD)大鼠背部手术诱导的4厘米全层伤口上。用棕榈酰 - GDPH进行为期18天的体内伤口治疗,组织学显示与对照组相比,伤口愈合几乎完美,表现为再上皮化增加、胶原沉积增强和瘢痕形成减少。此外,棕榈酰 - GDPH治疗组中发育良好的表皮 - 真皮连接以及毛囊生长的最终刺激表明伤口已愈合为功能上可行的组织。总体而言,棕榈酰 - GDPH组中低得多的血常规值表明正在进行的愈合正在朝着更早恢复的方向发展。此外,肝、肾和胰腺功能生物标志物在正常范围内表明在所使用剂量下棕榈酰 - GDPH相对无毒。这些结果无可争议地支持了这种新合成的棕榈酰 - GDPH作为伤口愈合有效治疗剂的巨大潜力(这实际上意味着创造一个新的伤口)。