Kim Seong-Gon
Gangneung-Wonju National University, Gangneung, Republic of Korea.
Maxillofac Plast Reconstr Surg. 2025 May 26;47(1):12. doi: 10.1186/s40902-025-00465-w.
Nonessential amino acids (NEAAs) are traditionally regarded as dispensable because they can be synthesized endogenously from glucose-derived intermediates. Emerging evidence, however, shows that the capacity for de novo NEAA biosynthesis declines in aged tissues, rendering several of these molecules conditionally essential during periods of stress such as surgery or fracture repair.
In the cranio-maxillofacial arena - where bone and soft-tissue regeneration must occur in an environment already compromised by osteoporosis, multimorbidity, and restricted oral intake - insufficient NEAA supply may translate into delayed union, wound dehiscence, and heightened infection risk. This narrative review integrates biochemical, preclinical, and clinical data to map age-dependent changes in the serine/glycine, glutamine/glutamate, arginine/citrulline, cysteine/trans-sulfuration, and alanine cycles, examines their impact on osteogenesis and mucosal healing, and evaluates nutritional or pharmacological strategies to restore NEAA sufficiency. Particular attention is paid to serine-one-carbon metabolism, the intestinal-renal arginine axis, and redox-sensitive cysteine pathways, all of which are intimately linked to collagen deposition, osteoblast differentiation, and immune modulation.
We conclude that proactive optimization of NEAA status - through targeted supplementation or metabolic activation - represents a low-risk, biologically rational adjunct to enhance postoperative outcomes in geriatric maxillofacial patients.
非必需氨基酸(NEAAs)传统上被认为是可有可无的,因为它们可以由葡萄糖衍生的中间体在内源性合成。然而,新出现的证据表明,在衰老组织中,从头合成非必需氨基酸的能力会下降,这使得其中一些分子在手术或骨折修复等应激期间成为条件必需氨基酸。
在颅颌面领域,由于骨质疏松、多种疾病并存以及口服摄入量受限,骨和软组织再生必须在一个已经受损的环境中进行,非必需氨基酸供应不足可能导致愈合延迟、伤口裂开和感染风险增加。这篇叙述性综述整合了生化、临床前和临床数据,以描绘丝氨酸/甘氨酸、谷氨酰胺/谷氨酸、精氨酸/瓜氨酸、半胱氨酸/转硫和丙氨酸循环中与年龄相关的变化,研究它们对成骨和黏膜愈合的影响,并评估恢复非必需氨基酸充足性的营养或药理学策略。特别关注丝氨酸-一碳代谢、肠-肾精氨酸轴和氧化还原敏感的半胱氨酸途径,所有这些都与胶原蛋白沉积、成骨细胞分化和免疫调节密切相关。
我们得出结论,通过有针对性的补充或代谢激活来主动优化非必需氨基酸状态,是一种低风险、生物学上合理的辅助手段,可提高老年颌面患者的术后疗效。