Binge Eating Disorder Signs and Treatment in Adults and Kids

Binge Eating Disorder, or BED, is one of the eating disorders I screen for most often in practice. Clinicians define it as repeated episodes of eating a large amount of food in a short period of time while feeling a loss of control during the episode. BED involves episodes that feel compulsive: the person cannot stop eating even when full or uncomfortable. This goes well beyond a second helping at dinner or an indulgent dessert.

The diagnostic criteria for BED require both that large amounts of food are consumed in a discrete time frame and that there is a sense of loss of control while eating. The episodes are also linked to behaviors such as eating more rapidly than normal, eating until uncomfortably full, eating when not hungry, eating alone because of embarrassment, and feeling disgusted or guilty afterward. At least three of those behaviors must be present. The episodes need to occur at least once a week for three months, cause distress, and they are not followed by purging behaviors like in bulimia.

Here’s a hypothetical that illustrates the pattern: someone sits down in the evening and works through an entire pizza and a half-gallon of ice cream in under two hours, not from hunger but because they can’t stop. They feel physically ill afterward. Ashamed, too. The cycle repeats weekly or more often. I’ve seen a real version of this on video visits. One of my patients was managing things with intermittent fasting, and it worked in the sense that the scale moved, but every time the eating window opened back up, they took in way more calories than they needed. The fast itself was setting up the binge.

Children complicate this picture. For kids under 12, researchers have proposed a related diagnosis called Loss of Control Eating Disorder, or LOC-ED (Tanofsky-Kraff et al., 2008). The issue is that children may not consume amounts of food that adults would consider objectively large, but they still experience the same loss of control. In this group, the definition focuses on the subjective sense of being unable to stop eating. The proposed criteria mirror those of BED but apply specifically to children younger than 12. The episodes still need to happen at least once a week for three months and cause distress.

Picture a hypothetical case in pediatrics: a 10-year-old who sneaks into the kitchen at night, eats snack foods quickly, and can’t stop once started. The amount might look modest by adult standards. For a child, it’s significant. What matters is the loss of control, not the portion size. Wrappers hidden in the trash. A refusal to eat breakfast the next morning. Those are often the only clues a parent gets.

Treatment is available for both BED and LOC-ED. For adults with BED, the most evidence supports cognitive behavioral therapy, which helps patients identify triggers, restructure eating patterns, and address guilt and shame. Interpersonal therapy has also been shown to help, especially when social stress is a driver. Some patients benefit from medications. SSRIs have modest benefit for binge frequency, and lisdexamfetamine is the only medication currently approved by the FDA for BED in adults. Nutritional counseling and structured meal planning are usually part of the approach.

I should be direct about where I actually fit into this picture. I don’t manage BED treatment myself. Real treatment leans heavily on behavioral health, and in my current telemedicine positions I don’t have the coordination with a therapist or eating-disorder specialist that this really requires. What I do is screen for it on video visits: ask the direct questions, name what I’m seeing, and refer out from there.

For children with LOC-ED, treatment recommendations are less formalized since the diagnosis itself is still considered research-based. The focus is often on family-based behavioral therapy, involving parents in setting up structured eating schedules and reducing situations where loss of control is most likely to occur. Addressing mood or anxiety symptoms is important, since these are often linked to eating episodes. Nutrition support is also key, both for the child and for parents trying to guide food choices. Medications are not first-line in children.

Recognizing BED or LOC-ED is important because both conditions are linked to higher rates of obesity, depression, and medical complications if untreated. Many people don’t come forward because of shame or because they don’t realize their pattern is a diagnosable disorder. Asking direct questions about eating behaviors, especially around loss of control, can uncover these conditions and open the door to treatment.

If this description fits you or someone you know, talk with a healthcare provider. Early recognition, especially in children, can change the trajectory and reduce the risk of chronic problems.

Scott Rennie, D.O.
Board Certified in Obesity Medicine and Family Medicine

This blog is for educational purposes only and does not constitute individual medical advice. Always consult your own physician before making changes to your health, medications, or treatment plan.

References:

Allison KC, Tarves EP. Treatment of night eating syndrome. Psychiatr Clin North Am. 2011;34(4):785-796. doi:10.1016/j.psc.2011.08.002

McCuen-Wurst C, Ruggieri M, Allison KC. Disordered eating and obesity: associations between binge-eating disorder, night-eating syndrome, and weight-related comorbidities. Ann N Y Acad Sci. 2018 Jan;1411(1):96-105. doi: 10.1111/nyas.13467. PMID: 29044551; PMCID: PMC5788730

Tanofsky-Kraff M, Marcus MD, Yanovski SZ, Yanovski JA. Loss of control eating disorder in children age 12 years and younger: proposed research criteria. Eat Behav. 2008;9(3):360-365. doi:10.1016/j.eatbeh.2008.03.001

How Processed Food Disrupts the Gut Brain Connection

For years we told patients obesity came down to calories in and calories out. The research has moved. The gut-brain axis, the two-way traffic between the digestive system and the central nervous system, sits at the center of hunger, satiety, and reward. When it works, it regulates intake without conscious effort. Against the current food supply, it often doesn’t work.

The axis runs on neural, hormonal, and metabolic signals. After a meal, the gut reports what came in, how much, and when to stop. That system evolved for whole foods and scarce calories. It was never built for a diet dominated by processed, energy-dense products.

Alexandra DiFeliceantonio and Dana Small have argued that modern food disrupts the system by creating mismatches between what the gut senses and how the brain responds (Small & DiFeliceantonio, Science, 2019). Three features stand out.

The first is macronutrient combination. Fat and refined carbohydrate rarely appear together in high amounts in nature. Most processed food delivers both. People assign higher value to fat-carb combinations even when calories are held constant. In one controlled experiment, participants bid more money for foods containing both than for foods containing either alone (DiFeliceantonio et al., Cell Metab, 2018).

Speed of absorption is the second. Highly processed foods deliver calories fast, producing stronger responses in glucose metabolism and reward pathways (Carmody et al., PNAS, 2011; Hall et al., Cell Metab, 2019). Rodents develop stronger preferences for rapidly metabolized foods. In humans, faster eating rate tracks with weight gain.

Additives are the third. Sweeteners, emulsifiers, and artificial flavors make food more palatable while confusing the signaling underneath. When sweet taste stops reliably predicting calorie content, the brain loses the ability to regulate intake based on prior experience (Dalenberg et al., Cell Metab, 2020). The body learns that taste no longer matches nutrition.

The evidence supports the picture. People with obesity show altered valuation of high-reward foods compared with lean individuals (Perszyk et al., Nutrients, 2021). Rodents fed cafeteria-style diets full of energy-dense processed food overeat and gain weight, while chow-fed controls hold steady (Johnson & Kenny, Nat Neurosci, 2008; Beilharz et al., Front Psychol, 2014). Neuroimaging shows the striatum responding differently to fat-carb combinations than to single macronutrients (DiFeliceantonio et al., 2018).

All of which points at something uncomfortable. The modern food environment may overwhelm and distort the very systems built to keep intake in check. That is a real explanation for why “eat less, move more” fails so often. The advice assumes intact gut-brain signaling in people whose signaling is already compromised.

The open research question is how to restore it. Diets built around foods that reinforce reliable gut-brain communication. Studies of how additives affect hormonal and neural markers of satiety. Behavioral work helping patients relearn hunger and fullness cues.

Clinically, the thing worth holding onto is the environment patients are choosing inside. A food supply engineered to exploit biological vulnerabilities will beat most people’s intentions, and restoring the fidelity of that signaling may be where the real leverage sits.

Scott Rennie, D.O.

References:

1. Small DM, DiFeliceantonio AG. Processed foods and food reward. Science. 2019;363(6425):346-347. https://pubmed.ncbi.nlm.nih.gov/30679360/

2. DiFeliceantonio AG, et al. Supra-Additive Effects of Combining Fat and Carbohydrate on Food Reward. Cell Metab. 2018;28(1):33-44.e3. https://pubmed.ncbi.nlm.nih.gov/29909968/

3. Carmody RN, Weintraub GS, Wrangham RW. Energetic consequences of thermal and nonthermal food processing. Proc Natl Acad Sci USA. 2011;108(48):19199-19203. https://pubmed.ncbi.nlm.nih.gov/22065771/

4. Hall KD, et al. Ultra-Processed Diets Cause Excess Calorie Intake and Weight Gain. Cell Metab. 2019;30(1):67-77.e3. https://pubmed.ncbi.nlm.nih.gov/31105044/

5. Dalenberg JR, et al. Short-Term Consumption of Sucralose with, but not without, Carbohydrate Impairs Neural and Metabolic Sensitivity to Sugar in Humans. Cell Metab. 2020;31(3):493-502.e7. https://pubmed.ncbi.nlm.nih.gov/32130879/

6. Perszyk EE, et al. Nutrients. 2021;13(11):3846.

7. Johnson PM, Kenny PJ. Dopamine D2 receptors in addiction-like reward dysfunction and compulsive eating in obese rats. Nat Neurosci. 2010;13(5):635-641. https://pubmed.ncbi.nlm.nih.gov/20348917/

8. Beilharz JE, Maniam J, Morris MJ. Front Psychol. 2014;5:1454.

Board Certified in Obesity Medicine and Family Medicine

This blog is for educational purposes only and does not constitute individual medical advice. Always consult your own physician before making changes to your health, medications, or treatment plan.